Libros sobre el tema "ENERGY MOLECULES"

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1

1950-, Scott P. R., ed. Energy levels in atoms and molecules. Oxford: Oxford University Press, 1994.

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2

Lafferty, Peter. Matter and energy. New York: Macmillan, 1991.

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3

Wong, Wai-Yeung, ed. Organometallics and Related Molecules for Energy Conversion. Berlin, Heidelberg: Springer Berlin Heidelberg, 2015. http://dx.doi.org/10.1007/978-3-662-46054-2.

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4

May, Volkhard. Charge and energy transfer dynamics in molecular systems. 3a ed. Weinheim: Wiley-VCH, 2011.

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5

Oliver, Kühn, ed. Charge and energy transfer dynamics in molecular systems. 2a ed. Weinheim: Wiley-VCH, 2004.

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6

Oliver, Kühn, ed. Charge and energy transfer dynamics in molecular systems. 3a ed. Weinheim: Wiley-VCH, 2011.

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7

Group theory for atoms, molecules, and solids. Englewood Cliffs, N.J: Prentice-Hall International, 1986.

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8

Jacox, Marilyn E. Vibrational and electronic energy levels of polyatomic transient molecules. Woodbury, N.Y: American Chemical Society and the American Institute of Physics for the National Institute of Standards and Technology, 1994.

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9

Roman, Curik, ed. Low-energy electron scattering from molecules, biomolecules, and surfaces. Boca Raton: Taylor & Francis, 2012.

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10

Oliver, Kühn, ed. Charge and energy transfer dynamics in molecular systems: A theoretical introduction. Berlin: Wiley-VCH, 2000.

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11

W, Bauschlicher Charles, Partridge Harry y Research Institute for Advanced Computer Science (U.S.), eds. Theoretical dissociation energies for ionic molecules. Moffett Field, Ca: Research Institute for Advanced Computer Science, NASA Ames Research Center, 1986.

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12

Chen-hua, Chang, McCollom Alex D y United States. National Aeronautics and Space Administration., eds. On the uncertainty in single molecule fluorescent lifetime and energy emission measurements: Technical report 94-03. [Washington, D.C.]: National Aeronautics and Space Administration, 1994.

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13

Roman, Krems, Friedrich Bretislav y Stwalley William C. 1942-, eds. Cold molecules: Theory, experiment, applications. Boca Raton: Taylor & Francis, 2009.

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14

International, SRI y United States. National Aeronautics and Space Administration., eds. Rotational and translational effects in collisions of electronically excited diatomic hydrides. Menlo Park, Calif: Molecular Physics Laboratory, SRI International, 1988.

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15

R, Barker John, ed. Advances in chemical kinetics and dynamics: Vibrational energy transfer involving large and small molecules. Greenwich, Conn: JAI Press, 1995.

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16

Chen, Gang. Nanoscale energy transport and conversion: A parallel treatment of electrons, molecules, phonons, and photons. New York, NY: Oxford, 2004.

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17

Gang, Chen. Nanoscale energy transport and conversion: A parallel treatment of electrons, molecules, phonons, and photons. Oxford: Oxford University Press, 2005.

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18

Advanced biofuels: Using catalytic routes for the conversion of biomass platform molecules. Oakville, ON: Apple Academic Press, 2016.

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19

Gaseous electronics: Tables, atoms, and molecules. Boca Raton: Taylor & Francis, 2011.

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20

V, Ramamurthy y Schanze Kirk S, eds. Photochemistry of organic molecules in isotropic and anisotropic media. New York: Marcel Dekker, 2003.

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21

Kinsella, Michael Francis John. Charge transfer in the coadsorption of potassium and simple molecules on graphite studied by electron energy loss spectroscopy. Birmingham: University of Birmingham, 1997.

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22

Wright, Sarah Margaret Anne. Vibrational energy transfer in polyatomic molecules: Collisions of highly excited pyrazine, toluene and nitrosyl cyanide with helium, argon and nitrogen. Birmingham: University of Birmingham, 2000.

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23

Bates, D. R. Advances in Atomic, Molecular, and Optical Physics, 29. Burlington: Elsevier, 1991.

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24

Joerg, Reuss, ed. Molecular energy transfer. Amsterdam: North-Holland, 1992.

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25

Apollonov, V. V. High-Energy Molecular Lasers. Cham: Springer International Publishing, 2016. http://dx.doi.org/10.1007/978-3-319-33359-5.

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26

Farina, Dave. Everything Is Molecules and Energy. Mango Media, 2020.

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27

Hinze, Jürgen. Energy Storage and Redistribution in Molecules. Springer, 2011.

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28

Energy Storage and Redistribution in Molecules. Springer, 2011.

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29

Wong, Wai-yeung. Organometallics and Related Molecules for Energy Conversion. Springer, 2015.

