Assistant Sales Manager - Dielectric Fluids (Gujarat) - Cargill - Gujarat   
Our global team of technical, engineering and chemistry experts can help you optimize your transformer performance with our ester dielectric fluid....
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          Sales Manager – Dielectric Fluids (Mumbai) - Cargill - Maharashtra   
Degree in Engineering (Electrical, Mechanical, Chemical). Sales Manager – Dielectric Fluids (Mumbai)....
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          1999 Charmilles Roboform 51 Sinker EDM   

1999 Charmilles Roboform 51 Sinker EDM

FEATURES INCLUDE:

* Charmilles CNC control

* Dielectric Filtrati..


          1993 Charmilles Robofil 310 Wire EDM   
1993 Charmilles Robofil 310 Wire EDM

1993 Charmilles Robofil 310 Wire EDM

FEATURES INCLUDE:

* Charmilles Control

* Complete Dielectric Filtr..


          APAC Solid State Transformers Market: Expected to Observer Agile Growth by 2020   

Future Market Insights has announced the addition of the “Solid State Transformers Market: APAC Industry Analysis and Opportunity Assessment 2014 - 2020" report to their offering.

Valley Cottage, NY -- (SBWIRE) -- 06/28/2017 -- With the increase in use of renewable energy and distributed energy sources, use of traditional transformers has increased the complexity of the electrical power grids. In order to overcome this complexity, there is need to adopt newer technologies to ensure better control and more reliable operation of the grid. Transformers are fundamental components of any power distribution system. However, this system does have certain drawbacks such as voltage drop under load, sensitivity to harmonics and performance degradation under system disruptions and overload. The need to cope with these disadvantages is gaining importance as supply of quality power is one of the major issues in today's scenario. A solid state transformers (SST) is considered a key enabler for power grids, as they provide better control over the system, with high load handling capacity as well as efficient bi-directional power flow.

A SST is capable of easily replacing a conventional transformer in an electrical system. Major applications of SST include locomotive and other traction systems, offshore energy generation systems (wind, tidal or any other source) and smart (power) grids. SSTs are able to deliver power at 400 Hz and can also be used as three-phase power system from a single phase line, which is difficult to obtain from conventional transformers. Depending upon its topologies, SSTs can be classified as:

AC to AC buck converter
SST with and without a DC link
Three-stage SST

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The SST market is in its nascent stage. It has huge market potential in the distribution network of power grids. The overall market is expected to grow at a double-digit CAGR between 2012 and 2020.The APAC region is estimated to account for the highest market share by 2020.Smart grids is expected to be the largest segment among the aforementioned applications. The expenditure on smart grids is highest in Asia Pacific, especially in China, which occupies largest share in the region.

Major energy storage capacity additions, installation of renewable energy generation capacities, investments into power transmission and distribution infrastructure are the chief drivers of the solid state transformers market globally. Manufacturers are now engaging into major research and development efforts to bring SSTs into commercial installation and deployment however, cost-competitiveness will be a major challenge for the manufacturers..

Some of the major players in the market for solid state transformers technology are ABB (Switzerland), Siemens AG (Germany), Alstom (France), Schneider Electric SA (France), Avago Technologies Limited (U.S.), Bombardier, Inc. (Canada),Cooper Power Systems (U.S.), SPX Transformers (U.S.), GE (U.S.), Duke Energy (U.S.), Plasmatechnics, Inc. (U.S.), Selco (U.S.), Varentec (U.S.) and Gridco Systems (U.S.). The leading components manufacturing companies in the field of SST technology are CREE, Inc. (U.S.), STMicroelectronics (U.S.), Infineon Technologies (Germany) and Mitsubishi Electric Corporation (Japan).SSTs are being tested majorly in Europe and North America.

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SSTs ideally solve problems such as saturation of core of nonlinear load, poor voltage regulations and bulky systems, and they also serve as an energy router for smart grid energy network, thus improving scope of its application areas. The solid state transformer does not utilize any hazardous liquid dielectrics, thus giving it an edge over conventional transformers. Smart grid and traction transformers offer substantial market opportunity to solid state transformers. Commercialization for SST is low currently, but this is expected to increase over the next two years owing to research and development efforts by companies and add-on benefits.

For more information on this press release visit: http://www.sbwire.com/press-releases/apac-solid-state-transformers-market-expected-to-observer-agile-growth-by-2020-826014.htm

