Libros sobre el tema "High energy neutrino conversion"

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1

Halzen, F. Icecube and the discovery of high-energy cosmic neutrinos. Firenze: Leo S. Olschki, 2018.

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2

Shi, Yixiang, Ningsheng Cai, Tianyu Cao y Jiujun Zhang. High-Temperature Electrochemical Energy Conversion and Storage. Boca Raton : CRC Press, Taylor & Francis Group, 2018. | Series: Electrochemical energy store & conversion: CRC Press, 2017. http://dx.doi.org/10.1201/b22506.

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3

Workshop on High Energy Neutrino Astrophysics (1992 Honolulu, Hawaii). Proceedings of the Workshop on High Energy Neutrino Astrophysics, Honolulu, Hawaii, 23-26 March 1992. Editado por Stenger Victor J. 1935-. Singapore: World Scientific, 1992.

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4

1938-, Barger V. y Cline D. 1933-, eds. Neutrino mass and low energy weak interactions, Telemark, 1984. Singapore: World Scientific, 1985.

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5

United States. High Energy Physics Advisory Panel. Subpanel on Accelerator-Based Neutrino Oscillation Experiments. High Energy Physics Advisory Panel, Subpanel on Accelerator-Based Neutrino Oscillation Experiments. Washington, D.C: U.S. Dept. of Energy, Office of Energy Research, Division of High Energy Physics, 1995.

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6

United States. Dept. of Energy. Office of Energy Research, ed. Report of the HEPAP Subpanel on High Energy Gamma Ray and Neutrino Astronomy. Washington, D.C: U.S. Dept. of Energy, Office of Energy Research, 1988.

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7

Gaisser, Thomas K. High energy neutrino absorption and its effect on stars in close X-ray binaries. Greenbelt, Md: National Aeronautics and Space Administration, Goddard Space Flight Center, 1986.

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8

service), SpringerLink (Online, ed. High-efficient low-cost photovoltaics: Recent developments. Berlin: Springer, 2009.

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9

Shin Enerugī Sangyō Gijutsu Sōgō Kaihatsu Kikō (Japan), ed. Baiomasu enerugī kōkōritsu tenkan gijutsu kaihatsu (tenkan yōso gijutsu kaihatsu): Shin enerugī gijitsu kenkyū kaihatsu = High efficiency bioenergy conversion project (development of elemental technologies for bioenergy conversion) : new energy technology development. Kawasaki-shi: Shin Enerugi ̄ Sangyō Gijutsu Sōgō Kaihatsu Kikō, 2008.

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10

Chubb, Donald L. High efficiency thermal to electric energy conversion using selective emitters and spectrally tuned solar cells. [Washington, DC]: National Aeronautics and Space Administration, 1992.

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11

Chubb, Donald L. High efficiency thermal to electric energy conversion using selective emitters and spectrally tuned solar cells. [Washington, DC]: National Aeronautics and Space Administration, 1992.

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12

Y, Suzuki, Nakahata M y Moriyama S, eds. The 2nd International Workshop on Low Energy Solar Neutrino Detection: Tokyo, Japan, 4-5 December 2000. River Edge, N.J: World Scientific, 2001.

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13

Jain, Raj K. Optimal design study of high efficiency indium phosphide space solar cells. [Cleveland, Ohio: Lewis Research Center, 1990.

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14

Jain, Raj K. Optimal design study of high efficiency indium phosphide space solar cells. [Cleveland, Ohio: Lewis Research Center, 1990.

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15

Y, Suzuki, ed. The 2nd International Workshop on Neutrino Oscillations and their Origin: Tokyo, Japan, 6-8 December 2000 : NOON 2000. River Edge, N.J: World Scientific, 2001.

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16

Latin American Symposium on High Energy Physics (6th 2006 Puerto Vallarta, Mexico). Particles and fields: Proceedings of the VI Latin American Symposium on High Energy Physics and the XII Mexican School of Particles and Fields, Puerto Vallarta, Mexico, 1-8 November 2006. Editado por Castilla Valdez Heriberto, Pérez M. A, D'Olivo J. C y Mexican School of Particles and Fields (12th : 2006 : Puerto Vallarta, Mexico). Melville, N.Y: American Institute of Physics, 2007.

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17

Shin Enerugī Sangyō Gijutsu Sōgō Kaihatsu Kikō (Japan). Shin Enerugī Gijutsu Kaihatsubu. Baiomasu enerugī tenkan yōso gijutsu kaihatsu: Shin enerugī kenkyū kaihatsu, baiomasu enerugī tō kōkōritsu tenkan gijutsu kaihatsu = Development of elemental technologies for bioenergy conversion : new energy technology development, development of technology for high-efficiency conversion of biomass and other energy. Kawasaki-shi: Shin Enerugī Sangyō Gijutsu Sōgō Kaihatsu Kikō Shin Enerugī Gijutsu Kaihatsubu, 2010.

