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1

Gottlieb, Irving M. Power control with solid state devices. Reston, Va: Reston Pub. Co., 1985.

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2

Power control with solid-state devices. Blue Ridge Summit, PA: TAB Professional and Reference Books, 1987.

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3

Bhardwaj, Rajni Miglani. Control and Prediction of Solid-State of Pharmaceuticals. Cham: Springer International Publishing, 2016. http://dx.doi.org/10.1007/978-3-319-27555-0.

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4

Maloney, Timothy J. Industrial solid-state electronics: Devices and systems. 2nd ed. London: Prentice-Hall International, 1986.

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5

Industrial solid-state electronics: Devices and systems. 2nd ed. Englewood Cliffs, N.J: Prentice-Hall, 1986.

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6

Solid state electronic controls for air conditioning and refrigeration. Englewood Cliffs, N.J: Prentice Hall, 1989.

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7

Solid state AC motor controls: Selection and application. New York: Dekker, 1987.

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8

Ahuja, Samir. A control system study of a solid-state energy recovery scheme. Ottawa: National Library of Canada, 1993.

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9

Measurement and control of charged particle beams. Berlin: Springer, 2002.

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10

Aglow, Stanley H. Electronic HVAC controls simplified. Troy, MI: Business News Pub. Co., 1988.

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11

Bahl, I. J. Control components using Si, GaAs, and GaN technologies / Inder J. Bahl. Boston: Artech House, 2014.

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12

Howe, Russel F. Surface Science: Principles and Applications. Berlin, Heidelberg: Springer Berlin Heidelberg, 1993.

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13

Commerce, United States Congress House Committee on Energy and. State control of management of municipal solid waste: Report together with dissenting and separate views (to accompany H.R. 4683) (including cost estimate of the Congressional Budget Office). [Washington, D.C.?: U.S. G.P.O., 1994.

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14

United States. Congress. Senate. Committee on Environment and Public Works. Subcommittee on Superfund, Recycling, and Solid Waste Management. Flow Control Act of 1994: Hearing before the Subcommittee on Superfund, Recycling, and Solid Waste Management of the Committee on Environment and Public Works, United States Senate, One Hundred Third Congress, second session, on S. 2227, a bill to amend the Solid Waste Disposal Act to provide congressional authorization of state control over transportation of municipal solid waste, and for other purposes, July 13, 1994. Washington: U.S. G.P.O., 1994.

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15

United States. Congress. Senate. Committee on Environment and Public Works. Subcommittee on Superfund, Recycling, and Solid Waste Management. Flow Control Act of 1994: Hearing before the Subcommittee on Superfund, Recycling, and Solid Waste Management of the Committee on Environment and Public Works, United States Senate, One Hundred Third Congress, second session, on S. 2227, a bill to amend the Solid Waste Disposal Act to provide congressional authorization of state control over transportation of municipal solid waste, and for other purposes, July 13, 1994. Washington: U.S. G.P.O., 1994.

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16

United States. Congress. Senate. Committee on Environment and Public Works. Interstate waste and flow control: Hearing before the Committee on Environment and Public Works, United States Senate, One Hundred Seventh Congress, second session, on S. 1194, a bill to impose certain limitations on the receipt of out-of-state municipal solid waste, to authorize state and local controls over the flow of municipal solid waste, [and] S. 2034, a bill to amend the Solid Waste Disposal Act to improve certain limits on the receipt of out-of-state municipal solid waste, March 20, 2002. Washington: U.S. G.P.O., 2004.

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17

Committee, New Jersey Legislature General Assembly Environment and Solid Waste. Committee meeting of Assembly Environment and Solid Waste Committee: Assembly bill no. 3301: the Global Warming Response Act : Committee Room 9, State House Annex, Trenton, New Jersey, February 26, 2007, 2:00 p.m. Trenton, NJ: New Jersey State Legislature, Assembly Environment and Solid Waste Committee, 2007.

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18

IEEE/SEMI Advanced Semiconductor Manufacturing Conference and Workshop (6th 1995 Cambridge, Mass.). IEEE/SEMI 1995 Advanced Semiconductor Manufacturing Conference and Workshop: Theme, "Semiconductor manufacturing : economic solutions for the 21st century" : ASMC 95 proceedings, November 13-15, 1995, Cambridge, Massachusetts. New York: Institute of Electrical and Electronics Engineers, 1995.

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19

GOVERNMENT, US. The Solid Waste Disposal Act: As amended by the Hazardous and Solid Waste Amendments of 1984 (Public Law 98-616); the Safe Drinking Water Act Amendments of 1986 (Public Law 99-339); and the Superfund Amendments and Reauthorization Act of 1986 (Public Law 99-499). Washington: U.S. G.P.O., 1987.

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20

US GOVERNMENT. The Solid Waste Disposal Act: As amended by the Hazardous and Solid Waste Amendments of 1984 (Public Law 98-616), the Safe Drinking Water Act Amendments of 1986 (Public Law 99-339), and the Superfund Amendments and Reauthorization Act of 1986 (Public Law 99-499). Washington: U.S. G.P.O., 1987.