Media Relations Contact

Abhishek Budholiya
Future Market Insights
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          Offer - Optical Hybird Combination - CHINA   
OUTLINE DIMENSIION (UNIT)mmElectrical dataRated Voltage240VAC/240VDCRated Current2A/环Dielectric Strength500VAC@50Hz,60sInsulation Resistance1000MΩ/500VDCElectrical Noise<0.01ΩLead SizeAWG26,color coded,FEP insulated,silver plated copperMechanical dataOperating Speed0-300rpmTemperature Range-40℃ - +80℃Operating Humidity≤75%Contact MaterialPrecious MetalsFrame MaterialEngineering plastics/Aluminum alloyTechnology indexParameterValueChannel count1Wavelength Range650-1650 nmInsertion loss<2dB/RPT;<3dB/RFC&RSTInsertion loss ripple<+/-0.25dB(Typical:+/-0.15dB)Return Loss>40dB(RPT);>30dB(RFC&RST);>50dB(RPTA)Maximum speed2000 rpmPressure compensation1000psi(RPT) RPC Can withstand greater pressurePulling strength10NOptical power handling23 dBmWorkiong temperature-40~+85°CStorang temperature-50~+85°CPackage styleBoth ends of the fiber optic cable or FC/STHousing materialStainless steelFiber typesSM/MM,3mmOut coat or 2.9mm Metal protective coverConnector typesFC,SC,ST,SMA or LC(PC/APC)Outside Dimensions17mm dia.body×26mm dia.(flaege)Weight50gVibration standardMIL-STD-167-1AMechanical shockMIL-STD-810GIP gradeIP 65(IP 68 optional)Options● Single and multiple rings design● Connector type● Single-mode or multimode● The sheath structure of optical fiber and its length
          Polymeric insulation materials for HVDC cables: Development, challenges and future perspective   
Extruded polymeric HVDC cables have drawn great attention in modern power systems. This paper reviews the history and development of the polymeric HVDC cables and summarizes the key technical problems in extruded HVDC cables. It is pointed out that two key issues should be solved. One is the electric field inversion within HVDC cable insulation which is caused by the temperature and electric field dependent DC volume resistivity of the polymeric insulation materials. The other is the space charge behavior under multi-fields coupling, including charge injection, transportation, accumulation and dissipation characteristics. The following aspects need to be particularly concerned in the future: the interaction between temperature, electric field, space charge and DC volume resistivity under multi-fields coupling; mechanisms of nanoparticles doping on enhancing the properties of polymeric insulation material; the long-term operation characteristics of nanodielectrics; collaborative optimal regulation methods and theories on the properties of polymeric insulation material; and recyclable insulation materials for future HVDC cables.
          Suppressing interface charge between LDPE and EPDM for HVDC cable accessory insulation   
Space charges are likely to accumulate at the interface between insulation materials with different properties, which may lead to accelerated degradation of insulation systems. Cable accessories made of ethylene-propylene-diene terpolymer (EPDM) are considered to be the weakest part of HVDC cable system due to the existence of the interface between cable insulation and itself. Direct-fluorination can be applied to adjust the electrical properties of polymer insulation. Therefore, this paper intends to investigate the effects of direct-fluorination on the interface charge distribution between LDPE and EPDM composite insulation. The EPDM samples were fluorinated for 0, 15, 30 and 60 min, and LDPE for 0 and 30 min, respectively. The interface charge distribution were measured under 20 kV/mm. Obtained results show that the polarity of interface charge is the same with the voltage applied on EPDM sample, which can be verified by the Maxwell-Wagner-Sillars (MWS) theory. The fluorination for 30 min effectively suppresses the interface charge accumulation between LDPE and EPDM. However, excessive fluorination leads to significant accumulation of interface charge. Though fluorination of both dielectrics has the same effect with the single fluorinated EPDM on interface charge behaviors, more hetero-charges injection in the vicinity of cathode. The interface charge accumulation and dissipation process depends on not only the time constant but the surface state controlled by the fluorination time. As a consequence, the approximate direct fluorination can effectively suppress the interface charge accumulation of cable accessories and will make a potential application for the dc cable accessories.
          Effect of different nanoparticles on tuning electrical properties of polypropylene nanocomposites   
Polypropylene (PP) has shown great potential as recyclable HVDC cable insulation material. This paper aims to investigate the effect of different nanoparticles on tuning the electrical properties of PP. Surface modified MgO, TiO2, ZnO and Al2O3 nanoparticles with various contents were melt blended with PP. The microstructural morphology, dielectric properties, DC volume resistivity, space charge behavior and DC breakdown strength of the nanocomposites were investigated. It was found that the dielectric permittivity all increases with the increase of nanoparticle content, only the dielectric loss of TiO2/PP nanocomposites increases. For MgO and TiO2 nanocomposites, the DC volume resistivity increases with the increase of nanoparticle content and then decreases, while it continues to increase for Al2O3 nanocomposite. TiO2/PP nanocomposite with 5 phr nano-TiO2 shows lower volume resistivity than PP. Space charge suppression and DC electric breakdown strength show similar variation trend, both increase with the increase of nanoparticle content and then decrease. MgO and TiO2 nanocomposites show the most obvious space charge suppression and TiO2 nanocomposites exhibit the highest DC breakdown strength, which is 43% higher than that of pure PP. Considering the electrical properties investigated, the optimal content for MgO, TiO2, ZnO and Al2O3 nanoparticles is about 3, 1, 1 and 1 phr, respectively. Among these four kinds of nanoparticles, MgO and TiO2 nanoparticles are more capable than ZnO and Al2O3 nanoparticles to modify the electrical properties of PP and more potential to be used as recyclable HVDC cable insulation material.
          Direct current electrical characteristics of nano-CB/LDPE composite   
Electric field distortion caused by the space charge accumulation in the insulation is considered to be one of the obstacles for the operation of high voltage DC cables. In this paper, nano-CB/LDPE composites were fabricated by using the melt blending method. Space charge characteristics and field distortions of nanocomposite films were measured under direct current (DC) field by pulsed electro-acoustic (PEA) method. Dielectric properties and DC breakdown strength were also investigated. Experimental results indicate that, by adding appropriate doping content of CB nanoparticles, the space charge injection threshold of the films was increased, which suppressed homo-polarity space charge injection and ameliorated the field distribution. Breakdown strength of nanocomposite decreased whereas the dielectric permittivity and dielectric loss tangent increased slightly. However, too much CB nanoparticles mixed in LDPE could weaken the suppression effect on charge injection and field distortion, and the LDPE with 0.03wt% of CB nano-particle showed a relative better ability of inhibiting field distortion.
          Thermoplastic isotactic polypropylene/ethylene-octene polyolefin copolymer nanocomposite for recyclable HVDC cable insulation   
Thermoplastic materials represent the future trend of high voltage direct current (HVDC) cable insulation because of their recyclability and the absence of cross-linking by-products. The current work reports the advances of using inorganic nanoparticles to enhance the thermal, mechanical and DC electrical properties of thermoplastic HVDC insulation, which is composed of isotactic polypropylene (iPP) and ethylene-octene polyolefin copolymer (POE). SiO2 nanoparticles with four types of surface chemistry were selected to prepare iPP/POE nanocomposites with different loading. The effect of SiO2 nanoparticles on the morphology, supramolecular structure, crystallization and melting behavior, dynamic mechanical properties, tensile strength, elongation at break, space charge behavior, adsorption currents and breakdown strength were investigated. It demonstrates that the nanoparticle surface chemistry show significant influence on the spherulite size, crystallization temperatures, ductility, space charge behavior and breakdown strength of the nanocomposites. This comprehensive work suggests that tailoring the surface chemistry of nanoparticles is important to achieve desirable properties in the dielectric polymer nanocomposites.
          Insulating property of polypropylene nanocomposites filled with nano-MgO of different concentration   
Polypropylene (PP) has special advantages in replacing conventional crosslinked polyethylene (XLPE) to be insulation material of power cable. In order to reveal the effects of nano-filler addition on PP, five kinds of experiments, namely TEM, DSC, breakdown strengths (BDs), space charge and dielectric measurement were investigated to evaluate the insulating properties of PP and its nanocomposites with surface-treated nano-MgO of different concentration. It is revealed that, with the addition of nano-MgO, favorable dispersibility of nano-filler and significant increase of crystallinity of polymer are observed. BDs under dc voltage increase apparently with loading of nano MgO, but when the nano concentration reaches higher than 1 wt%, the BDs have a slight decline compared with 1 wt%. It is clarified that space charge and electric field distortion are well restricted with the addition of nano-MgO, while this effect is not obvious with the nano concentration reaches 6 wt%. Permittivity has trends of increase with the rise of temperature at first and then decrease when the temperature reaches about 333 K, and the addition of nano-filler MgO could also decrease permittivity. When the nano-filler concentration reaches high, dielectric loss increases to a high level. Low nano-filler concentration in MgO/PP shows better electrical insulation properties compared with PP and high nano-filler concentration composites.
          Electrical properties of polypropylene/styrene-ethylene-butylene-styrene block copolymer/MgO nanocomposites   
With the development of the long-distance DC electrical power transmission, high voltage direct current (HVDC) cables have attracted more attention as an important transmission medium. HVDC transmission systems offer the best technical and economical solutions for long distance transmission. Polypropylene (PP) has better prospect than cross-linked polyethylene (XLPE), which is attributed to its excellent performance as an eco-friendly material in HVDC cables. However, the main problem in restricting the development of HVDC cables is the space charge injection and accumulation which can cause the breakdown and aging of materials. In this paper, we prepared the nanocomposites with the modified MgO, PP and Styrene-Ethylene-Butylene-Styrene Block Copolymer (SEBS) through melt blending method. The space charge, breakdown strength and dielectric properties of the nanocomposites were also investigated. Results showed that the nanocomposites with 0.5 phr surface-treated MgO dispersed well in the matrix. The addition of MgO effectively suppressed the space charge accumulation compared to PP/SEBS blends and improved its breakdown strength. At last, we explained the mechanism of space charge suppression using the trap theory. This work could provide theoretical basis for PP used as an eco-friendly insulating material in HVDC cables.
          Electrical characterization of extruded DC cable insulation — The challenge of scaling   
HVDC cable technology with extruded insulation systems have been growing rapidly in the recent years. Different insulation concepts including crosslinked or thermoplastic polymers with or without particle fillers have been studied intensively. The DC conduction in the insulation systems is one of the most important mechanism in dielectric physics; therefore reliable and representative methods are needed to characterize it. In the development process of HVDC cables from small scale plaque sample experiments to full scale cable testing, high field DC conductivity measurement and space charge measurement with the pulsed electro-acoustic (PEA) method are common. These two methods provide two different views into the conduction physics in the insulation and provide different types of information. But both of these methods have their own drawbacks and limitations which are important to keep in mind when choosing measurement methods in different stages of the development process. Another important aspect is the inherent differences between the different types of test samples. Thin pressed plaque samples are easy to produce and require less complicated testing equipment than experimental cables but there are major differences which should not be ignored. In this paper, the principles, advantages and limitations of DC conductivity and PEA measurements on samples of different scales are described and their relevance to the evaluation process is discussed. Some of the less discussed challenges of these measurement methods on different objects are discussed in more details and recommendations are made for obtaining more useful results.
          Partial discharge behavior under operational and anomalous conditions in HVDC systems   
Power cables undergo various types of overstressing conditions during their operation that influence the integrity of their insulation systems. This causes accelerated ageing and might lead to their premature failure in severe cases. This paper presents an investigation of the impacts of various dynamic electric fields produced by ripples, polarity reversal and transient switching impulses on partial discharge (PD) activity within solid dielectrics with the aim of considering such phenomena in high voltage direct current (HVDC) cable systems. Appropriate terminal voltages of a generic HVDC converter were reproduced — with different harmonic contaminations — and applied to the test samples. The effects of systematic operational polarity reversal and superimposed switching impulses with the possibility of transient polarity reversal were also studied in this investigation. The experimental results show that the PD is greatly affected by the dynamic changes of electric field represented by polarity reversal, ripples and switching. The findings of this study will assist in understanding the behaviour of PDs under HVDC conditions and would be of interest to asset managers considering the effects of such conditions on the insulation diagnostics.
          Effects of ZnO particles on space charge of EVA copolymer for HVDC cable accessory insulation   
The performance of cable accessories, as an essential part of the HVDC networks, is a great concern to the reliability of the system. Cable accessories made of ethylene-vinyl acetate copolymer (EVA) by incorporation of specific fillers have to face the problem of space charge accumulation and become more unpredictable considering the complex conditions. The effects of doping contents on the space charge behaviors of EVA/ZnO composite are not completely clear, which need further investigation. In this paper, EVA composites were prepared by incorporating ZnO nanoparticles into EVA matrix with fraction of 0, 1, 5 and 10 wt% respectively, with which 5 wt% nano-sized plus 5 wt% micro-sized ZnO doped samples were chosen for comparison. The dependence of dielectric properties and conduction current on the doping contents was measured. PEA method was applied to research the space charge behaviors of EVA composites under −25 kV/mm. Obtained results show that the particles in EVA composite are in homodisperse. The permittivity is increased by ZnO doping and the dissipation factor of EVA composites with 1 and 5 wt% nanoparticles is lower at the lower frequencies. The homocharges injection occurs in cathode instead of anode when ZnO nanoparticles are introduced and 5 wt% nanoparticles doping performs well in suppressing space charge injection. The electric field of the 5 wt% nanoparticles doped EVA distributes more uniformly under the high electric stress than that of others. During the depolarization procedure, the total remnants charges of 10 wt% doped samples are the least in the final. The above results are well explained by the DC conduction, apparent mobility and trap distribution characteristics. The micro-sized ZnO particles may break the chains and produce new defects, which will act as local deep traps.
          Dynamic characteristics analysis on interface polarization and depolarization of nonlinear double-layered dielectrics   
The interface polarization model for double-layered nonlinear dielectrics is established based on nonlinear dielectrics with a+bE-type nonlinear conductivity (that is, the conductivity of dielectrics is a linear function of the electric field). The dynamic characteristics of the electric field, the interface charge, and the current during polarization and depolarization have been deduced analytically. The theoretical research results show that the electric, the interface charge, and the current have three kinds of models during the polarization: the exponential model, the hyperbolic tangent model, and the hyperbolic cotangent model. However, only the hyperbolic cotangent model occurs during the depolarization. The total current during polarization includes the DC steady state current and two absorption currents with different half-value period, and depolarization current contains two components with different half-value period. Because of the different polarities and values of two components, the depolarization current presents a variety of forms. Through theoretical derivation of the interface polarization of double-layered nonlinear dielectrics with a+bE-type nonlinear conductivity, the nonlinear interface polarization dynamic behavior is theoretically expounded and a foundation for future research into more complex nonlinear interface polarization is laid.
          Surface modification of epoxy using an atmospheric pressure dielectric barrier discharge to accelerate surface charge dissipation   
In this paper, an atmospheric-pressure dielectric barrier discharge is used to modify the surface of the epoxy material and enhance the dissipation of surface charge to reduce the accumulation of surface charge. In the experiments, atmospheric-pressure air dielectric barrier discharge is driven by a microsecond pulse generator. Surface properties of epoxy before and after the plasma treatment are characterized by water contact angle, surface potential, and surface/volume conductivity measurements. Atomic force microscope and X-ray photoelectron spectroscopy are used to investigate the changes of the morphology and the chemical composition of the epoxy surface. Experimental results indicate that the surface of epoxy is etched by the plasma and the increase of the surface roughness enhances the surface insulation ability. The O radicals in plasma and the carbonyl groups formed on the surface make the surface charge trap shallower, change the epoxy surface composition then increase the surface conductivity and accelerate surface charge dissipation. When the epoxy is treated for an appropriate time, the epoxy surface insulation performance will be enhanced obviously and the surface charge dissipation will be accelerated.
          Nonlinear conductivity and interface charge behaviors between LDPE and EPDM/SiC composite for HVDC cable accessory   
Interface charges are easy to accumulate between two different dielectrics with various characteristics, which may cause accelerated degradation of insulation systems. Ethylene-propylene-diene terpolymer (EPDM) is used mainly for HVDC cable joint, which is the most vulnerable part of the cable system because of the interface. Particles with nonlinear conductivity can be doped into the polymer matrix to modify the interface charge behaviors through altering the conductivity under combined stresses. In this paper, silicon carbide (SiC) particles were dispersed into EPDM with 0, 10, 30 and 50 wt% respectively. The space charge behaviors at the interface between LDPE and EPDM filled with SiC particles was measured under 15 and 30 kV/mm. Besides, dielectric constant, dc conduction and trap distribution were introduced to elaborate the suppression mechanism with SiC doping. The SEM results show that the particles are well distributed in the EPDM. The permittivity increases with the fillgrade and the dc conductivity shows an obvious nonlinear trend under various electrical fields. SiC doping can effectively suppress the interface charge accumulation under different stresses. The suppression mechanism is attributed to the nonlinear conductivity and more shallow traps of EPDM/SiC composite. As a consequence, the approximate SiC doped EPDM can availably suppress the interface charge accumulation and offers a possible method for the improvement of cable accessory performance.
          Experimental and simulation analysis on by-products of treatment of SF6 using dielectric barrier discharge   
Dielectric barrier discharge (DBD) plasma is a simple technology with low energy consumption and high efficiency for treating gas waste. In this paper, DBD was used to remove greenhouse gas sulfur hexafluoride (SF6). The degradation by-products of SF6 were detected and they were SOF4 (with highest concentration), SO2F2, SOF2, and a limited amount of SO2. The thermodynamics associated with DBD degradation of SF6 at ambient temperature and atmospheric pressure was studied. The calculations showed that SF6 molecules can be dissociated step by step by high-energy electrons. The effect of traces of water vapor in the reactor was considered. Free radicals such as H and OH can be generated by the dissociation of H2O, which requires about 96.64 kcal/mol. Once SF6 and H2O molecules breaks down, their intermediate products can react with each other easily to form the final by-products, including SO2, HF, SOF2, SOF4 and SO2F2. Most of these formation reactions were thermodynamically favorable. The reaction pathways and reaction energy well explained the difference in the yield of by-products in the DBD experiment.
          Origin of dielectric processes in aged oil impregnated paper   
Oil impregnated paper in power transformers deteriorates in long-term operation, which leads to the variations of its dielectric characteristics. This paper focuses on investigating the generation mechanism of the dielectric processes in oil impregnated paper and their variations with thermal aging. Firstly, a set of thermally stimulated current tests with bias-voltages were conducted in distinguishing the dielectric processes and revealing their generation mechanism. Secondly, the standard thermally stimulated current spectrum and the M″ spectrum of 0–1000 h aged samples were joint analyzed in investigating the variations of dielectric processes in thermal aging process. Finally, additional experiments of moisture, acidity and microscopic observation were conducted in explaining these variations. It is concluded that three dielectric processes can be found in oil impregnated paper, i.e. the dipole polarization, the interfacial polarization and the electric conduction. These processes are all strengthened with thermal aging. The generation of molecules with strong polarity, the structural changes in insulating paper, and the generation of hydrogen ions are responsible for the strengthening of these processes sequentially. This investigation on distinguishing dielectric processes and obtaining their mechanism can promote further understanding on oil impregnated paper and provide information for insulation design in power transformers.
          The influence of magnitude and rise time of applied voltage and the type of oil on streamer growth in a wet-mate DC connector   
For the safe design and operation of wet-mate (WM) DC power connector, a time-dependent full thermo-electrodynamic model comprised of Poisson's equation, three charge continuity equations-one each for the positive and negative ions and one for the electrons-, and a thermal diffusion equation is developed to study the streamer initiation and propagation in the oil portion of a WM DC chamber. The electric field dependent molecular ionization mechanism accounts for the source term for free charge carriers, and positive ion/electron recombination, positive/negative ion recombination and electron attachment represent sink terms in the oil section. The solid portion of the WM DC connector is modeled as a perfect insulator. Considering a needle-sphere electrode geometry with electrodes covered by a dielectric solid and oil enclosed by the dielectric solid, it is approached the complicated solid-liquid insulation system envisaged in a WM DC connector after mating. By using the model, the influence of three parameters including magnitude and rise time of applied voltage as well as the type of oil on streamer initiation and propagation is investigated. It is found that the shorter rise time the more prominent streamer growth in the oil portion. For oil comprising only aromatics, an electric field magnitude larger than about 2×108 V/m is needed to propagate streamers, while this value for the oil comprising naphthenics/paraffinics will be exceeding 4×108 V/m.
          Frequency domain spectroscopy measurements of oil-paper insulation for energized transformers   
Frequency Domain Spectroscopy (FDS) is proposed as a suitable diagnostic method in this paper for implementation on energized oil-paper insulation systems. In present FDS tests, the measurement method is only designed for offline applications. To overcome the deficiencies with the offline testing, this work investigates the feasibility of performing FDS measurements on energized transformers with the view to developing an online diagnostic tool using neutral connections as injection and measurement paths. In the proposed technique, a low-pass filter system is designed to remove the high frequency noise as well as the power frequency signals present in the measured neutral currents. The technique has been successfully applied in a laboratory environment on transformers with oil-paper insulation systems with different operational ages and is feasible for single-phase as well as 3-phase transformers with the accessible neutral points. Compared with the conventional FDS results, a nonlinear dielectric phenomenon is observed from the energized insulation systems as higher dissipation factor Tan5 values primarily due to the increased losses under power frequency voltage excitation. The degree of the nonlinearity is found to correlate well with the degradation status of insulation systems under test.
          Assessment of interfacial charge accumulation in oil-paper interface in transformer insulation from polarization-depolarization current measurements   
Accumulation of interfacial space charge in oil-paper interface is a critical issue in insulation diagnostics of transformers. This interfacial charge mainly accumulates due to the conductivity difference of oil and paper. Accumulation of interfacial charge leads to localized field enhancement, which further leads to partial discharges and acceleration in the aging of insulation. Therefore, from the point of view of transformer insulation diagnostics, assessment of interfacial charge is very important. However, it is not easy to estimate interfacial space charge behavior from the transformer diagnostics methods currently in use. In case of Polarization-Depolarization Current (PDC) measurement, a well known method for transformer condition monitoring, the effect of interfacial charge is reflected in the non-linearity of current response during polarization and de-polarization. During de-polarization process, a part of the interfacial charge accumulated during polarization period is absorbed by the electrodes producing a current, which is difficult to separate using conventional linear dielectric theory. In this paper, an attempt has been made to separate this current component from de-polarization current through considering charge de-trapping mechanism. Terming this current component as de-trapping current, its relationship with other parameters of transformer insulation is discussed. The developed methodology has been applied on several practical transformers. It was observed that the time constant of de-trapping current is related to the paper conductivity, oil conductivity, dissipation factor and age of the insulation.
          Multi-response optimization of the properties of natural ester oil with mixed antioxidants using taguchi-based methodology   
A Taguchi-based methodology is proposed in this study in order to determine the optimum concentration of antioxidants which will enhance the oxidative stability of natural ester insulation (NEI) oil while ensuring superior dielectric strength performance. Conventional experimental testing involves the procurement of materials and equipment, sample preparation, experimental set-up and testing the samples with a large number of test runs to determine the optimum design parameters, which is costly and time-consuming. In this regard, the Taguchi-based methodology is advantageous since it can predict the optimum design parameters with fewer test runs. This methodology can also be used for multi-response optimization by applying a desirability function. The number of test runs for the antioxidant mixtures is generated using the L9 orthogonal array with three levels and two factors. This methodology limits the need to deal with the uncertainties associated with the range of factors, unlike the one-factor-at-a-time (OFAT) method. The oxidative induction time (OIT) and AC breakdown voltage (AC BdV) are selected as the output responses in accordance with the ASTM E1858 and ASTM D1816 standard test method, respectively. Analysis of variance (ANOVA) is used to determine the percentage contribution of each factor as well as the significance level of the model developed from the Taguchi-based methodology. The desirability function is used to transform the two output responses and generate the optimum value which complements both of the responses. Repeated tests are conducted to verify the repeatability and reproducibility of the OIT and AC BdV results for the optimized NEI oil based on a 95% confidence interval. In general, there is a significant enhancement in the OIT and AC BdV for the optimized NEI oil compared to those for fresh NEI oil. Hence, it can be concluded that the Taguchi-based methodology is a feasible approach to determine the optimum concentrations of - ixed antioxidants for NEI oils.
          Structural, dynamic mechanical and dielectric properties of mesoporous silica/epoxy resin nanocomposites   
Research of mesoporous silica/polymer composite indicated that the mechanical property and thermal stability of the composite were remarkably enhanced due to the effective utilization of nanopore specific surface area. Furthermore, the performance of the mesoporous silica/polymer under a high electric field was promising. In this work, an organic-inorganic hybrid structure composed of mesoporous silica (SBA-15) and epoxy resin was prepared. The silane coupling agent, KH550, was used to enhance the interaction between the particles and the epoxy molecules, and the particles were more evenly dispersed in the polymer matrix. Nitrogen adsorption-desorption and Fourier transform infrared spectroscopy experiments showed that the KH550 molecules spread into the nanopores, and reacted with the hydroxyl group of the SBA-15 particles. The transmission electron microscopy analysis for the composites showed that the epoxy was inserted into the nanopores of SBA-15, and an organic-inorganic hybrid structure composite was formed. The dynamic mechanical and dielectric properties of the composite were studied. The storage modulus at 120 °C, glass transition temperature, and AC breakdown strength for 0.3 wt% SBA-15-KH550/epoxy composite were 1784 MPa, 148.2 °C, and 56.2 kV/mm, increased 1241%, 14%, and 73% compared to those of pure epoxy, respectively. Moreover, the permittivity for the 0.3 wt% SBA-15-KH550/epoxy composite decreased from 3.10 (pure epoxy) to 2.73 due to the voids provided by the unfilled nanopores and the improved interfacial interaction between the SBA-15 and the epoxy.
          On the effect of functionalizer chain length and water content in polyethylene/silica nanocomposites: Part I — Dielectric properties and breakdown strength   
A series of nanoparticles was prepared by functionalizing a commercial nanosilica with alkylsilanes of varying alkyl tail length, from propyl to octadecyl. By using a constant molar concentration of silane, the density of alkyl groups attached to each system should be comparable. The effect of chain length on the structure of the resulting nanosilica/polyethylene nanocomposites was examined and comparison with an unfilled reference system revealed that, other than through a weak nucleating effect, the inclusion of the nanosilica does not affect the matrix structure. Since water interacts strongly with applied electric fields, water was used as a dielectric probe in conjunction with dielectric spectroscopy to examine the effect of the nanofiller and its surface chemistry on the system. Sets of samples were prepared through equilibrating under ambient conditions, vacuum drying and water immersion. While the water content of the unfilled polymer was not greatly affected, the water content of the nanocomposites varied over a wide range as a result of water accumulation, in a range of states, at nanoparticle interfaces. The effect of water content on breakdown behavior was also explored and, in the unfilled polymer, the breakdown strength was found to depend little on exposure to water (∼13% reduction). In all the nanocomposites, the increased propensity for these systems to absorb water meant that the breakdown strength was dramatically affected (>66% reduction).
          Epoxy-hBN nanocomposites: A study on space charge behavior and effects upon material   
The emergence of nano dielectrics for specialized high voltage applications sparked off a variety of research activities, which proved that nano-fillers are capable of improving the electrical, thermal and mechanical properties of polymers. This paper primarily investigates the effect of addition of hBN (hexagonal boron nitride) nanoparticles into an epoxy polymer base by increasing fill-grade, from 0.2 to 5 % by volume, from two different standpoints: (a) characterizing the electrical space charge (S.C.) accumulation threshold under DC electrical fields, and, (b) demonstrating the alterations in material properties of the modified polymeric materials, from the unfilled polymer. Objective (a) is experimentally investigated by the pulsed electro-acoustic (PEA) technique, well known for determining spatial charge distribution in dielectrics. Objective (b) is investigated by determining the ultrasonic velocity response of the modified composites and unfilled polymer. The obtained results suggest a relation between electrical threshold fields for S.C. accumulation & fill-grades, as well as the fact that incorporating stiff filler materials into brittle polymer bases leads to a tougher composite (capable of withstanding greater breaking stress levels), but with reduced ductility.
          Photo-stimulated discharge current in polyimide films   
Photo-stimulated discharge (PSD) method is one of the ways to measure the trap level of space charge in the dielectric materials. Compared with the thermally stimulated discharge (TSD) method, it has no observable destroy to the sample's microstructure during the procedure of the light scanning and can therefore be considered to be a more accurate measuring method. However, the light scanning procedure may possibly lead to the occurrence of the external photoelectric effect between the electrode-dielectric interfaces or the internal photoelectric effect in the sample bulk, where the extra current due to the two photoelectric effects can seriously distort the PSD current. In this paper, the total current excited by the scanning light on the polarized or being polarized polyimide films are studied. The influence of the applied field intensity, the electrode structures, the evaporated electrode thickness and the isothermal decaying current of the polarized films on the stimulated current is evaluated, which is comprehensively analyzed to extract the space charge dependent PSD current from the distorted current. The charge trap level based on the PSD method is finally obtained.
          Study of dielectric strength in EPDM by nondestructive dynamic mechanical analysis in high electrical field   
In the present work the value of the degree of the area swept by the polymer chain due to an electrical force for a given mesostructure was related to the corresponding value of the dielectric strength. This value was deduced from the electric inclusion formalism applied to dynamic mechanical analysis (DMA) studies conducted under high electric field, which were performed in commercial ethylene-propylene-diene M-class rubber (EPDM); used for the housing of polymeric electrical insulators. EPDM samples with different arrangements of the polymer chains and crystalline degree, promoted by controlled neutron irradiation were studied. Several characterization techniques, as infrared absorption spectroscopy (IR), differential scanning calorimetry (DSC), positron annihilation lifetime spectroscopy (PALS) and dielectric strength (DS) were also used. The relationship between the DS and the degree of movement of polymer chains promoted by electrical forces coming from the electric field applied in a non destructive test as the DMA was successfully established. In fact, a larger empty space in the sample leads to larger areas swept by the polymer chains during bending under the application of the field strength in the dynamic mechanical analysis tests. Therefore, an increase in the capability of movement of charges occurs, corresponding to smaller dielectric strength values. Crystallinity improves the dielectric strength due to the increase in the internal stresses which decreases the capability of movement of the polymer chains and electric carriers by electric forces.
          Removing Fabry-Pérot artifacts for electromagnetic homogenization of lossless and lossy dielectric composite based on scattering parameters   
An efficient method to restore the physically reasonable macroscopic dispersive electromagnetic parameters of periodic dielectric composites is proposed. Physical explanation and mathematical formulation of the proposed method are elucidated. By determining the effective thickness of the composite slab at each single frequency, the proposed method targets on correcting the inappropriately defined impedance, an intermediate parameter in the retrieval process into which the broadband Fabry-Pérot artifacts are introduced. Moreover, one advantage of the method lies in that it does not require a priori information from preceding frequency points. Finally, numerical simulations are performed for both lossless and lossy dielectric composite slabs, which demonstrate the validity of the proposed method.
          Study on the impact of space charge on the lifetime of pulsed capacitors   
As a key influence factor on the lifetime of pulsed capacitors, the repetitive frequency (fR) of charge/discharge is studied in this paper based on the method of TSDC measurement. When fR ranges from 0.1 Hz to 10 Hz, the lifetime of capacitors increases. The TSDC measurement is conducted, which is used to study the parameters of space charge induced by charge/discharge at various frequencies. The measurement result indicates that compared with capacitors which have experienced no charge/discharge, for capacitors that have experienced charge/discharge at 0.1, 1, 8 and 10 Hz for 3000 times, the trap density within the dielectric respectively increases by 66.1, 62.1, 54.8 and 31.5%. For pulsed capacitors which have experienced charge/discharge at 10 Hz, the peak current (IM) is 22.2 pA, meanwhile, for pulsed capacitors which have experienced charge/discharge at 0.1 Hz, the Im is 29.4 pA. For pulsed capacitors which have experienced charge/discharge at 10 Hz, the depth of deep traps is 0.94 eV, and the temperature corresponding to Im is 97 °C, meanwhile, for pulsed capacitors which have experienced charge/discharge at 0.1 Hz, the depth of deep traps is 1.83 eV, and the temperature corresponding to Im is 110°C. The parameters reflecting the characteristic of space charge can reasonably explain why the lifetime of capacitors tested at 10 Hz is three times of that at 0.1 Hz.
          Studies of the effect of temperature on the charge trapping and de-trapping processes of polymeric insulators through depolarization current measurements   
Formation of space charge in polymeric insulation is a critical issue in the design of high voltage electric systems. Accumulation of space charge accelerates the material aging and may lead to premature breakdown of the insulation. Therefore, it becomes increasingly important to understand the charge injection, trapping and de-trapping processes in dielectric under application of high voltage. However analysis of charge trapping and de-trapping is very difficult due to material properties and also the fact that the measurement of space charge itself is a very complicated issue. Most of the trapping and de-trapping investigation in literature has been performed through indirect means, by measuring the space charge distribution in a dielectric specimen under charging and discharging conditions. The effect of temperature on the trapping and de-trapping properties of polymeric insulating materials has also received limited attention. In this paper, the charge trapping and de-trapping behavior of low density polyethylene (LDPE), a widely used polymeric material for electrical insulation purpose, have been investigated using a direct method based on the depolarization characteristics of a stressed sample. A model has been developed to obtain the trapped charge distribution according to their energy level in the sample directly from the depolarization current. The measurements were performed at different temperature to study the effect of temperature. It was observed that temperature plays a critical role in charge injection, trap formation, trapping and de-trapping.
          Aging assesment of transformer pressboard insulation by micro-strip ring resonator at GHz frequencies   
Condition assessment of insulation is widely used to identify the state of aging of power transformers. Traditionally, condition assessment is done using dielectric response measurements conducted at low frequencies. However, due to long testing time required for these methods, attention has now been paid towards measurements at microwave (above 1 GHz) frequencies. In this paper, we establish a correlation between dielectric properties and the state of aging of transformer pressboard samples. This is useful as it paves way to develop techniques to assess the state of aging by measuring dielectric properties at high frequencies. Dielectric measurements are made by using a microstrip ring resonator. The state of aging is determined by measuring the tensile index. Tests were carried out on dry and wet oil-impregnated pressboard samples thermally aged at laboratory conditions for durations up to 45 days. The results were compared with field aged samples collected from a 33 kV sealed type distribution transformer of 18 years in service. It was found that the permittivity values had a good correlation with respective tensile index values whereas loss tangent values showed limited correlation for both dry and wet samples. The results of field aged samples matched well with the established correlation curves. It can be concluded that the permittivity of pressboard samples estimated from the ring resonator can be effectively used to evaluate the state of aging of transformer insulation.
          DC electrical tree growth in epoxy resin and the influence of the size of inceptive AC trees   
Electrical tree propagation is a precursor to dielectric failure in high voltage polymeric insulation. Tree growth has been widely studied under AC conditions, but its behavior under DC is not well understood. The aim of this work was to examine the importance of polarity and initiating defect size on DC tree propagation. Electrical tree propagation in epoxy resin under constant DC voltages of +60 kV and −60 kV was measured in samples with classical needle-plane electrodes, but with small initial trees (< 100 μm) incepted under lower AC voltages before the DC tests. Experimental results showed strong polarity dependence. In either polarity, the length of the initial AC tree had a major influence on the inception of the subsequent DC tree. The effect was attributed to the defect being influential if it is larger than the space charge injection region. As a consequence, there is a critical defect size that will accelerate failure of DC insulation dependent on space charge injection behavior of the polymer/electrode system in question — a critical finding for high voltage asset management.
          Special issue of the IEEE transactions on dielectrics and electrical insulation on advanced dielectrics for gas-insulated transmission lines   
We are pleased to announce that the August 2018 issue of the IEEE Transactions on Dielectrics and Electrical Insulation (TDEI) will be a special issue on topics related to advanced dielectric materials for gas-insulated transmission lines (GILs). The articles in this special issue will emphasize the insulating gases, charge physics, and applications of novel dielectric materials for HVAC and HVDC GILs.
          Special issue of the IEEE transactions on dielectrics and electrical insulation electrets and related phenomena   
We are pleased to announce that the June 2018 issue of the IEEE Transactions on Dielectrics and Electrical Insulation (TDEI) will be a special issue on electrets and related phenomena. This issue is open to all authors. Presenters of papers at the IEEE 16th International Symposium on Electrets (ISE16) to be held during September 4–7, 2017 in Leuven (Belgium) are especially encouraged to submit their work to this special issue. For more information on ISE16 please go to www.ise16.eu.
          Special issue on liquid dielectrics   
A Special issue of the IEEE Transactions on Dielectrics and Electrical Insulation is being planned on liquid dielectrics for publication in October 2018. Authors wishing to have their papers considered for publication in this issue should submit their manuscripts to the IEEE Transactions on Dielectrics and Electrical Insulation web portal (http://www.cloznet.com/ieeetdei).
          Surface Desorption Dielectric-Barrier Discharge Ionization Mass Spectrometry   

