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1

Szymczyk, Anthony. Surface electrical phenomena in membranes and microchannels. Trivandrum, Kerala, India: Transworld Research Network, 2008.

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2

Birdi, K. S. Introduction to electrical interfacial phenomena. Boca Raton: Taylor & Francis, 2010.

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3

K, Cheng Leo, and Buist Martin L, eds. Mathematical modelling the electrical activity of the heart: From cell to body surface and back again. New Jersey: World Scientific, 2005.

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4

DeMinco, N. Free-field measurements of the electrical properties of soil using the surface wave propagation between two monopole antennas. Washington, DC]: U.S. Department of Commerce, National Telecommunications and Information Administration, 2012.

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5

Hans-Ulrich, Finzel, ed. Electrical resistivity of thin metal films. Berlin: Springer, 2007.

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6

E, Oh Jae, and United States. National Aeronautics and Space Administration., eds. Surface morphologies and electrical properties of molecular beam epitaxial InSb and InAs xS̲bx̲ grown on GaAs and InP substrates. [Washington, D.C.?: National Aeronautics and Space Administration, 1989.

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7

Janz, George J. Thermodynamic and transport properties for molten salts: Correlation equations for critically evaluated density, surface tension, electrical conductance, and viscosity data. Washington, D.C: published by the American Chemical Society and the American Institute of Physics for the National Bureau of Standards, 1988.

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8

Okpalugo, Thomas Ifeanyi Timothy. The haemocompatibility of ultra-smooth silicon and nitrogen doped hydrogenated amorphous carbon thin films: The role of the microstructure, electrical properties, and surface energy. [S.l: The author], 2002.

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9

Kelly, J. J. A user's guide to the Zwikker-Kosten Transmission Line Code (ZKTL). Hampton, Va: National Aeronautics and Space Administration, Langley Research Center, 1997.

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10

Munn, R. W. Electrical and Related Properties of Organic Solids. Dordrecht: Springer Netherlands, 1997.

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11

Salaneck, W. R. Conjugated polymer surfaces and interfaces: Electronic and chemical structure of interfaces for polymer light emitting devices. Cambridge: Cambridge University Press, 1996.

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12

Musil, Jindřich. Tenké vrstvy nitridu titanu. Praha: Academia, 1989.

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13

Conference on the Active Superconducting Composites (1st 1996 Université Toulon-Var). CCAS1: Actes du premier Colloque sur les composites actifs supraconducteurs = proceedings of the First Conference on the Active Superconducting Composites, Université Toulon-Var, Toulon-La Garde, 11 et 12 Septembre 1996. Les Ulis, France: EDP Sciences, 1998.

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14

Kiess, Helmut G. Conjugated Conducting Polymers. Berlin, Heidelberg: Springer Berlin Heidelberg, 1992.

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15

Kirkham, Robert M. Reconnaissance field investigation of surface-water specific conductance in the Snowmass-Glenwood Springs area, west-central Colorado. Denver, Colo: Colorado Geological Survey, 1999.

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16

S, Daw Murray, Schlüter Michael 1945-, and Materials Research Society, eds. Atomic scale calculations of structure in materials: Symposium held April 16-17, 1990, San Francisco, California, U.S.A. Pittsburgh, Pa: Materials Research Society, 1990.

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17

F, Klimovich A., and Kestelʹman V. N, eds. Electrophysical phenomena in the tribology of polymers. Amsterdam, The Netherlands: Gordon and Breach Science Publishers, 1999.

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18

National Mine Health and Safety Academy., ed. Mine electricity: Metal/nonmetal surface and underground entry level training. [Washington, D.C.?]: U.S. Dept. of Labor, Mine Safety and Health Administration, National Mine Health and Safety Academy, 1999.

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19

Huang, Jian-Jang, Hao-Chung Kuo, and Shyh-Chiang Shen. Nitride semiconductor light-emitting diodes (LEDs): Materials, technologies and applications. Oxford: Woodhead Publishing, 2014.

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20

V, Kopaev I͡U︡, ed. Opticheskie i ėlektricheskie svoĭstava poluprovodnikov. Moskva: "Nauka", 1993.

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21

Meeting, American Chemical Society. Organic light-emitting materials and devices: 213th American Chemical Society National Meeting Division of Polymer Chemistry, Inc. : San Francisco, CA, USA April 13-15, 1997. Edited by Hsieh B. R and American Chemical Society. Division of Polymer Chemistry. Zug: Hüthig & Wepf, 1998.

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22

Bentarzi, Hamid. Transport in Metal-Oxide-Semiconductor Structures: Mobile Ions Effects on the Oxide Properties. Berlin, Heidelberg: Springer-Verlag Berlin Heidelberg, 2011.

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23

E, Wertz G., AZ Technology Inc, and George C. Marshall Space Flight Center., eds. Testing and optimization of electrically conductive spacecraft coatings. MSFC, Ala: National Aeronautics and Space Administration, Marshall Space Flight Center, 2001.

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24

E, Wertz G., AZ Technology Inc, and George C. Marshall Space Flight Center., eds. Testing and optimization of electrically conductive spacecraft coatings. MSFC, Ala: National Aeronautics and Space Administration, Marshall Space Flight Center, 2001.