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18

J, Greggi, Rai-Choudhury P y United States. National Aeronautics and Space Administration., eds. Development of high-efficiency solar cells on silicon web: Seventh quarterly progress report, October 1 to December 31, 1985. Pittsburgh, Pa: Westinghouse R&D Center, 1986.

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19

J, Greggi, Rai-Choudhury P y United States. National Aeronautics and Space Administration., eds. Development of high-efficiency solar cells on silicon web: Seventh quarterly progress report, October 1 to December 31, 1985. Pittsburgh, Pa: Westinghouse R&D Center, 1986.

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20

Shin Enerugī Sangyō Gijutsu Sōgō Kaihatsu Kikō (Japan), ed. Baiomasu enerugī sendō gijutsu kenkyū kaihatsu: Shin enerugī gijitsu kenkyū kaihatsu, baiomasu enerugī kōkōritsu tenkan gijutsu kaihatsu = Development of preparatory basic bioenergy technologies : new energy technology development project : high efficiency bioenergy conversion project. Kawasaki-shi: Shin Enerugi ̄ Sangyō Gijutsu Sōgō Kaihatsu Kikō, 2007.

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21

Shin Enerugī Sangyō Gijutsu Sōgō Kaihatsu Kikō (Japan), ed. Baiomasu enerugī sendō gijutsu kenkyū kaihatsu: Shin enerugī gijitsu kenkyū kaihatsu, baiomasu enerugī kōkōritsu tenkan gijutsu kaihatsu = Development of preparatory basic bioenergy technologies : new energy technology development project : high efficiency bioenergy conversion project. Kawasaki-shi: Shin Enerugi ̄ Sangyō Gijutsu Sōgō Kaihatsu Kikō, 2007.

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22

International workshop on the physics and experimental techniques of high energy neutrino and VHE and UHE gamma-ray particle astrophysics (1989 Littlerock, Arkansas). Arkansas gamma-ray and neutrino worskhop: Proceedings of the international workshop on the physics and experimental techniques of high energy neutrino and VHE and UHE gamma-ray particle astrophysics, University of Arkansas, Littlerock, 10-13 May, 1989. Amsterdam: North-Holland, 1990.

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23

Husain, Athar, Lin Guey-Lin y Ng Kin-Wang, eds. Astroparticle physics: Proceedings of the first NCTS workshop : Kenting, Taiwan, 6-8 December 2001. River Edge, N.J: World Scientific, 2002.

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24

Bunk, W. Evaluation of COST project 50 'Materials for gas turbines' and COST project 501 'High temperature materials for conventional systems of energy generation and conversion using fossil fuels'. Luxembourg: Commission of the European Communities, 1985.

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25

N, Alexeev E., ed. Proceedings of the International School on Particles & Cosmology, Baksan Valley, Russia, 22-27 April 1993. Singapore: World Scientific, 1994.

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26

Kazeykin, Valeriy y Vladimir Tolstolugov. Theory and practice of implementation of high energy efficient technologies in construction based on Thermaron heat generators. ru: INFRA-M Academic Publishing LLC., 2020. http://dx.doi.org/10.12737/1146805.

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The monograph summarizes the legislative and regulatory framework, as well as shows the theory and practice of energy saving and energy efficiency development in Russia and in the world with the actualization of the use of a breakthrough domestic high-energy-efficient technology based on molecular heat generators Termaron. These devices use the principles of hydrolysis, cavitation, magnetism, resonance and synergy of these processes. The results of research conducted with the participation of specialists from Dubna state University, as well as the practice of using the Termaron ATP, showed that its operation provides a high efficiency in the use of electric energy, equal to 0.98, and the coefficient of conversion of electric energy to heat is from 2.3 to 4.6 (on average, 3.45). At the same time, the cost of heat energy and hot water supply is two to three times lower compared to traditional types of heat generating devices. It is intended for representatives of government authorities, University teachers, scientific and practical specialists in the field of design, construction and operation of energy-efficient residential and commercial real estate, state and municipal employees, managers and employees of development companies, students, masters, postgraduates and other specialists interested in improving their competencies in the field of energy efficiency based on domestic innovative breakthrough technologies in Russia and abroad.
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27

United States. National Aeronautics and Space Administration., ed. Design of a power management and distribution system for a thermionic-diode powered spacecraft. [Washington, D.C: National Aeronautics and Space Administration, 1996.

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28

Prohorov, Viktor. Semiconductor converters of electrical energy. ru: INFRA-M Academic Publishing LLC., 2020. http://dx.doi.org/10.12737/1019082.