TOC Graphic

Analytical Chemistry
DOI: 10.1021/acs.analchem.7b00323

          Reply by Anonymous Coward (UID 1003668)   
Methane is what gives an earthquake its jolt? i think its a dielectric
          Sales Manager – Dielectric Fluids (Mumbai) - Cargill - Maharashtra   
Implement specific tactics that will accelerate the adoption of Cargill dielectric fluids to targeted end-user accounts and coordinate execution with OEM...
From Cargill - Tue, 09 May 2017 14:57:53 GMT - View all Maharashtra jobs
          Hawaiian wetlands for Navy dump   
SUBHEAD: This military chemical dump proposal threatens Oahu's Ewa leeward shores.

By Kane Hili on 29 June 2017 for Kanehili News -
(http://kanehili.blogspot.com/2017/06/wetlands-navy-chemical-dump.html)


Image above: Site used by migratory and endangered Hawaiian birds has been gradually bulldozed over for Navy use as chemical dump. From original article.

In order to provide members of the community with another opportunity to learn about this site, the Navy will be holding an Open House at Ewa Beach Public and School Library at 7pm on Thursday, June 29, 2017. In addition, the Navy has extended the 30-day public comment period until July 21.

SEND COMMENTS TO:

Denise Emsley
Public Affairs Officer
Naval Facilities Engineering Command Hawaii
400 Marshall Road
JBPHH HI 96860-3139
denise.emsley@navy.mil
808-221-6387 - cel

Ancient Hawaiian Wetlands - Navy Chemical Dump - Threatens Ewa Leeward Shores.

Feedback sought for Navy’s landfill cleanup
By William Cole on 27 June 2017 for the Honolulu Star-Advertiser
http://www.staradvertiser.com/2017/06/27/hawaii-news/more-feedback-sought-for-navys-landfill-cleanup-proposal/

The Navy is extending the public comment period on a proposal to spend $1.2 million to reduce potential exposure to chemicals at a Barbers Point landfill where asbestos and burned waste were dumped between 1942 and 1997. The surface soil contains antimony, lead and hydrocarbons that exceed state Department of Health standards, the Navy said. The Navy is proposing to add cover material, put in place erosion control measures and add perimeter warning signs at the site.

Under The Radar: Ancient Ewa Freshwater Karst Pond Wetlands- Navy PCB Toxic Waste Dump



Hiding all this from the public for at least 14 years (and more likely nearly three decades) with an under the radar "public notice" for comment, the Ewa-Kapolei community was shocked and surprised - no neighborhood board notice, no political reps apparently notified - HCDA apparently not notified.

PHOTOS Below show the chemical dump site's natural, cultural history and ecology more complicated than just simple localized chemical dump.

Here's what you likely don't know:
Thermal Desorption Treatment site of PCB-Contaminated Soil, PCB, DDT, Asbestos, Sludge and other hazardous materials brought in to be burned for nearly two decades, maybe more.

Now, the Navy is leaving and wants it off their books and off their inventory. Is what they plan to do sufficient considering future use, site natural, cultural, ecological geography and history?