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30

Organometallics and Related Molecules for Energy Conversion. Springer, 2015.

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31

Medvedev, Emile S. y Vladimir I. Osherov. Radiationless Transitions in Polyatomic Molecules. Brand: Springer, 2012.

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32

Launay, Jean-Pierre y Michel Verdaguer. Electrons in Molecules. Oxford University Press, 2018. http://dx.doi.org/10.1093/oso/9780198814597.001.0001.

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The book treats in a unified way electronic properties of molecules (magnetic, electrical, photophysical), culminating with the mastering of electrons, i.e. molecular electronics and spintronics and molecular machines. Chapter 1 recalls basic concepts. Chapter 2 describes the magnetic properties due to localized electrons. This includes phenomena such as spin cross-over, exchange interaction from dihydrogen to extended molecular magnetic systems, and magnetic anisotropy with single-molecule magnets. Chapter 3 is devoted to the electrical properties due to moving electrons. One considers first electron transfer in discrete molecular systems, in particular in mixed valence compounds. Then, extended molecular solids, in particular molecular conductors, are described by band theory. Special attention is paid to structural distortions (Peierls instability) and interelectronic repulsions in narrow-band systems. Chapter 4 treats photophysical properties, mainly electron transfer in the excited state and its applications to photodiodes, organic light emitting diodes, photovoltaic cells and water photolysis. Energy transfer is also treated. Photomagnetism (how a photonic excitation modifies magnetic properties) is introduced. Finally, Chapter 5 combines the previous knowledge for three advanced subjects: first molecular electronics in its hybrid form (molecules connected to electrodes acting as wires, diodes, memory elements, field-effect transistors) or in the quantum computation approach. Then, molecular spintronics, using, besides the charge, the spin of the electron. Finally the theme of molecular machines is presented, with the problem of the directionality control of their motion.
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33

Snegursky, Alexander V., Jelena Tamuliene, Liudmila G. Romanova y Vasyl S. Vukstich. Amino Acid Molecules Fragmentation by Low-Energy Electrons. Nova Science Pub Inc, 2014.

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34

Vibrational energy transfer involving large and small molecules. Greenwich, Conn: JAI Press, 1995.

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35

May, Volkhard y Oliver K�hn. Charge and Energy Transfer Dynamics in Molecular Systems. Wiley & Sons, Incorporated, John, 2011.

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36

May, Volkhard y Oliver K�hn. Charge and Energy Transfer Dynamics in Molecular Systems. Wiley & Sons, Incorporated, John, 2008.

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37

May, Volkhard y Oliver K�hn. Charge and Energy Transfer Dynamics in Molecular Systems. Wiley & Sons, Limited, John, 2011.

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38

May, Volkhard y Oliver Kühn. Charge and Energy Transfer Dynamics in Molecular Systems. Wiley & Sons, Incorporated, John, 2007.

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39

May, Volkhard y Oliver Kühn. Charge and Energy Transfer Dynamics in Molecular Systems. Wiley & Sons, Incorporated, John, 2023.

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40

May, Volkhard y Oliver Kühn. Charge and Energy Transfer Dynamics in Molecular Systems. Wiley & Sons, Incorporated, John, 2023.

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41

May, Volkhard y Oliver Kühn. Charge and Energy Transfer Dynamics in Molecular Systems. Wiley & Sons, Incorporated, John, 2011.

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42

May, Volkhard y Oliver Kühn. Charge and Energy Transfer Dynamics in Molecular Systems. Wiley & Sons, Incorporated, John, 2023.

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43

May, Volkhard y Oliver Kühn. Charge and Energy Transfer Dynamics in Molecular Systems. Wiley & Sons, Incorporated, John, 2011.

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44

Ariga, Katsuhiko y Elena A. Rozhkova. From Molecules to Materials - Pathways to Artificial Photosynthesis. Springer, 2015.

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45

Eisenberg, Linda, Timothy White, Bob Friedhoffer y Richard Kaufman. Scientific Magic Series: Matter and Energy, Force, Motion and Energy, Molecules and Heat. Independently Published, 2018.

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46

Redox Chemistry - From Molecules to Energy Storage [Working Title]. IntechOpen, 2022. http://dx.doi.org/10.5772/intechopen.98004.

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47

Carsky, Petr y Roman Curik. Low-Energy Electron Scattering from Molecules, Biomolecules and Surfaces. Taylor & Francis Group, 2016.

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48

Carsky, Petr y Roman Curik. Low-Energy Electron Scattering from Molecules Biomolecules and Surfaces. Taylor & Francis Group, 2019.

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49

Carsky, Petr. Low-Energy Electron Scattering from Molecules, Biomolecules and Surfaces. Taylor & Francis Group, 2013.

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50

Carsky, Petr y Roman Curik. Low-Energy Electron Scattering from Molecules, Biomolecules and Surfaces. Taylor & Francis Group, 2016.

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