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21

US GOVERNMENT. The Solid Waste Disposal Act: As amended by the Hazardous and Solid Waste Amendments of 1984 (Public Law 98-616); the Safe Drinking Water Act Amendments of 1986 (Public Law 99-339); and the Superfund Amendments and Reauthorization Act of 1986 (Public Law 99-499). Washington: U.S. G.P.O., 1987.

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22

Pavlov, Sergey. Methods of catastrophe theory in the phenomenology of phase transitions. ru: INFRA-M Academic Publishing LLC., 2020. http://dx.doi.org/10.12737/1004276.

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The monograph is devoted to describing the methods of catastrophe theory and building on the basis of these methods, phenomenological models of phase transitions in solids. Methods of constructing structurally stable normal forms of functions, including functions that are imposed on the symmetry conditions. The classification of phenomenological models of phase transitions for two interacting one-component order parameter, two-component and three-component order parameters the number of control parameters varied in the experiment. Theoretical dependence of the anomalies of the physical properties of the models are compared with experimental data in ferroelectrics, magnetic materials, solid solutions of rare earth metals, multiferroics and other solids that are experiencing phase transitions. For professionals in the field of solid state physics and phase transitions.
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23

Maloney, Timothy J. Industrial Solid-State Electronics: Devices and Systems. Prentice Hall, 1985.

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24

Maloney, Timothy J. Industrial Solid-State Electronics: Devices and Systems. 2nd ed. Prentice Hall, 1985.

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25

Ultra Clean Processing of Silicon Surfaces (Solid State Phenomena). Scitec Pubns, 2005.

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26

Antoni, Gajewski, and Politechnika Krakowska. Institute of Physics., eds. Selected problems of solid-state physics. Cracow: Cracow University of Technology, Institute of Physics, 1995.

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27

Bhardwaj, Rajni Miglani. Control and Prediction of Solid-State of Pharmaceuticals: Experimental and Computational Approaches. Springer, 2016.

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28

Bhardwaj, Rajni Miglani. Control and Prediction of Solid-State of Pharmaceuticals: Experimental and Computational Approaches. Springer, 2018.

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29

S, Luck William, DeYoung Russell J, and Langley Research Center, eds. Temperature control of avalanche photodiode using thermoelectric cooler. Hampton, Va: National Aeronautics and Space Administration, Langley Research Center, 1999.

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30

S, Andreeva L., Zakharova N. D, Melʹnikova E. L, Belaruski navukova-dasledchy instytut navukova-tekhnichnaĭ infarmatsyi i tėkhnika-ėkanamichnykh dasledavanni͡a︡ŭ., and Institut fiziki tverdogo tela i poluprovodnikov (Akadėmii͡a︡ navuk Belaruskaĭ SSR), eds. Perspektivnye materialy tverdotelʹnoĭ ėlektroniki.: Tezisy nauchno-tekhnicheskoĭ konferent͡s︡ii, Minsk, 23-24 okti͡a︡bri͡a︡ 1990 g. Minsk: Belorusskiĭ nauchno-issl. in-t nauchno-tekhn. informat͡s︡ii i tekhniko-ėkonomicheskikh issl. Gosėkonomplana BSSR, 1990.

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31

Minty, M. G., F. Zimmermann, and Michiko G. Minty. Measurement and Control of Charged Particle Beams. Springer, 2003.

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32

Greve, Kristiaan De. Towards Solid-State Quantum Repeaters: Ultrafast, Coherent Optical Control and Spin-Photon Entanglement in Charged InAs Quantum Dots. Springer, 2016.

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33

United States. National Aeronautics and Space Administration., ed. Analysis of measurements for solid state laser romote lidar system: Contract period June 1, 1993 - September 31, 1994. [Washington, DC: National Aeronautics and Space Administration, 1995.

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34

United States. National Aeronautics and Space Administration., ed. Analysis of measurements for solid state laser romote lidar system: Contract period June 1, 1993 - September 31, 1994. [Washington, DC: National Aeronautics and Space Administration, 1995.

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35

Gyugyi, Laszlo. IEEE Std Press Emerging Practices in Technology: Solid State Synchronous Voltage Sources for Dynamic Compensation and Real-Time Control of Ac Transm. Institute of Electrical & Electronics Enginee, 1994.

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36

Lerch, Reinhard. Elektrische Messtechnik: Analoge, digitale und computergestützte Verfahren (Springer-Lehrbuch). 2nd ed. Springer, 2004.

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37

Lerch, Reinhard. Elektrische Messtechnik: Analoge, digitale und computergestützte Verfahren (Springer-Lehrbuch). 4th ed. Springer, 2007.

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38

Lerch, Reinhard. Elektrische Messtechnik: Analoge, digitale und computergestützte Verfahren (Springer-Lehrbuch). 3rd ed. Springer, 2006.