Stockpiling of Asbestos, PCB and other toxic chemicals for 14 years (or more) without any analysis of heavy rains washing the materials down subsurface karst ancient coral reef waterway channels into the Leeward beach shorelines used for camping, fishing, parties, endangered seals, turtles, limu, etc.

Recent studies found that high levels of lead and other heavy metals on the surface were exposed by recent rains. They very likely have been washing into the shoreline beaches and fisheries for 10-15 years at minimum.

This site is directly adjacent to a Fish & Wildlife endangered species preserve where school children are regularly taken to observe and care take the rare native plants and Opae Ula native shrimp which live in the same underground coral reef brackish water that comes directly wind borne and via subsurface water from this toxic dump.

Karst ponds and underground channels act as storm drains during heavy rains.

The Navy wants to treat the site by covering it up with more soil, but environmental watchdogs say that's not enough.

A Kapolei landfill is more hazardous than initially thought as clean up options, costs vary

http://www.hawaiinewsnow.com/story/35678630/exclusive-navy-kapolei-landfill-plans-debated

"If they were going to do anything, they should seal it up and treat it like a Brownfield site," Carroll Cox of Envirowatch Inc. said. (Ric Daysog, HNN Story)


This site is an identifiable ancient natural karst pond and wetlands and ancient Hawaiian habitation area. It was identified as wetlands and ancient Hawaiian sites in the major 1999 Tuggles research down for the closing of the Naval Air Station Barbers point.

https://triadcentral.clu-in.org/user/doc/TPP-BarbersPt-Thermal_Trmt.pdf

Thermal Desorption Treatment of PCB-Contaminated Soil.
Former Naval Air Station Barbers Point. Oahu, Hawaii.
Department of the Navy.

An estimated 26,306 cubic yards of PCB-contaminated soil from 100 sites
at various Navy installations on Oahu were sent to the site for treatment.
Soil from 21 sites totaling more than 5,600 cubic yards had been excavated and
processed through the NAVFAC Kalaeloa site (2003- to ?)

PCB Contaminated soils from military bases all over Oahu, including possibly Kaneohe MCBH where there have been lawsuits filed.


Site Used By Migratory and Endangered Hawaiian Birds
It still has visits by migratory birds, ducks. They have been gradually bulldozing
over it but water keeps appearing. It's an ancient karst water pond but they always
deny it.

What Chemicals Have Been Stockpiled There?

PCB- Short for polychlorinated biphenyl. A family of industrial compounds used as lubricants, heat-transfer fluids, and plasticizers. The manufacture and use of PCBs has been restricted since the 1970s because they are very harmful to the environment, being especially deadly to fish and invertebrates, and stay in the food chain for many years. Most of the toxic materials came from WW-II and 50's-60's era Oahu military bases.

PCB's are found in old electric power transformers as dielectric and coolant fluids. PCBs as definite carcinogens in humans. The maximum allowable contaminant level in drinking water in the United States is set at zero.

The North American producer, Monsanto Company, marketed PCBs under the trade name Aroclor from 1930 to 1977. The commercial production of PCBs started in 1929 but their use has been banned or severely restricted in many countries since the 1970s and 80s.

Dichlorodiphenyltrichloroethane (DDT), DDT and other pesticides had been shown to cause cancer and that their agricultural use was a threat to wildlife, particularly birds. DDE is dichlorodiphenyldichloroethylene-breakdown product of DDT.

DDD (DDT) is dichlorodiphenyldichloroethane

Polycyclic aromatic hydrocarbons (PAHs) are a class of chemicals that occur naturally in coal, crude oil, and gasoline. They also are produced when coal, oil, gas, wood, garbage, and tobacco are burned. Cancer is a primary human health risk of exposure to PAHs.[43] Exposure to PAHs has also been linked with cardiovascular disease and poor fetal development.

Total petroleum hydrocarbons (TPH) is a term used to describe a large family of several hundred chemical compounds that originally come from crude oil.

Also: residual sewage sludge (and what ELSE? we don't know?



Navy admits lapses in Red Hill flow studies
By William Cole on 24 June 2017 in the Honolulu Start Advertiser
http://www.staradvertiser.com/2017/06/24/hawaii-news/navy-admits-lapses-in-red-hill-flow-studies/?HSA=304b9c8e9f0c5c558bbad055d7d009ce4a60bb8f

The U.S. Environmental Protection Agency and state Department of Health sent a June 7 letter criticizing the Navy for providing too little information on water flow modeling to determine where previously spilled fuel might end up, even though the Navy has spent almost two years on the environmental investigation.

A better understanding of groundwater flow patterns is a critical step in the investigation of contamination at Red Hill, the EPA said on its website.

“While most parties agree that groundwater generally flows from the mountains to the ocean, there are specific geologic characteristics in the area around Red Hill that may cause some groundwater to flow in directions other than directly towards the ocean,” the EPA said.


Location of the site in Google Maps

Running out the comment clock: Started May 23 - public was not aware.
Navy says they ran notice in daily newspaper which makes it "ok"
Claim they wanted "public comment" but seem to hope they get ZERO as this was
all Under The Radar.

Is there a plan to make this a new City trash dump that has been a hot
potato for many years? Politicians want all trash and toxic substances
dumped in West Oahu and "Wild West" back roads Kalaleoa are ideal. Is this next?

Only now is there admission of a remediation plan, however these toxic
substances were trucked in from all over Oahu since 2003 and stockpiled
for disposal. How much has all the waste leaked into the porous karst
caves and channels down into the shoreline food chain of limu, reef fish,
turtles, seals etc. ? It has all been kept a secret for at least 14 years.

Only discovered two weeks ago, information about the "public notice" and
"public meeting" was already well underway- started May 22 .

https://triadcentral.clu-in.org/user/doc/TPP-BarbersPt-Thermal_Trmt.pdf

Thermal Desorption Treatment of PCB-Contaminated Soil.
Former Naval Air Station Barbers Point. Oahu, Hawaii.
Department of the Navy.

An estimated 26,306 cubic yards of PCB-contaminated soil from 100 sites at various Navy installations on Oahu were sent to the site for treatment. Soil from 21 sites totaling more than 5,600 cubic yards had been excavated and processed through the NAVFAC Kalaeloa site (2003- to ?)

PCB Contaminated soils from military bases all over Oahu, including Kaneohe MCBH where there have been lawsuits filed.

Site At Kalaeloa Was Freshwater Pond Before WW-II, 2003 Navy Turned It Into Turned Into PCB Toxic Dump

Still visited by migratory birds, ducks. They have been gradually bulldozing over it but water keeps appearing. It's an ancient karst water pond wetlands but the Navy denies it. 1928 air photos show it was there before WW-II Navy airfield, then after base closure was turned into toxic waster disposal site because it was so far away and out of sight. Nobody ever asked any questions.



Feedback sought for Navy’s cleanup

By William Cole on 27 June 32017 for the Honolulu Star Advertiser -
http://www.staradvertiser.com/2017/06/27/hawaii-news/more-feedback-sought-for-navys-landfill-cleanup-proposal/

The Navy is extending the public comment period on a proposal to spend $1.2 million to reduce potential exposure to chemicals at a Barbers Point landfill where asbestos and burned waste were dumped between 1942 and 1997. The surface soil contains antimony, lead and hydrocarbons that exceed state Department of Health standards, the Navy said. The Navy is proposing to add cover material, put in place erosion control measures and add perimeter warning signs at the site.

Not one person in the entire community was informed about this Project Plan, including either of the two local neighborhood boards which is where nearly all community projects are presented and questions answered. No one with the Hawaii Community Development Authority were this Navy parcel is located was aware of this plan or the claimed public meeting. A call to all of the local offices of elected officials in the area revealed not one of them or their staff knew about any public meeting.
NOT AWARE OF NAVY REQUEST FOR PUBLIC COMMENT:
Elected leaders of the Neighborhood Board # 34
Hawaii Community Development Authority (Governor Appointed leaders)
State Senator(s) of the district and surrounding areas
State Representative(s) of the district and surrounding areas
City Council Members of the district and surrounding areas
Adjacent Neighborhood Boards (downstream of potential PCB run-off)
Hawaiian Cultural leaders in the area
Residents of the Kalaeloa community




















Suits over toxic soil at Marine BaseSUBHEAD: Residents began to report problems with asthma, cancer and birth defects.

By Chad Blair on 14 December 2014 for Civil Beat -
http://www.civilbeat.org/2016/12/more-suits-filed-over-fears-of-toxic-soil-at-marine-corps-base-hawaii/

Sixty-four military families have now filed suit over fears of pesticide contamination near their homes at Marine Corps Base Hawaii in Kaneohe.


Five separate lawsuits were filed earlier this year by 44 families who said they were not told about the contamination near their homes. On Dec. 8, two more lawsuits were filed on behalf of 20 additional families.

The lawsuits name as defendants Forest City Residential Management and its former subsidiary, Ohana Military Communities, which is owned by military housing developer Hunt Companies.

All of the families leased residential housing at the base sometime from 2006 to 2014. The lawsuits are seeking damages from the defendants that own and manage privatized housing at the base. Ten other unidentified defendants are also named in the suits.


“Since at least 2006, defendants have systematically failed to warn military families of pesticide contamination at MCBH and knowingly and intentionally exposed military families at MCBH to unsafe conditions including higher rates of cancer and other adverse health outcomes without disclosing these risks to military families or taking sufficient steps to protect military families from such risks,” the new claims allege.


The plaintiffs’ attorneys, Kyle Smith and Terrance Revere, declined to comment, and a spokesperson for Ohio-based Forest City said the company does not comment on pending litigation.

The new cases were filed in 1st Circuit Court in Honolulu.

The concerns about potential soil contamination date to 2006, when Ohana Military Communities (then a subsidiary of Forest City) was demolishing homes and buildings. The developer discovered high levels of organochlorine pesticides left over from termite treatments.


Forest City completed a state Department of Health-approved pesticide management plan, which allowed for higher levels of carcinogenic pesticides than the Environmental Protection Agency generally recommends to remain in the surface soil. It was assumed that military families would not live on the base longer than six years, given the frequency or relocations.

But residents also began to report problems with asthma, cancer and birth defects.

Barber, the wife of a Marine Corps veteran who lived on the base for several years, was the lead plaintiff in the initial lawsuit against Forest City in 2014. Barber’s case was later settled out of court.
Meanwhile, Forest City and Hunt Companies have been seeking to prevent Barber’s attorneys — Smith and Revere — from representing some of the other current and former residents of military housing who have submitted mediation demands.

Goodsill Anderson Quinn and Stifel and another law firm, Cox Fricke, argue that Smith and Revere should be disqualified because they violated conflict of interest and professional conduct rules by allegedly soliciting clients in the contaminated soil case.


Another complication: The earlier lawsuits have been shifted from 1st Circuit Court to the U.S. District Court in Hawaii, a matter that is under dispute.

It’s possible that additional cases might be filed. In the meantime, the jurisdiction debate could be settled by February, at which time discovery in the court cases could commence.



It’s unclear how much the plaintiffs are seeking, as there are no dollar amounts indicated in the court filings.Damages for emotional distress are also sought.



Navy Seeks comment on waste plan



By William Cole on 16 June 2017 for Honolulu Star-Advertiser



The Navy is seeking public comment on a proposal to spend $1.2 million to reduce potential exposure to chemicals at a Barbers Point landfill where asbestos and burned municipal waste were in trash dumped between 1942 and 1997. Surface soil contains antimony, lead and hydrocarbons that exceed state Department of Health action levels, the Navy said. 

The Navy is proposing to add cover material, put in place erosion control measures, add perimeter warning signs and conduct a review every five years at the industrial site in an old coral pit south of Runway 11 at Kalaeloa Airport.

The Barbers Point Sanitary Landfill is adjacent to the site of a 2003-04 operation to cleanse more than 44,500 cubic yards of soil contaminated with polychlorinated biphenyls (PCBs) that were collected from 14 military installations around Oahu. A thermal treatment plant was brought in to bake the soil at 900 degrees to remove PCBs as sludge.

A coral pit used to generate fill and road-base material in the early 1940s was subsequently used for the landfill, the Navy said. “Bagged asbestos was reportedly disposed of at the site between 1976 and 1991,” the Navy said in a synopsis of the mitigation plan. “According to historic reports, municipal waste was burned and placed in the landfill, then covered with coralline soil from a nearby coral pit. A landfill cover of compacted gravel and sand was placed over the site prior to closure in 1997 as a final waste containment measure.”

A Navy review between 1994 and 1998 indicated that chemicals of potential concern were not present in concentrations that could pose a risk, but the report was reviewed in 2011 and found to have “data gaps” over the characterization of the surface soil, the Navy said.

Under the Comprehensive Environmental Response, Compensation, and Liability Act, also known as Superfund, the Navy is responsible for the investigation and cleanup of contamination resulting from its past operations.

The landfill, consisting of about 4.8 acres, no longer is in operation, but is part of the Navy’s Solid Waste Management Facility, which takes in green waste and sewage sludge.

The landfill cover was maintained as a vegetated surface until 2009, when heavy rain caused flooding and erosion of the cover, the Navy said. Compost material was spread across the surface, but charred wood and plastic started to become visible.

The $1.2 million mitigation plan is the Navy’s “preferred” alternative among several being considered. The most expensive would be the $42 million removal and disposal of soil and debris down to 10 feet.

Ewa Beach historian John Bond said he has concerns over the contamination remaining in the ground. Army Air Corps photos from 1928 show a karst sinkhole pond mauka of the landfill site, and “anything you put in the ground there is going to leach right down into the water table and into the ocean,” he said.

Bond said the Navy mitigation plan is new to him and other community members and that further review of the alternatives is needed. The state Department of Health in December said it concurred with the Navy’s preferred plan.

.

          Assistant Sales Manager - Dielectric Fluids (Gujarat) - Cargill - Gujarat   
Our global team of technical, engineering and chemistry experts can help you optimize your transformer performance with our ester dielectric fluid....
From Cargill - Sat, 18 Mar 2017 16:00:09 GMT - View all Gujarat jobs
          Making printed circuit board   

Making printed circuit board

We have keep up with woven glass reinforced epoxy, resin. Single sided with or holes to you clearly if you the board PCB milling uses a bare board would be: covered with copper is generally your RoHS directive in assembling, the either manually or Gerber data to the market. This by bonding a fixture or small hole.

Check to investing in the Gerber file tool a long term aperture the board using dielectric layer of material board PCB is green in manufacturing each project through the development efforts is for use an inferior surface layers.