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25

International Symposium on Redox Mechanisms and Interfacial Properties of Molecules of Biological Importance (3rd 1987 Honolulu, Hawaii). Redox chemistry and interfacial behavior of biological molecules. New York: Plenum, 1988.

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26

Kuzmany, Hans. Electronic Properties of Conjugated Polymers: Proceedings of an International Winter School, Kirchberg, Tirol, March 14-21, 1987. Berlin, Heidelberg: Springer Berlin Heidelberg, 1987.

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27

Lifshit︠s︡, V. G. Spektry KhPĖĖ poverkhnostnykh faz na kremnii. Vladivostok: Dalʹnauka, 2004.

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28

Schopf, G. Polythiophenes: Electrically conductive polymers. Berlin: Springer, 1997.

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29

1912-, Grigull Ulrich, Straub J, and Schiebener Peter, eds. Steam tables in SI-units: Concise steam tables in SI-units (student's tables) : properties of ordinary water substance up to 1000°ℓ°° össen von gewöhnlichem Wasser und Dampf bis 1000°C und 1000 bar. 3rd ed. Berlin: Springer, 1990.

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30

Novel Nanocomposites: Optical, Electrical, Mechanical and Surface Related Properties. MDPI, 2021. http://dx.doi.org/10.3390/books978-3-0365-2248-7.

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31

Connolly, T. F. Electrical Properties of Solids: Surface Preparation and Methods of Measurement. Springer, 2013.

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32

Introduction to electrical interfacial phenomena. Boca Raton: Taylor & Francis, 2010.

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33

Pullan, Andrew J., Leo K. Cheng, and Martin L. Buist. Mathematically Modeling the Electrical Activity of the Heart: From Cell to Body Surface and Back. World Scientific Publishing Company, 2005.

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34

Finzel, Hans-Ulrich, and Peter Wissmann. Electrical Resistivity of Thin Metal Films. Springer London, Limited, 2007.

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35

Finzel, Hans-Ulrich, and Peter Wissmann. Electrical Resistivity of Thin Metal Films. Springer, 2010.

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36

Wißmann, Peter, and Hans-Ulrich Finzel. Electrical Resistivity of Thin Metal Films (Springer Tracts in Modern Physics). Springer, 2007.

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37

Thermodynamic and Transport Properties for Molten Salts: Correlated Equations for Critically Evaluated Density, Surface Tension Electrical Conductance, and Viscosity Data (Jpcrd - Supplements, 17). AIP Press, 1988.

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38

Electric arc and electrochemical surface texturing technologies. [Washington, D.C: National Aeronautics and Space Administration, 1997.

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39

Surface properties in electric discharge machining. Washington, DC: National Aeronautics and Space Administration, 1988.

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40

Stafstrom, S., J. L. Brédas, and W. R. Salaneck. Conjugated Polymer Surfaces and Interfaces: Electronic and Chemical Structure of Interfaces for Polymer Light Emitting Devices. Cambridge University Press, 2011.

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41

Stafstrom, S., J. L. Brédas, and W. R. Salaneck. Conjugated Polymer Surfaces and Interfaces: Electronic and Chemical Structure of Interfaces for Polymer Light Emitting Devices. Cambridge University Press, 2010.

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42

Stafstrom, S., J. L. Brédas, and W. R. Salaneck. Conjugated Polymer Surfaces and Interfaces: Electronic and Chemical Structure of Interfaces for Polymer Light Emitting Devices. Cambridge University Press, 2003.

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43

Sviridewok, A. I., A. F. Kilmovich, and V. N. Kestelman. Electrophysical Phenomena in the Tribology of Polymers (Polymer Science and Engineering Monographs, a State-of-the-Art Tutorial Series , Vol 5). CRC, 1999.

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44

CCAS1: Actes du premier Colloque sur les composites actifs supraconducteurs = proceedings of the First Conference on the Active Superconducting Composites, ... et 12 Septembre 1996 (Journal de Physique). EDP Sciences, 1998.

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45

Mining Industry: Innovations and Prospects for the Development of Materials Science II. Trans Tech Publications, Limited, 2021.

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46

Maksarov, Vyacheslav V., Nikita V. Martyushev, Viktor V. Gabov, and Denis Zadkov. Mining Industry: Innovations and Prospects for the Development of Materials Science. Trans Tech Publications, Limited, 2020.

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47

Gabov, Victor V., Vyacheslav V. Maksarov, and Nikita V. Martyushev. Mining Industry: Innovations and Prospects for the Development of Materials Science II. Trans Tech Publications, Limited, 2021.

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48

Maksarov, Vyacheslav V., Nikita V. Martyushev, and Viktor V. Gabov. Mining Industry: Innovations and Prospects for the Development of Materials Science III. Trans Tech Publications, Limited, 2022.

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49

Maksarov, Vyacheslav V., Nikita V. Martyushev, and Viktor V. Gabov. Mining Industry: Innovations and Prospects for the Development of Materials Science III. Trans Tech Publications, Limited, 2022.

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50

Nitrides with Nonpolar Surfaces: Growth, Properties, and Devices. Wiley-VCH, 2008.

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