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The textbook considers the need, principles and methods of mutual conversion of parameters of electric energy at DC and AC for stationary and Autonomous objects. Features of operation of power electronics elements in specific conditions of their continuous high-frequency switching are described. Low-current control systems that provide the necessary logic for the operation of Executive power devices of converters are considered. A large number of specific practical electrical diagrams of electric energy converters are given. It is intended for students studying in the direction of 13.03.02 "electric power and electrical engineering". It can be useful for graduate students and specialists involved in the development and operation of electric power converters.
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29

A, Matveev V. y Institut i͡a︡dernykh issledovaniĭ (Akademii͡a︡ nauk SSSR), eds. International School on Particles and Cosmology, May 6-12, 1991, Baksan Valley, USSR. Singapore: World Scientific, 1992.

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30

Physics of neutrinos and applications to astrophysics. Berlin: Springer, 2002.

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31

Knez, Zeljko, Rafał M. Łukasik, Rafał M. Łukasik, Manuel Nunes da Ponte y Ana Matias. High Pressure Technologies in Biomass Conversion. Royal Society of Chemistry, The, 2017.

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32

Barger, Vernon. Neutrino Mass and Low Energy Weak Interactions. World Scientific Pub Co Inc, 1986.

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33

Neutrino Physics, Second Edition (Series in High Energy Physics, Cosmology and Gravitation). 2a ed. Taylor & Francis, 2008.

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34

Zhang, Jiujun, Yixiang Shi, Ningsheng Cai y Tianyu Cao. High-Temperature Electrochemical Energy Conversion and Storage: Fundamentals and Applications. Taylor & Francis Group, 2017.

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35

Zhang, Jiujun, Yixiang Shi, Ningsheng Cai y Tianyu Cao. High-Temperature Electrochemical Energy Conversion and Storage: Fundamentals and Applications. Taylor & Francis Group, 2017.

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36

Zhang, Jiujun, Yixiang Shi, Ningsheng Cai y Tianyu Cao. High-Temperature Electrochemical Energy Conversion and Storage: Fundamentals and Applications. Taylor & Francis Group, 2017.

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37

High-Temperature Electrochemical Energy Conversion and Storage: Fundamentals and Applications. Taylor & Francis Group, 2017.

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38

Ultra-High Temperature Thermal Energy Storage, Transfer and Conversion. Elsevier, 2021. http://dx.doi.org/10.1016/c2019-0-00964-8.

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39

Ultra-High Temperature Thermal Energy Storage, Transfer and Conversion. Elsevier Science & Technology, 2020.

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40

Power conversion distribution system using a resonant high-frequency AC link. Madison, Wis: Dept. of Electrical and Computer Engineering, University of Wisconsin - Madison, 1986.

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41

Catalytic Conversion of Energy Resources into High Value-Added Products. MDPI, 2021. http://dx.doi.org/10.3390/books978-3-0365-1075-0.

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42

Zhang, Jiujun, Yixiang Shi, Ningsheng Cai y Tianyu Cao. High-Temperature Electrochemical Energy Conversion and Storage: Fundamentals and Applications. Taylor & Francis Group, 2017.

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43

High-Temperature Electrochemical Energy Conversion and Storage: Fundamentals and Applications. Taylor & Francis Group, 2017.

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44

Zhang, Jiujun, Yixiang Shi, Ningsheng Cai y Tianyu Cao. High-Temperature Electrochemical Energy Conversion and Storage: Fundamentals and Applications. Taylor & Francis Group, 2019.

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45

Zhang, Jiujun, Yixiang Shi, Ningsheng Cai y Tianyu Cao. High-Temperature Electrochemical Energy Conversion and Storage: Fundamentals and Applications. Taylor & Francis Group, 2017.

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46

Li, Gang y Yang Yang. Progress in High-Efficient Solution Process Organic Photovoltaic Devices: Fundamentals, Materials, Devices and Fabrication. Springer Berlin / Heidelberg, 2015.

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47

Li, Gang y Yang Yang. Progress in High-Efficient Solution Process Organic Photovoltaic Devices: Fundamentals, Materials, Devices and Fabrication. Springer, 2015.

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48

Li, Gang y Yang Yang. Progress in High-Efficient Solution Process Organic Photovoltaic Devices: Fundamentals, Materials, Devices and Fabrication. Springer, 2016.

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49

Pérez-Higueras, Pedro y Eduardo F. Fernández. High Concentrator Photovoltaics: Fundamentals, Engineering and Power Plants. Springer, 2015.

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50

Pérez-Higueras, Pedro y Eduardo F. Fernández. High Concentrator Photovoltaics: Fundamentals, Engineering and Power Plants. Springer London, Limited, 2015.

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