          Amino Acid Interaction (INTAA) web server   
Abstract
Large biomolecules—proteins and nucleic acids—are composed of building blocks which define their identity, properties and binding capabilities. In order to shed light on the energetic side of interactions of amino acids between themselves and with deoxyribonucleotides, we present the Amino Acid Interaction web server (http://bioinfo.uochb.cas.cz/INTAA/). INTAA offers the calculation of the residue Interaction Energy Matrix for any protein structure (deposited in Protein Data Bank or submitted by the user) and a comprehensive analysis of the interfaces in protein–DNA complexes. The Interaction Energy Matrix web application aims to identify key residues within protein structures which contribute significantly to the stability of the protein. The application provides an interactive user interface enhanced by 3D structure viewer for efficient visualization of pairwise and net interaction energies of individual amino acids, side chains and backbones. The protein–DNA interaction analysis part of the web server allows the user to view the relative abundance of various configurations of amino acid–deoxyribonucleotide pairs found at the protein–DNA interface and the interaction energies corresponding to these configurations calculated using a molecular mechanical force field. The effects of the sugar-phosphate moiety and of the dielectric properties of the solvent on the interaction energies can be studied for the various configurations.

          Research Scientist - Microfluidics - UES - Dayton, OH   
Material systems such as liquid metals, dielectric fluids, polymers, and electronic circuit boards will be utilized....
From UES - Mon, 12 Jun 2017 19:43:35 GMT - View all Dayton, OH jobs
          Research Scientist - RF Circuits - UES - Dayton, OH   
Material systems such as liquid metals, dielectric fluids, polymers, and electronic circuit boards will be utilized....
From UES - Mon, 12 Jun 2017 19:43:23 GMT - View all Dayton, OH jobs
          Polypropylene film for capacitors   
1. Features With the imported super-high purity electric homopolymerize PP resin , it is formed through biaxial stretching, which has features of good uniformity of roughness film, easy rolling and high operation field strength; meanwhile, as for the corona treatment to the roughness film, the wrapped capacitor has small dielectric loss and high insulation resistance. […]
          Arranged Barriage   
Once upon a time
there lived a young lad
Happy, carefree and full of beans
a free bird, by all means.

One day he turned twenty-six
his parents got into the mix
Life is a long long journey, they said
So Kanna its time you get ready to wed.

We'll find a nice girl,
Smartha, someone from Vadama
But please for Perumal's sake,
don't bring home a vellakaara kuttyma!

My son is 26 and 6-feet tall
he's well-educated, brainy and all.
They said it to one, two, many...
Jee..they wrote it even in Tamil Matrimony.

They received a dozen requests
and sent as many,
in the hope of finding their dear
a cute adorable Kanmani.

We like your son's profile,
lakshanama irukaar!
but sorry our daughter doesn't want
a faarin aathukaar.

Still, Jadagams came in
the Josiyer checked for a match.
Nothing much happened
but for the occasional catch.

Inga paarungo, indha varan nanna iruku
This girl is just right!
A chat was quickly organised
via the blimming Skype.

They looked at each other,
one thing was certain.
An invisible wall was between them
with an infinite dielectric constant.

There was, you know,
no freakin spark!
It was obvious
and the reality was quite stark.

So once again for every prospective girl
they got the horoscope data.
And every time they visited the Josiyer
he told them to bid the girl ta-ta.


One day, The Site spitted out a 10/10 match
it said "from the Matchmaking Pro".
But, oh golly molly,
that girl looked more like a bro!

Oh!, he wondered,
Is that God's subliminal message of the day?
That the young lad might as well,
be of the gay?


          Substrate influence on the interlayer electron-phonon couplings in fullerene films probed with doubly-resonant SFG spectroscopy   
Phys. Chem. Chem. Phys., 2017, Accepted Manuscript
DOI: 10.1039/C7CP03115G, Paper
Dennis Elsenbeck, Sushanta Kumar Das, Luis Velarde
We present doubly-resonant sum frequency generation (DR-SFG) spectra of fullerene thin films on metallic and dielectric substrates as a way to investigate the coupling between nuclear and electronic coupling at...
The content of this RSS Feed (c) The Royal Society of Chemistry

          Correction: Influence of particle size and dielectric environment on the dispersion behaviour and surface plasmon in nickel nanoparticles   
Phys. Chem. Chem. Phys., 2017, Advance Article
DOI: 10.1039/C7CP90142A, Correction
Open Access Open Access
Creative Commons Licence  This article is licensed under a Creative Commons Attribution 3.0 Unported Licence.
Vikash Sharma, Chanderbhan Chotia, Tarachand, Vedachalaiyer Ganesan, Gunadhor S. Okram
To cite this article before page numbers are assigned, use the DOI form of citation above.
The content of this RSS Feed (c) The Royal Society of Chemistry

          Sales Manager – Dielectric Fluids (Mumbai) - Cargill - Maharashtra   
Implement specific tactics that will accelerate the adoption of Cargill dielectric fluids to targeted end-user accounts and coordinate execution with OEM...
From Cargill - Tue, 09 May 2017 14:57:53 GMT - View all Maharashtra jobs
          Sales Manager – Dielectric Fluids (Mumbai) - Cargill - Maharashtra   
Implement specific tactics that will accelerate the adoption of Cargill dielectric fluids to targeted end-user accounts and coordinate execution with OEM...
From Cargill - Tue, 09 May 2017 14:57:53 GMT - View all Maharashtra jobs
          Assistant Sales Manager - Dielectric Fluids (Gujarat) - Cargill - Gujarat   
Our global team of technical, engineering and chemistry experts can help you optimize your transformer performance with our ester dielectric fluid....
From Cargill - Sat, 18 Mar 2017 16:00:09 GMT - View all Gujarat jobs
          Sales Manager – Dielectric Fluids (Mumbai) - Cargill - Maharashtra   
Implement specific tactics that will accelerate the adoption of Cargill dielectric fluids to targeted end-user accounts and coordinate execution with OEM...
From Cargill - Tue, 09 May 2017 14:57:53 GMT - View all Maharashtra jobs
          Sales Manager – Dielectric Fluids (Mumbai) - Cargill - Maharashtra   
Implement specific tactics that will accelerate the adoption of Cargill dielectric fluids to targeted end-user accounts and coordinate execution with OEM...
From Cargill - Tue, 09 May 2017 14:57:53 GMT - View all Maharashtra jobs
          Sales Manager – Dielectric Fluids (Mumbai) - Cargill - Maharashtra   
Implement specific tactics that will accelerate the adoption of Cargill dielectric fluids to targeted end-user accounts and coordinate execution with OEM...
From Cargill - Tue, 09 May 2017 14:57:53 GMT - View all Maharashtra jobs
           A simultaneous cooling and dielectric heating: an advanced technology to improve the yield of lactides    
Idris A., (2012) A simultaneous cooling and dielectric heating: an advanced technology to improve the yield of lactides. Progress in Electromagnetics Research Symposium . pp. 141-145. ISSN 1559-9450
           Characterization of hafnium aluminate gate dielectrics deposited by liquid injection metalorganic chemical vapor deposition    
Potter, R. J., Marshall, P. A., Chalker, P. R., Taylor, S., Jones, A. C., Noakes, T. C. Q. and Bailey, Paul (2004) Characterization of hafnium aluminate gate dielectrics deposited by liquid injection metalorganic chemical vapor deposition. Applied Physics Letters, 84 (20). p. 4119. ISSN 0003-6951
          Cambridge s better form of hafnium oxide enhances dielectric endless totally from 20 a lot more 30   
none
           Dielectric properties of sawdust reinforced epoxy composites post-cured in microwaves    
Ku, H. and Trada, M. and Tai, P. (2013) Dielectric properties of sawdust reinforced epoxy composites post-cured in microwaves. Journal of Reinforced Plastics and Composites, 32 (10). pp. 765-774. ISSN 0731-6844
          01 JUNIO 2017 (B)   



  • - IMPORTACION MARITIMA, PUERTO DEL CALLAO

    IMPORTACIONES CALLAO: EXPORTADORES
    FECHA: 01 JUNIO 2017(LA PAMPILLA)
    BUQUE: ASPEN SPIRIT


    ORIGEN..¦EXPORTADOR..........¦PRODUCTO..............................................................¦KILOS
    SAN FRANCISCO
    GUNVOR SA..........................¦ALASKA NORTH SLOPE CRUDE OIL SM REFINACION DE PETROLEO A GRANEL ACEITE¦103861666

    IMPORTACIONES CALLAO: EXPORTADORES
    FECHA: 01 JUNIO 2017(CALLAO)
    BUQUE: MSC DOMITILLE


    ORIGEN..¦EXPORTADOR..........¦PRODUCTO..............................................................¦KILOS

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    ST PETERSBURG (EX LE
    05762306 JSC KUCHUKSULPHATE........¦SULFATO DE SODIO ANHIDRO JSC KUCHUKSULPHATE 667 BIG BAGS X 1000 KG INS¦668334
    05762306 JSC KUCHUKSULPHATE........¦SULFATO DE SODIO ANHIDRO JSC KUCHUKSULPHATE 667 BIG BAGS X 1000 KG INS¦668334
    CJSC "CSHIPPING FORWARDING"........¦LUBRICANTES GAZPROMNEFT MODELO 4T PARA MOTORES DE MOTOS USO: VEHICULOS¦13999
    FORTEX INTERNATIONAL AB............¦PAPEL ENCERADO COMERCIAL BULTOS GREASEPROOF PAPER SUBS 45GSM RW 700MM.¦22495
    MANUCHAR NV........................¦BICARBONATO DE SODIO EN 1160 SACOS DE 25KILOS PARA USO INDUSTRIAL GRAD¦29070
    POLYPLAST NOVOMOSKOVSK LTD.........¦NAFTALEN SULFONATO DE SODIO POLYPLAST EN80 BAGS DE 640 KG. C/U USO: AP¦52850
    SKYSTEP TRADING LTD................¦AZUFRE A GRANEL SKYSTEP TRADING LTD PRESENTACION: 36 BIG BAGS X 28.872¦548568
    SKYSTEP TRADING LTD................¦AZUFRE A GRANEL SKYSTEP TRADING LTD PRESENTACION: 36 BIG BAGS X 28.872¦548568
    TRIGON GULF FZCO...................¦BICARBONATO DE SODIO FOOD GRADE USO:USO INDUSTRIAL ENVASE X 25 KG. POL¦116278
    STOCKHOLM
    CAMFIL SVENSKA AB..................¦ELEMENTOS DE FILTRO CAMFIL CAMFLO XMGT 40000801 SE UTILIZA EN NUESTRA.¦627
    SUAPE
    REXAM AMAZONIA LTDA................¦TAPAS REXAM DE ALUMINIO PARA ENVASADO DECERVEZA TP OURO 202 600/483 EX¦25391
    THESSALONIKI
    ELBAK SA GREEK CANNING INDUSTRY....¦DURAZNO EN CONSERVA ARICA CERTIFICADOS DE ORIGEN 503842-503845-503875-¦210816
    EURO GAMES TECHNOLOGY LTD..........¦MAQUINA TRAGAMONEDA EURO GAMES TECHNOLOGY EGT-VS 9-1 A¥O: 2017 SERIE:.¦4416
    EURO GAMES TECHNOLOGY LTD..........¦MAQUINA TRAGAMONEDA EURO GAMES TECHNOLOGY EGT-VS 12 A¥O: 2017 SERIE NO¦6230
    GENERAL TRADING IMPORT AND EXPORT L¦MARMOL CANTIDAD: 343.58 M2 PARA LA CONSTRUCCION SLABS 2CM POLISHED PIG¦21794
    P PAVLIDES SA......................¦PULPA CONCENTRADA DE DURAZNO 960 TAMBORES LOTE: 2907 3007 0108 0208 03¦239400
    TUTICORIN (NEW TUTIC
    CALGON CARBON CORPORATION..........¦CARBON ACTIVADO LOTE: UC171BY-1 MANUFACTURE DATE: 01.01.2017 USO INDUS¦20510
    DAMODAR INDUSTRIES LTD.............¦HILADO DE ALGODON CRUDO; ACABADO: APRESTADO PRESENTACION: CONOS; TITUL¦41796
    VALENCIA
    APE CERAMICA SLU...................¦MURALETE ESMALTADO APE CERAMICA PLITVICEMOLDEO:BALDOSAS PRENSADAS COCC¦72426
    AZULEJOS BENADRESA SA CRISTAL CER..¦MURALETES ESMALTADOS BENADRESA ONICE MOLDEO:BALDOSAS PRENSADAS COCCION¦25000
    CASA VIGAR SL......................¦DESATORADOR PARA LAVADERO VIGAR CALIDAD:PRIMERA (CON RESINA VIRGEN) TI¦12006
    CERAMICA GOMEZ SA..................¦MURALETES ESMALTADOS GOMEZ BETON MOLDEO:BALDOSAS PRENSADAS COCCION:BAL¦25300
    CERAMICA SAN MATEO 2007 SL.........¦TABLON DE PORCELANATO COBRE MOLDEO:BALDOSAS PRENSADAS COCCION:BALDOSAS¦52000
    CLARIANA SA........................¦PAPEL FINO CLARIANA COLOR PLUS MEDIDA: 70 X 100 CM USO:33 PAQUETES 125¦15227
    CONGELADOS DE NAVARRA SAU..........¦GUISANTE SORAYA SORAYA 9 600 BOLSAS X 2.5 KG C/U CODIGO : 04408079 GUI¦25560
    ERCROS SA..........................¦PARAFORMALDEHIDO 91% 25KG.BAGS ERCROS ACONDICIONADO SOBRE 40 PALETAS U¦41280
    GAVA IFC IBERICA SL................¦PIGMENTO CERAMICO TORRECID EXN10393DJ PREPARADO EN POLVO O PASTA PARA.¦21537
    INGREDIENTES NATURALES SELECCIONADO¦COLORANTE DE ACHIOTE INGRENAT ANNATTO COLOUR COLORANTE DE ACHIOTE EN K¦18900
    KERAMEX SA.........................¦MURALETES ESMALTADOS VENEZIA BEIGE MOLDEO:BALDOSAS FABRICADAS POR OTRO¦50470
    LIEDSON SOC LIM....................¦2 PLATAFORMAS ELEVADORAS NO. DE SERIE: 10230..........................¦15133
    NEXO EUROAMERICA SL................¦BALDOSAS ESMALTADAS KERAMEX K3 MOLDEO:BALDOSAS PRENSADAS COCCION:BALDO¦19380
    NUEVA ALAPLANA SLU.................¦PORCELANATO ESMALTADO ALAPLANA GRADO DE DIMENSIONES Y ESPESOR: 023.00C¦25000
    PERFUMES Y DISENO COMERCIAL SL.....¦AGUA DE TOCADOR TOUS PERFUMES 04721051 PRODUCTO DE PERFUMERIA TMAN EDT¦3248
    SANIMOBEL S A......................¦CONTENEDORES METALICOS SANIMOBEL S-12-3 DE 3 BUZONES DESMONTADOS ; (SI¦25842
    SOLPLAST SA........................¦SOLGRAPES ANILLAS SOLPLAST ACABADO:LISO;COLOR:TRANSPARENTE PLASTIF:100¦14588
    SPANISH TILE FROM NULES SAU........¦MURALETES ESMALTADOS STN BATA MOLDEO:BALDOSAS PRENSADAS COCCION:BALDOS¦125656
    VANCOUVER
    SCOULAR CANADA LTD.................¦ARVEJA GRANO ENTERO ROY 1160 SACOS DE 100 LIBRAS CADA UNO USO:COSECHA:¦52720
    SEABOARD OVERSEAS..................¦LENTEJAS ALISUR COMERCIAL/CONSUMO HUMANOBULTOS LAIRD WHOLE GREEN LENTI¦79083
    SEABOARD OVERSEAS..................¦LENTEJAS ALISUR COMERCIAL/CONSUMO HUMANOBOLSAS LAIRD WHOLE GREEN LENTI¦26316
    TRANSCO FOOD TRADING INC...........¦ARVERJA PARTIDA CANADIAN GREEN SPLIT PEAS NO. 1 COMERCIALIZACION - - -¦24770
    VIGO
    CIAESPALGAS MARINAS SA.............¦CARRAGEENAN E-407 GUMGEL M 969 LOTE: PT66370 PROD. DATE: 25/04/2017 -.¦18720
    FINANCIERA MADERERA SA.............¦PISOS LAMINADOS FINSA GAIA DOLOMITE DE MADERA PROCESADA PARA SUELOS ME¦17770
    FINANCIERA MADERERA SA.............¦TABLERO AGLOMERADO FINSA 2600X2100X18MM AGLDMLF0011 AGLOM RECUBIERTO C¦110494
    GUDE GONZALEZ HERMANOS.............¦VIVERES, REPUESTOS, PERTRECHOS COMO RANCHO DE NAVE, EN TRANSITO PARA S¦13564
    GUDE GONZALEZ HNOS SC..............¦TRANSITO: CARNADA Y VIVERES CONGELADOS MERCANCIA EN TRANSBORDO PARA SE¦65681
    IMESAPI SA.........................¦MODULO -MODULO DE SALA DE USOS MULTIPLES-MODULO COMPLETO CON TODOS SUS¦72244
    IMESAPI SA.........................¦MODULO -MODULO DE AULA FUNCIONAL-MODULO COMPLETO CON TODOS SUS ACCESOR¦54353
    VISHAKHAPATNAM
    TRL KROSAKI REFRACTORIES LTD.......¦CONCRETOS REFRACTARIOS KROSAKI CASTABLE TRL CAST LC 45 TRL CAST LC45 K¦24875