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39

Institute Of Electrical and Electronics Engineers and IEEE Electron Devices Society. 1995 Advanced Semiconductor Manufacturing Conference and Workshop (IEEE Conference Publications. Ch Series). Institute of Electrical & Electronics Enginee, 1995.

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40

IEEE/SEMI 1995 Advanced Semiconductor Manufacturing Conference and Workshop: Theme, "Semiconductor manufacturing : Economic solutions for the 21st century" ... 13-15, 1995, Cambridge, Massachusetts. IEEE Service Center [distributor], 1995.

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41

Pomiary wielkości przepływowo-cieplnych w budownictwie maszyn: Konferencja Naukowa, Janowice, 7-9 października 1996 r. Kraków: Politechnika Krakowska, 1996.

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42

Władysław, Hejmo, and Politechnika Krakowska. Wydział Inżynierii Elektrycznej., eds. Wybrane problemy elektrotechniki i automatyki. Kraków: Politechnika Krakowska im. Tadeusza Kościuszki, Wydz. Inżynierii Elektrycznej, 1995.

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43

Andrzej, Grzyb, and Politechnika Krakowska. Instytut Pojazdów Szynowych., eds. Dynamika pojazdów szynowych i optymalizacja ich podukładów: Wydanie jubileuszowe. Kraków: Politechnika Krakowska, Instytut Pojazdów Szynowych, 1996.

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44

Jan, Bochenek, and Politechnika Krakowska Instytut Matematyki, eds. Selected problems of mathematics. Cracow: Politechnika Krakowska, 1995.

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45

Eugeniusz, Kulwicki, and Politechnika Krakowska. Institute of Economics, Sociology and Philosophy., eds. Selected problems of economics, sociology and philosophy. Cracow: Politechnika Krakowska, 1995.

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46

Marek, Stanuszek, Jonak Marcin, Politechnika Krakowska Computer Center, and Politechnika Krakowska. Division of Descriptive Geometry and Engineering Graphics., eds. Selected problems of computer methods and geometry in engineering. Cracow: Politechnika Krakowska, 1995.

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47

Bolesław, Tabiś, ed. Wybrane prace z zakresu inżynierii chemicznej i procesowej. Kraków: Politechnika Krakowska im. Tadeusza Kościuszki, Wydz. Inżynierii i Technologii Chemicznej, 1995.

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48

Selected problems of structural mechanics, machine design, production engineering, motor and railway vehicles, organic chemistry: Co-operation between Cracow University of Technology and Technical University of Budapest. Cracow: Politechnika Krakowska, 1995.

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49

Glazov, M. M. Electron & Nuclear Spin Dynamics in Semiconductor Nanostructures. Oxford University Press, 2018. http://dx.doi.org/10.1093/oso/9780198807308.001.0001.

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In recent years, the physics community has experienced a revival of interest in spin effects in solid state systems. On one hand, solid state systems, particularly semicon- ductors and semiconductor nanosystems, allow one to perform benchtop studies of quantum and relativistic phenomena. On the other hand, interest is supported by the prospects of realizing spin-based electronics where the electron or nuclear spins can play a role of quantum or classical information carriers. This book aims at rather detailed presentation of multifaceted physics of interacting electron and nuclear spins in semiconductors and, particularly, in semiconductor-based low-dimensional structures. The hyperfine interaction of the charge carrier and nuclear spins increases in nanosystems compared with bulk materials due to localization of electrons and holes and results in the spin exchange between these two systems. It gives rise to beautiful and complex physics occurring in the manybody and nonlinear system of electrons and nuclei in semiconductor nanosystems. As a result, an understanding of the intertwined spin systems of electrons and nuclei is crucial for in-depth studying and control of spin phenomena in semiconductors. The book addresses a number of the most prominent effects taking place in semiconductor nanosystems including hyperfine interaction, nuclear magnetic resonance, dynamical nuclear polarization, spin-Faraday and -Kerr effects, processes of electron spin decoherence and relaxation, effects of electron spin precession mode-locking and frequency focusing, as well as fluctuations of electron and nuclear spins.
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50

Sabharwal, Nikant, Parthiban Arumugam, and Andrew Kelion. The gamma camera. Oxford University Press, 2017. http://dx.doi.org/10.1093/med/9780198759942.003.0003.

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Nuclear cardiology imaging is traditionally performed on an Anger gamma camera. Its key component is a large, flat, circular or rectangular sodium iodide crystal, activated by non-radioactive thallium (NaI(Tl)). The side of the crystal facing the patient is covered with a lead collimator, while the side away from the patient is viewed by an array of photomultiplier tubes (PMTs). This chapter provides detail on the gamma camera, including information on crystals and collimators, PMTs, and electronics. Important measures of gamma camera performance parameters and quality control are covered in detail, and a section on dedicated solid-state cardiac gamma cameras is included.
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