    IMPORTACIONES CALLAO: EXPORTADORES
    FECHA: 01 JUNIO 2017()
    BUQUE: SCF PEARL


    ORIGEN..¦EXPORTADOR..........¦PRODUCTO..............................................................¦KILOS
    TUMACO
    ECOPETROL SA.......................¦CRUDO SOUTH BLEND LIQUIDO A GRANEL USO:PETROLEO CRUDO PARA LA ELABORAC¦16784357
    ECOPETROL SA.......................¦PETROLEO: SOUTH BLEND CRUDE OIL.......................................¦36003565

    IMPORTACIONES CALLAO: EXPORTADORES
    FECHA: 01 JUNIO 2017(CALLAO)
    BUQUE: SCL BASILEA 0704 SB


    ORIGEN..¦EXPORTADOR..........¦PRODUCTO..............................................................¦KILOS
    ANTWERPEN
    IS INTERSTEEL STAHLHANDEL GMBH.....¦BARRAS DE ACERO USO INDUSTRIAL METROS 75066564 - ROUND 45 X 23 MM.....¦19991
    NLMK PLATE SALES SA................¦PLANCHAS DE ACERO -PLANCHAS DE ACERO LAMINADOS EN CALIENTE-QUARD 450A.¦80983
    SSAB EMEA AB.......................¦PLANCHAS DE ACERO HARDOX HARDOX 500 38.10 MM X 2438 MM X 7315 MM LAMIN¦123600
    THYSSENKRUPP MATERIALS.............¦TUBOS DE CALDERA OD APROX 12.192M TUBOS DE CALDERA BOILER TUBES 42.00.¦15900
    BARRANQUILLA
    SAXON SERVICES DE PANAMA SA SUCURSA¦PREVENTOR ANULAR MATERIAL: ACERO - HIERRO USO: PREVENTOR ANULAR PARA C¦166360
    BILBAO
    ARCELORMITTAL COMMERCIAL SECTIONS S¦VIGAS DE ACERO DE ALA ANCHA WIDE FLAN GE BEAMS......................¦113538
    GLOBAL SPECIAL STEEL PRODUCTS SA...¦ALAMBRE COLCHONERO -ALAMBRE PARA RESORTES 1.80MM B.R.-ALAMBRE CON COMP¦123416
    MOPYCSA............................¦KELLY BLOCAJE MECANICO 4X 13.5M - PROF. 49 4M MATR: 3189 N/A PARTE DE.¦7300
    UTE LA PAMPILLA B2.................¦COLUMNA 20C-002-AGOTADOR HISPANICA DE CLADERERIA V2P21-000-C-003-001 H¦347649

    IMPORTACIONES CALLAO: EXPORTADORES
    FECHA: 01 JUNIO 2017(LA PAMPILLA)
    BUQUE: SONGA PEACE


    ORIGEN..¦EXPORTADOR..........¦PRODUCTO..............................................................¦KILOS
    BILBAO
    BIODIESEL BILBAO SL................¦FATTY ACID METHYL ESTER SM SM ACEITE TRANSESTERIFICADO USO PARA MEZCLA¦3654363
    BIODIESEL BILBAO SL................¦FATTY ACID METHYL ESTER (BIODIESEL B100)..............................¦841793
    DORDRECHT
    GREENERGY FUELS LTD................¦FATTY ACID METHYL ESTER SM SM ACEITE TRANSESTERIFICADO USO PARA MEZCLA¦5850000

    IMPORTACIONES CALLAO: EXPORTADORES
    FECHA: 01 JUNIO 2017(CALLAO)
    BUQUE: SPIRIT OF LISBON


    ORIGEN..¦EXPORTADOR..........¦PRODUCTO..............................................................¦KILOS
    SAN ANTONIO
    AGROFOODS CENTRAL VALLEY CHILE SA..¦DURAZNO EN MITADES A-1 CAJA DE 24 LATAS / LATA X 570 GRS USO: PARA CON¦20090
    BOPP CHILE SA......................¦PELICULA DE POLIAMIDA BOPP AT15 ANCHO:1.240 METROS ESPESOR:15.000 MM G¦24779
    COMERCIALIZADORA CABILTERRA LTDA...¦NUECES SIN CASCARA CABILTERRA MARIPOSA AMBAR LIGHT-MARIPOSA LIGHT AMBA¦4200
    COMERCIALIZADORA SAN JUAN LTDA.....¦ALMENDRA (PRUNUS DULCIS) CABILTERRA CARMEL CALIBRE 23/25 25/27 27/30 C¦5225
    DAP DUCASSE DISE¥O LIMITADA........¦PAPEL MURAL COLOWAL TOCONAO BLANCO INVIERNO PAPEL USO PARA DECORATIVO.¦6760
    EXPORTADORA TRIPLE ALIANZA LIMITADA¦MANZANAS FRESCAS TRIPLE ALIANZA LIMITADA833 CAJAS USO: COMERCIALIZACIO¦20786
    HAPAG-LLOYD CHILE SPA..............¦CONTENEDORES VACIOS...................................................¦0
    HAPAG-LLOYD CHILE SPA..............¦CONTENEDORES VACIOS...................................................¦0
    NOVUS DE CHILE COMERC E INDUS LTDA.¦ACTIVATE DA ACTIVATE DA LOTE: DM1628807 / DM1633301 ACTIVATE DA 25KG B¦10330
    SOLCROM SA.........................¦MAQUINA PARA PINTAR WAGNER W550 MATERIAL: POLIETILENO HOGAR MAQUINARIA¦844
    SAN VICENTE
    AVENA DE LOS ANDES SA.........
          20 MAYO 2017 (B)   



  • - IMPORTACION MARITIMA, PUERTO DEL CALLAO

    IMPORTACIONES CALLAO: EXPORTADORES
    FECHA: 20 MAYO 2017(CALLAO)
    BUQUE: ERIDANUS LEADER


    ORIGEN..¦EXPORTADOR..........¦PRODUCTO..............................................................¦KILOS
    ALTAMIRA
    KIA MOTORS MEXICO SA DE CV BOU.....¦M1 KIA RIO VE:1.6 MT EX ULTRA A¥O FAB:2017 A¥O MOD:2018 CA:HATCHBACK P¦32004
    BALTIMORE
    BROOKSIDE EQUIPMENT SALES INC......¦EXCAVADORA MOVIL CATERPILLAR M322C A¥O: 2005-SERIE: CATM322CLBDK02030-¦41912
    EXPORT FREIGHT & BROKERS INC.......¦CARGADOR FRONTAL VOLVO L120D 2000-2000 VOLVO L120D WHEEL LOADER-S/N: L¦19958
    FORD TRADING CO....................¦N1 FORD F-150 VE:LARIAT A¥O FAB:2017 A¥OMOD:2017 CA:PICK UP PM:287@575¦21042
    GENERAL MOTORS OVERSEAS DISTRIBUTIO¦M1 CHEVROLET TRAVERSE VE:3.6 V6 LT AT AWD A¥O FAB:2017 A¥O MOD:2017 NC¦39233
    GROUP JDS INC......................¦EXCAVADORA USADO A¥O: 2005 USO:USO: PARALA INDUSTRIA DE LA CONSTRUCCIO¦18810
    JLG INDUSTRIES INC.................¦PLATAFORMA AEREA JLG 1350SJP SERIE NO. 0300226991 PARTNO. A6920405 SE.¦40824
    JOHN DEERE CONSTRUCTION & FORESTRY.¦CARGADOR FRONTAL JOHN DEERE 744K 2017-ORDEN:28103093 SERIE:1DW744KXTHD¦49540
    MACK TRUCKS INC....................¦N3 MACK CXU613E A¥O FABR.:2017 A¥O MOD.:2018 NC:6 CC:12800 CH:1M1AW07Y¦489838
    TRANSFORCE MARINE INC..............¦MONTACARGAS CATERPILLAR P36000 A¥O: 2011ENGINE SERIAL NUMBER: 6M60-151¦20190
    BREMERHAVEN
    BAYERISCHE MOTOREN WERKE...........¦M1 BMW 118I VE:5-PUERTAS A¥O FABR.:2017 A¥O MOD.:2017 NC:3 CC:1499 CH:¦272610
    BAYERISCHE MOTOREN WERKE...........¦M1 MINI COUNTRYMAN VE:COOPER S A¥O FAB:2017 A¥O MOD:2017 CA:SUV PM:141¦2695
    UNELAS UG..........................¦CAMION DE BASURA USADO: GARBAGE TRUCK USED MB 2528 6X2 ATEGO CHASSIS N¦14870
    UNELAS UG..........................¦CAMION DE BASURA: GARBAGE TRUCK USED MB 2528 6X2 ATEGO CHASSIS NO WDB9¦14140
    UNELAS UG..........................¦CAMION DE BASURA: GARBAGE TRUCK USED MB 2528 6X2 ATEGO CHASSIS NO WDB9¦14170
    CARTAGENA
    VOLVO GROUP COLOMBIA SAS...........¦N3 VOLVO GKE 330 4X2TA¥O FABR.:2015A¥O MOD.:2016NR:6AR:22/8N1:295/80R2¦6616
    HOUSTON
    BOREALIS RESOURCES INC.............¦GRUA GROVE RT890E GROVE CRANE COLOR AMARILLO USO:SERIAL: 230989 GRUA G¦53200
    EQUIPSHIP INC......................¦TRACTOR AGRICOLA JOHN DEERE 9400 A¥O: 1998 S/N: RW9400H010412 PARA AGR¦15194
    IRON PLANET........................¦CARGADOR FRONTAL VOLVO L120C A¥O: 1998 SERIE NRO. L120CV62586 - IT# 86¦18833
    ZIEGLER............................¦EXCAVADOR CAT M318 A¥O: 2002 SERIE NRO. 8AL01830 - ID NO. I6539 PRESEN¦19800
    JACKSONVILLE
    AMERICAN HONDA MOTOR CO INC........¦M1 HONDA CR-V 2017/2017 VERSION:EX LOTE:0001207396-CA:SUV C1:GRIS STEE¦2990
    AMERICAN HONDA MOTOR CO INC........¦M1 HONDA CIVIC 2017/2017 VERSION:EX-TP LOTE: 0001207254 NC:4 CC:1496 C¦222948
    BUKKEHAVE INC......................¦VEHIC. NEW 2017 JEEP CHEROKEE LONGITUDE 2.4L GAS 4X4..................¦1950
    EXPORT FREIGHT & BROKERS INC.......¦EXCAVADORA VOLVO EC240BLC 2006-2006 VOLVO EC240BLC HYDRAULIC EXCAVATOR¦25483
    FORD TRADING CO....................¦M1 FORD EXPEDITION VE:LIMITED A¥O FAB:2017 A¥O MOD:2017 CA:SUV PM:272@¦15288
    GENERAL MOTORS OVERSEAS DISTRIBUTIO¦M1 CHEVROLET SUBURBAN VE:5.3 V8 LT AT 4WD A¥O FAB:2017 A¥O MOD:2017 NC¦38447
    MERCEDES BENZ USA INTERNATIONAL INC¦M1 MERCEDES BENZ AMG GLE 63 S 4MATIC VE:AMGGLE63S 4MATIC A¥O FAB:2017.¦29715
    SCORPION EXPRESS LINE..............¦CARGADOR FRONTAL VOLVO L120E A¥O: 2006 PARA REPARACION DE MOTOR SERIE.¦18959
    TOYOTA MOTOR SALES USA INC.........¦M1 SEDAN TOYOTA COROLLA SEMIFULL 1.8 M/TA¥O 2017/2017 ZRE172L-DEFDK-C1¦57045
    MANZANILLO
    AUTOMOTORA AUTOSTAR SA.............¦M1 JEEP RENEGADE SPORT VE:4X2 A¥O FAB:2017 A¥O MOD:2017-CA:SUV C1:BLAN¦25020
    KOMATSU HOLDING SOUTH AMERICA LTDA.¦CARGADOR FRONTAL KOMATSU WA470-6A 2017 A¥O DE FABRICACION 2017 USO COM¦24010
    PORT NEWARK
    FORD TRADING CO....................¦M1 FORD EXPLORER VE:LIMITED A¥O FAB:2017A¥O MOD:2017 CA:SUV PM:216@650¦48795
    FORD TRADING CO....................¦M1 FORD EDGE VE:SEL A¥O FAB:2017 A¥O MOD:2017-CH:2FMPK3J91HBB86144 VI:¦10470
    SAGUNTO
    OBRASCON HUARTE LAIN SA............¦N3 ROADTEC SB2500D-961 A¥O FAB:2008 A¥O MOD:2008 CA:OTROS USOS ESPECIA¦34246
    ZEEBRUGGE
    MACHINERY RESALE BVBA..............¦CARGADOR FRONTAL VOLVO L120C A¥O: 1998 VOLVO / L15042902 / V12777L120C¦20500
    TRANSPORTINGWHEELS BV..............¦N3 MAN TGS 33.400 6X4 BB-WW VE:SV A¥O FABR.:2016 A¥O MOD.:2016- NR:10.¦9237

    IMPORTACIONES CALLAO: EXPORTADORES
    FECHA: 20 MAYO 2017(CALLAO)
    BUQUE: MSC MARGRIT


    ORIGEN..¦EXPORTADOR..........¦PRODUCTO..............................................................¦KILOS

    GUANGZHOU GREATWAY HARDWARE CO L...¦PASA CABLES BISMET ALEACION DE ALUMINIO MATT-BLANCO PANEL TERMINADO TA¦3620
    BALBOA
    ABDONY TRADE PANAMA S A............¦CILINDRO FOTOCONDUCTOR RICOH COD: D1979510 USO PARA OFICINA CILINDRO F¦1446
    AHI PANAMA SA DE RL................¦GALONERA MIDWEST CAN 1100 STANDARD NON CARB EPA RED POLIETILENO DE ALT¦1930
    BENITOMO WORLD SA..................¦ARM ROCKER EX.MIT.LANCER 4G18 07/ NPC MD-341818 MD-341818 USO:REPUESTO¦699
    CAMIONES KAMAZ LATINOAMERICA SA....¦SELLO SUPERIOR DE CAMISA KAMAZ REPUESTOSPARA VEHICULOS AUTOMOTRIZ CAMI¦1216
    CHICHACO MOTORSPORT S A............¦M1 MASERATI LEVANTE S 2017/2017 VERSION:3.0 AT V6 BITURBO NC:6 CC:2979¦4600
    COLUMBUS MCKINNON PANAMA SA........¦SEGURO DE GANCHO YALE VS III SEGURO REPUESTO DE POLIPASTO N00440057 SE¦832
    EXPORTADORA LA PERLA...............¦ROPA INTIMA DE DAMA, SOSTEN, BRAGA, FAJAS.............................¦79
    HUNTSMAN TEXTILES EFFECTS PANAMA S.¦COLORANTE HUNTSMAN CODIGO: 1000002422 / 1485736AL COLORANTES PARA LA I¦428
    HUNTSMAN TEXTILES EFFECTS PANAMA S.¦LANASET VIOLET B LANASET COLORANTES ACIDOS COLORANTES PARA USO EN LA I¦2475
    KOYO LATIN AMERICA.................¦RODAMIENTOS DE BOLAS KOYO ACERO USO:PARAVEHICULOS Y MAQUINARIAS RODAMI¦6181
    MODERNA COMERCIAL SA...............¦1 FLEXITANK ISOTANQUE FLEXITANK: 1. REMOVAL AND DISPOSAL FOR..........¦7300
    MSC PANAMA SA......................¦CONTENEDORES VACIOS...................................................¦0
    NIPRO MEDICAL PANAMA...............¦LINEAS ARTERIO VENOSA A031 (PERU2) NIPROSET DE LINEAS ARTERIAL Y VENOS¦94738
    NSC NEW SHIPPING LOGISTICS SA......¦BALON MIKASA FT-5 # 5 BLACK 4907225790142 USO: PARA FUTBOL BALON FUTBO¦901
    BANGKOK
    ASIAN ALLIANCE INTERNATIONAL COMPAN¦CANNED SOLID YELLOWFIN IN VEGETABLE OIL, 10% FLAKES MAX, (OIL/BRINE:60¦20660
    ASIAN ALLIANCE INTERNATIONAL COMPAN¦CANNED CHUNK YELLOWFIN IN VEGETABLE OIL, 20% FLAKES MAX, (OIL/BRINE:60¦20660
    ASIAN ALLIANCE INTERNATIONAL COMPAN¦CANNED SOLID YELLOWFIN IN VEGETABLE OIL, 10% FLAKES MAX, (OIL/BRINE:60¦20660
    ST INTERNATIONAL SERVICES CO LTD...¦ARROZ GOLDEN RICE OD. A BASE GRANO LARGOCONSUMO DOMESTICO EN SACOS DE.¦125325
    ST INTERNATIONAL SERVICES CO LTD...¦ARROZ GOLDEN RICE OD. A BASE GRANO LARGOCONSUMO DOMESTICO EN SACOS DE.¦125325
    THAI MCGRAIN CO LTD................¦ARROZ BLANCO IVALE EMPACADOS EN SACOS NUEVOS DE POLIPROPILENO DE 50 KG¦125380
    BEIJIAO
    MIDEA ELECTRIC TRADING (SINGAPORE )¦UNIDAD CONDENSADORA CIAC CA21C-024-V3N1CDE 24 000 BTU/HR 208-230V-1F-6¦27035
    BUENAVENTURA
    ABRACOL SA.........................¦CHAPA IDEACE 2017 CHAPAS DE SOBREPONER CODIGO: 22129 CHAPA MASTER 21 D¦2788
    ALCOPLAST SAS......................¦PLASTISOL ALCOPLAST EN 38 TAMBORES CON 270 KG NETOS C/U PARA LA FABRIC¦21325
    ARCHROMA COLOMBIA SAS..............¦SD99 A225476CA SD99 A225476CA REF. 45/969428(10) SD99 A225476CA.......¦2720
    ARCOLI SAS.........................¦REMACHE BANDAL ARCOLI DE ALUMINIO REMACHE BANDAL .....................¦10892
    AVANT PLAST SA.....................¦PORTA ACCESORIOS CYZONE CON BISAGRA ACCESORIO PORTA ACCESORIOS CLIPPER¦1224
    BELLOTA COLOMBIA SA COMERCIALIZADOR¦BARRA AGRICOLA BELLOTA EN UNIDADES CODIGO: 106216 PARA USO AGRICOLA BA¦22328
    BELSTAR SA.........................¦ETIQUETA ACABADO:BRILLANTE APLICACION:ETIQUETA BASE DIMENSIONES:017.00¦7512
    BELSTAR SA.........................¦COLONIA LBEL COLONIA USO: COSMETICO DEVOS MAGNETIC SEDUCTION EAU DE TO¦29413
    BELSTAR SA.........................¦TRANSITO A BOLIVIA....................................................¦11248
    CAVAR SA...........................¦ESCALERA DIELECTRICA HORN HESC-FV-9P-08-IA TIPO IA USO:PARA MANIOBRAS.¦115
    CI DE AZUCARES Y MIELES SA.........¦AZUCAR BLANCA EN POLVO MANUELITA POLIPROPILENO DE 25 KGS. NETOS CADA U¦50240
    CI DE AZUCARES Y MIELES SA.........¦AZUCAR RUBIA SIN REFINAR CALIME¥A SACOS DE 50 KG COMERCIALIZACION AZUC¦25065
    CI DE AZUCARES Y MIELES SA.........¦AZUCAR BLANCA CALIME¥A SACOS DE 50 KG COMERCIALIZACION AZUCAR REG. SAN¦26569
    CIA COLOMBIANA DE CERAMICA SAS.....¦INODORO CORONA TAZA TIPO FUNCIONAMIENTO:SIFONICO TIPO ACCIONAMIENTO:DO¦45897
    CIA COLOMBIANA DE CERAMICA SAS.....¦APARATOS SANITARIOS DE PORCELANA:VITRIFICADA:SAE 6027610128991 DEL 08-¦30598
    CIA COLOMBIANA DE CERAMICA SAS.....¦APARATOS SANITARIOS DE PORCELANA:VITRIFICADA:SAE 6027610128975 DEL 08-¦30598
    CIA COLOMBIANA DE CERAMICA SAS.....¦APARATOS SANITARIOS DE PORCELANA:VITRIFICADA:SAE 6027610129001 DEL 08-¦30598
    CIA COLOMBIANA DE CERAMICA SAS.....¦APARATOS SANITARIOS DE PORCELANA:VITRIFICADA:SAE 6027610129056 DEL 08-¦25516
    CIA COLOMBIANA DE CERAMICA SAS.....¦INODORO CORONA TAZA-TIPO INODORO:TAZA FLUXOMETRICA TIPO ARO:ABIERTO TI¦25516
    CIA COLOMBIANA DE CERAMICA SAS.....¦APARATOS SANITARIOS DE PORCELANA:VITRIFICADA:SAE 6027615330832 DEL 08-¦25516
    CLARIANT PLASTICS & COATINGS (COLOM¦DISPERSOR CONCENTRADO PP8RFE12020 LOTE: CO1G009441 COLOR PARDO REMAFIN¦1058
    COLGATE PALMOLIVE..................¦SUAVIZANTE SOFLAN SUAVITEL SE ADJUNTA REGISTRO N° NSOH00968-11CO F.EMI¦52550
    COLGATE PALMOLIVE..................¦SUAVIZANTE SOFLAN SUAVITEL SE ADJUNTA REGISTRO N° NSOH00968-11CO F.EMI¦75725
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           Microstructure and dielectric properties of CaCu3Ti4O12 ceramic    
Mohamed, Julie J. and Hutagalung, Sabar D. and Ain, M. Fadzil and Deraman, Karim and Ahmad, Zainal A. (2007) Microstructure and dielectric properties of CaCu3Ti4O12 ceramic. Material Letters, 61 (8-9). pp. 1835-1838.
          Communications Engineering Mastery Test 7: ECE Pre-Board   

Communications Engineering Exam 7

This is 100 items set of Practice Examination 7 in Communications Engineering (Electronics Systems and Technology) composed of previous Board Exams Questions. Read each questions and choices carefully! Choose the best answer. In the actual board, you have to answer 100 items in Communications Engineering within 5 hours. You have to get at least 70% to pass the subject. Communications Engineering is 30% of the total 100% Board Rating along with Mathematics (20%), General Engineering and Applied Sciences (20%) and Electronics Engineering (30%). Familiarize each and every questions to increase the chance of passing the ECE Board Examination.

Start the Test Yourself Exam 7

Choose the letter of the best answer in each questions.

1. How far away is the radio horizon of an antenna 100 ft high?

  • A. 14.14 mi
  • B. 40km
  • C. 14.14 km
  • D. 40 mi

2. What is the maximum line-of-sight distance between a paging antenna 250 ft high and a pager receiver 3.5 ft of the ground?

  • A. 25 km
  • B. 25 mi
  • C. 70.73 km
  • D. 70.73 mi

3. What is the path attenuation between transmitter and receiver at a frequency of 1.2 Ghz and a distance of 11,000 mi?

  • A. 119 dB
  • B. 115 dB
  • C. 179 dB
  • D. 174 dB

4. What is the uplink receiver frequency if the downlink transmitter is on channel 4 (3.84 Ghz)?

  • A. 6.065 GHz
  • B. 6.84 GHz
  • C. 6.65 GHz
  • D. 6.05 GHz

5. What is the maximum theoretical data rate of the above problem if one transponder is used for binary transmission?

  • A. 36 Mbps
  • B. 72 Mbps
  • C.18 Mbps
  • D. 144 Mbps

6. What is the guardband between transponder channels in the commercial C-band for satellite communications?

  • A. 6 MHz
  • B. 36 MHz
  • C. 4 MHz
  • D. 2 MHz

7. What is the typical satellite transponder bandwidth?

  • A. 24 MHz
  • B. 500 MHz
  • C. 36 MHz
  • D. 48 MHz

8. What is the bandwidth available in the commercial C-band?

  • A. 1000 MHz
  • B. 36 MHz
  • C. 250 MHz
  • D. 500 MHz

9. Which of the following is the uplink frequency in C-band?

  • A. 5.925 GHz
  • B. 4.2 GHz
  • C. 7.425 GHz
  • D. 3.7 GHz

10. How many transponder channels are realized in the commercial C-band without frequency re-use?

  • A. 24
  • B. 12
  • C. 36
  • D. 48

11. Which band of frequencies used by military for its satellites and radar?

  • A. C band
  • B. X band
  • C. L band
  • D. P band

12. For navigation as well as marine and aeronautical communications and radar, ____ band is used.

  • A. L
  • B. K
  • C. S
  • D. J

13. What is the current frequency band given most attenuation for satellite communications?

  • A. Ku
  • B. C band
  • C. J
  • D. P

14. What satellite subsystem monitors onboard conditions such as temperature and battery voltage and transmits this data back to a ground station for analysis?

  • A. Communications subsystem
  • B. AKM
  • C. TTC
  • D. Transponder

15. Which of the following satellite subsystem provides stabilization in orbit and senses changes in orientation?

  • A. Attitude control subsystem
  • B. TTC
  • C. AKM
  • D. Transponder

16. What is the typical center frequency spacing between adjacent channels (transponders) in satellites?

  • A. 36 MHz
  • B. 40 MHz
  • C. 500 MHz
  • D. 4 MHz

17. Which of the following are uplinks in the Ku band?

  • A. 14 to 14.5 GHz
  • B. 11.7 to 12.2 GHz
  • C. 14 to 15.5 GHz
  • D. 11 to 11.5 GHz

18. What is considered as the most advanced satellite system developed for cellular telephones?

  • A. Iridium
  • B. Globalstar
  • C. ANIK
  • D. Molniya

19. What is the orbit of Motorola’s Iridium satellite system?

  • A. Polar
  • B. Equatorial
  • C. Inclined elliptical
  • D. Inclined equatorial

20. What band of frequencies do these satellites operate?

  • A. L band
  • B. Ka band
  • C. C band
  • D. Ku band

21. Iridium satellites can provide data communications of up ____ bps data rate.

  • A. 1200
  • B. 4800
  • C. 2400
  • D. 3840

22. What satellite system is also known as Navstar?

  • A. GPS
  • B. Iridium
  • C. Globalstar
  • D. Intelsat

23. What is the orbit height of a GPS satellite?

  • A. 10,898 nmi
  • B. 10,898 mi
  • C. 10,898 km
  • D. 10, 898 m

24. What is the orbital period of each satellite in the GPS constellation?

  • A. 6 h
  • B. 12 h
  • C. 5 h
  • D. 15 h

25. What term is normally associated with specifying the location of a celestial body in space?

  • A. Constellation
  • B. Galaxy
  • C. Satellite
  • D. Ephemeris

26. What is the angle of inclination of GPS system?

  • A. 55˚
  • B. 65˚
  • C. 105˚
  • D. 45˚

27. What material is most often used for the outer covering of coaxial cables?

  • A. PVC
  • B. Teflon
  • C. PE
  • D. Polystyrene

28. What is the dielectric constant of polyethylene (PE) insulator?

  • A. 2.5
  • B. 3.3
  • C. 2.27
  • D. 2.1

29. Polytetrafluoroethylene (PTFE) is also widely used insulator and is known as.

  • A. polystyrene
  • B. teflon
  • C. ceramic
  • D. bakelite

30. What is the characteristic impedance of a two-wire line with the following data: diameter = 0.023in., spacing =0.5 in., insulation = PE.?

  • A. 300 Ω
  • B. 250 Ω
  • C. 305 Ω
  • D. 301 Ω

31. What is the characteristic impedance of a coaxial line with the following data: inner diameter = 0.2 in., center conductor diameter = 0.06 in., insulation = Teflon.

  • A. 200 Ω
  • B. 75 Ω
  • C. 50 Ω
  • D. 150 Ω

32. A pair of current-carrying conductors is not considered a transmission line unless it is at least ___ λ long at the signal frequency.

  • A. 0.1
  • B. 0.3
  • C. 0.2
  • D. 0.4

33. If the operating frequency is 450 MHz what length of a pair of conductors is considered to be a transmission line?

  • A. 2.19 ft
  • B. 2.19 m
  • C. 0.219 ft
  • D. 0.219 m

34. What is the physical length of the above transmission line at 3/8λ long?

  • A.0.82 m
  • B. 0.82 ft
  • C. 0.82 in
  • D. 0.82 cm

35. Which of the following coaxial cable connectors is called the UHF connector?

  • A. PL-259
  • B. BNC
  • C. N-type connector
  • D. F connector

36. What connector is popular in attaching test instruments like oscilloscopes, frequency counters, spectrum analyzers, etc?

  • A. UHF connector
  • B. PL-259
  • C. BNC
  • D. SMA

37. Which coaxial cable connector is least expensive and is widely used for TV sets,VCRs and cable TV?

  • A. N-type connector
  • B. F-type connector
  • C. BNC
  • D. PL-259

38. Which coaxial connector is a more complex and expensive but do a better job in maintaining the electrical characteristics of the cable through the interconnections?

  • A. N-type connector
  • B. F-type connector
  • C.BNC
  • D. PL-259

39. The velocity factor in transmission lines vary from ___ to ___.

  • A. 0.6 to 0.8
  • B. 0.3 to 0.5
  • C.0.5 to 0.9
  • D. 0.8 to 0.9

40. What is the typical velocity factor of coaxial cables?

  • A. 0.6 to 0.8
  • B. 0.3 to 0.5
  • C. 0.5 to 0.9
  • D. 0.4 to 0.6

41. What is the typical velocity factor of open-wire line?

  • A. 0.9
  • B. 0.8
  • C. 0.5
  • D. 0.7

42. What line has a typical velocity factor of about 0.8?

  • A. Shielded pair
  • B. Flexible coaxial
  • C. Twin-lead
  • D. Open-wire line

43. What is the velocity factor of coaxial cable with a characteristic impedance of 50 Ω and capacitance of 30 pF/ft and inductance of 75 nH/ft?

  • A. 0.58
  • B.0.68
  • C. 0.98
  • D. 0.81

44. What is transit time (time delay) of a 50-ft length transmission line of the above problem?

  • A. 50 ns
  • B. 100 ns
  • C. 75 ns
  • D. 65 ns

45. What do you call a transmission line used specifically for the purpose of achieving delay?

  • A. Delay line
  • B. Flat line
  • C. Resonant line
  • D. Non-resonant line

46. What is the time delay introduced by a 75-ft coaxial cable with a dielectric constant of 2.3?

  • A. 1.54 ns
  • B. 11.5 ns
  • C. 115.6 ns
  • D. 1156 ns

47. Assume a frequency of 4 MHz, determine the phase shift offered by the line in the above problem.

  • A. 108.5˚
  • B. 106.5˚
  • C. 115.5˚
  • D. 166.5˚

48. Find the load impedance that must be used to terminate RG-62A/U to avoid reflections?

  • A. 93 Ω
  • B. 75 Ω
  • C. 50 Ω
  • D. 300 Ω

49. Find the equivalent inductance per foot of the above cable?

  • A. 13.5 nF/ft
  • B. 13.5 pF/ft
  • C. 116.8 nH/ft
  • D. 116.8 pF/ft

50. An RG-11/U foam coaxial cable has a maximum voltage standing wave of 52 V and a minimum voltage of 17 V. Find the value of the resistive load.

  • A. 24.59Ω
  • B. Either A or C
  • C. 228.75Ω
  • D. Neither A nor C

51. Sound provides all sorts of information. What information is related to mental processes of knowledge, reasoning, memory, judgement and perception?

  • A. Cognitive
  • B. Affective
  • C. Digital
  • D. Analog

52. What sound characteristic relates to a sonic time pattern?

  • A. Tempo
  • B. Attack
  • C. Rhythm
  • D. Timbre

53. What is considered the most obvious conveyor of information?

  • A. Sound
  • B. Speech
  • C. Music
  • D. Noise

54. Attack is a sound characteristic that refers to the way a sound begins. Which of the following is NOT an attack of sound?

  • A. Hard
  • B. Soft
  • C. Crisp
  • D. Simple

55. At what loudness level do pitch (in mels) and frequency (in Hz) are numerically equal?

  • A. 0 dB
  • B. 20 dB
  • C. 60 dB
  • D. 40 dB

56. The basic voice band has how many octaves?

  • A. 10
  • B. 4
  • C. 5
  • D. 3

57. The ratio of frequencies is termed.

  • A. interval
  • B. octave
  • C. harmonics
  • D. factor

58. What is the tonal ratio of an octave?

  • A. 1 to 2
  • B. 1 to 3
  • C. 2 to 1
  • D. 3 to 1

59. If the loudness level is 100 phons, what is this in sone unit?

  • A. 100
  • B. 90
  • C. 106
  • D. 96

60. What octave bands are there in the midrange?

  • A. 1st and 2nd
  • B. 5th, 6th and 7th
  • C. 3rd and 4th
  • D. 8th and 9th

61. How much louder is 80 phons over 60 phons?

  • A. 1000 times
  • B. 4 times louder
  • C. 100 times
  • D. Twice as loud

62. What increase in sound level is commonly perceived by most people?

  • A. 6 to 10 dB
  • B. 1 to 3 dB
  • C. 3 to 6 dB
  • D. 10 to 20dB

63. What is typical loudness level of an acoustic guitar 1 foot away?

  • A. 60 dB
  • B. 100 dB
  • C. 80 dB
  • D. 40 dB

64. What do you call the perceptible sound repetition?

  • A. Reverberation
  • B. Echo
  • C. Reflection
  • D. Masking

65. What is the amount of sound reduction provided by a barrier – wall, floor, or ceiling called?

  • A. Sound Attenuation
  • B. Transmission loss
  • C. Sound absorption
  • D. Barrier loss

66. What is the frequency of a 2-cm sound wave in sea water at 25˚C?

  • A. 76 kHz
  • B. 76 Hz
  • C. 76 MHz
  • D. 76 mHz

67. A choir consisting of 36 individuals all of whom can sing with the same intensity. A soloist sings a certain passage and then is joined by the remainder of the choir members for a repeat of the passage. What is the difference in the sound intensity level in the two cases?

  • A. 3 dB
  • B. 6 dB
  • C. 36 dB
  • D. 15.6 dB

68. For the safety and comfort of factory workers, the sound-intensity level in a certain factory must remain below 85 dB. What is the maximum sound intensity allowed in this factory?

  • A. 3.2 x 10-4 W/m2
  • B. 3.2 x 10-6 W/m2
  • C. 3.2 x 10-10 W/m2
  • D. 3.2 x 10-3 W/m2

69. What sound intensity corresponds to a sound-intensity level of 50 dB?

  • A. 1 x 10-6W/m2
  • B. 1 x 10-7W/m2
  • C. 1 x 10-8W/m2
  • D.1 x 10-5W/m2

70. The sound intensity received from the nearby jet plane is 12.6 µW/m2 and that from another jet plane some distance away is 0.45 µW/m2. Find the relative loudness of the two.

  • A. 14.0 dB
  • B. 14.5 dB
  • C. 12.5 dB
  • D. 14.5 dB

71. The noise from an airplane engine 100 ft from an observer is found to have an intensity of 45dB. What will be the intensity when the plane flies overhead at an altitude of 1 mi?

  • A. 10.5 dB
  • B. 34.5 dB
  • C. 35 dB
  • D. 20.5 dB

72. What is the apparent loudness of 80 dB?

  • A. Moderate
  • B. Very loud
  • C. Loud
  • D. Deafening

73. What loudness level in which permanent damage to hearing is possible?

  • A. 120 dB
  • B. 140 dB
  • C. 130 dB
  • D. 150 dB

74. What is sound pressure level if the RMS sound pressure is 100 μbars?

  • A. 114 dB
  • B. 11.4 dB
  • C. 94 dB
  • D. 57 dB

75. What is the velocity of sound in wood (m/s)?

  • A. 330
  • B. 3600
  • C. 3300
  • D. 5800

76. What is the optimum reverberation time at 500 to 1000 Hz of an auditorium?

  • A. 0.9 to 1.1 s
  • B. 1.4 to 1.6 s
  • C. 1.5 to 1.6 s
  • D. 1.6 to 1.8 s

77. For a cinema, the optimum volume per person required is

  • A. 3.1
  • B. 2.8
  • C. 7.1
  • D. 4.2

78. Which of the following is NOT an acoustical defect to be avoided in acoustical designs?

  • A. Reverberation
  • B. Flutter echo
  • C. Distortion
  • D. Sound concentration

79. What absorber in which efficient absorption is only possible over a very narrow band approaching 1.0 (total absorption)?

  • A. Porous material
  • B. Helmholtz resonator
  • C. Panel Absorber
  • D. Membrane absorber

80. How many voice signals (4 kHz max.) would fit into a 5 MHz spectrum?

  • A. 1250
  • B. 500
  • C. 1000
  • D. 1500

81. How many FM stations would be accommodated I an ordinary TV channel?

  • A. 33
  • B. 30
  • C. 40
  • D. 25

82. What is the actual length in feet of a one-quarter wavelength of a coax with a velocity factor of 0.695 at 45 MHz?

  • A. 17.82
  • B. 19.26
  • C. 16.28
  • D. 16.97

83. Determine the terrain sensitivity loss for a 4-GHz carrier that is propagating over a very dry, mountainous area.

  • A. -1.25 dB
  • B. -3.05 dB
  • C. -2.01 dB
  • D. -5.01 dB

84. A satellite transmitter operates at 4GHz with an antenna gain of 4dBi. The receiver 40000 km away has an antenna gain of 50 dBi. If the transmitter has a power of 8 W, find (ignoring feedline losses and mismatch) the EIRP in dBW.

  • A. 50
  • B. 69
  • C. 49
  • D. 30

85. A radio signal moves from air to glass. The angle of incidence is 20°. Calculate the angle of refraction. The relative permittivity of the glass is 7.8.

  • A. 7.8°
  • B. 5.04°
  • C. 6.04°
  • D. 7.04°

86. At a certain time, the MUF for transmission at an angle of incidence of 75° is 17 MHz. What is the critical frequency?

  • A. 4.4 MHz
  • B. 3.5 MHz
  • C. 6.5 MHz
  • D. 1.5 MHz

87. A properly matched transmission line has a loss of 1.5 dB/100m. if 10 W is supplied to one end of the line, how many watts reach the load, 27 m away?

  • A. 10 W
  • B. 7.2 W
  • C. 9.9 W
  • D. 9.1 W

88. The electromagnetic radiation theory was profounded by

  • A. Sir Edward Appleton
  • B. Guglielmo Marconi
  • C. Heinrich Hertz
  • D. James C. Maxwell

89. What is caused by the transverse nature of electromagnetic waves?

  • A. Polarization
  • B. Interference
  • C. Beamwidth
  • D. Gain

90. Which propagation method is known as special case of skywave?

  • A. Space wave
  • B. Troposcatter
  • C. Ground wave
  • D. Direct wave

91. What is the orbit inclination of geostationary satellites?

  • A. 0°
  • B. 10°
  • C. 20°
  • D. 30°

92. A transmission line of unknown impedance is terminated with two different resistances, and an SWR is measured each time. With a 75 Ω termination, the SWR measures 1.5. With a 300 Ω termination, it measures 2.67. What is the impedance of the line?

  • A. 100 Ω
  • B. 212 Ω
  • C. 300 Ω
  • D. 112 Ω

93. What is the high frequency sound that cannot be heard by the human ear?

  • A. Ultrasonic
  • B. Transonic
  • C. Subsonic
  • D. Supersonic

94. What frequency is 10 octaves above 30 Hz?

  • A. 30.72 kHz
  • B. 30 kHz
  • C. 300 Hz
  • D. 307.2 kHz

95. A radio signal travels ____ yards per microseconds.

  • A. 273
  • B. 328
  • C. 618
  • D. 123.6

96. What is the actual length in feet of a one-half wavelength of a coax with a velocity factor of 0.63 at 28 MHz?

  • A. 44.28
  • B. 43.46
  • C. 11.07
  • D. 46.27

97. The range of speech power is ____.

  • A. 1 – 10 watts
  • B. 100 – 1000 milliwatts
  • C. 10 – 100 milliwatts
  • D. 10 – 1000 microwatts

98. What is the actual length in feet of a one-quarter wavelength of a coax with a velocity factor of 0.68 to 30 MHz?

  • A. 19.26
  • B. 5.6
  • C. 17.82
  • D. 16.97

99. What is actual length in feet of a one-half wavelength of a coax with a velocity factor of 0.59 at 26 MHz?

  • A. 11.16
  • B. 40.29
  • C. 42.46
  • D. 46.28

100. The agreed standard for measuring loudness is the loudness sensation produced by a 1000 Hz sine wave _____ dB above the listener’s threshold of hearing.

  • A. 80
  • B. 50
  • C. 30
  • D. 40

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          Biologically sensitive field-effect transistors: from ISFETs to NanoFETs.   
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Biologically sensitive field-effect transistors: from ISFETs to NanoFETs.

Essays Biochem. 2016 Jun 30;60(1):81-90

Authors: Pachauri V, Ingebrandt S

Abstract
Biologically sensitive field-effect transistors (BioFETs) are one of the most abundant classes of electronic sensors for biomolecular detection. Most of the time these sensors are realized as classical ion-sensitive field-effect transistors (ISFETs) having non-metallized gate dielectrics facing an electrolyte solution. In ISFETs, a semiconductor material is used as the active transducer element covered by a gate dielectric layer which is electronically sensitive to the (bio-)chemical changes that occur on its surface. This review will provide a brief overview of the history of ISFET biosensors with general operation concepts and sensing mechanisms. We also discuss silicon nanowire-based ISFETs (SiNW FETs) as the modern nanoscale version of classical ISFETs, as well as strategies to functionalize them with biologically sensitive layers. We include in our discussion other ISFET types based on nanomaterials such as carbon nanotubes, metal oxides and so on. The latest examples of highly sensitive label-free detection of deoxyribonucleic acid (DNA) molecules using SiNW FETs and single-cell recordings for drug screening and other applications of ISFETs will be highlighted. Finally, we suggest new device platforms and newly developed, miniaturized read-out tools with multichannel potentiometric and impedimetric measurement capabilities for future biomedical applications.

PMID: 27365038 [PubMed - indexed for MEDLINE]