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Livros sobre o tema "Inelastic dynamics"

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1

W, Beijerinck Herman C., e Verhaar B. J, eds. Dynamics of inelastic collisions of electronically excited atoms. [Amsterdam]: North-Holland, 1990.

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2

Mróz, Zenon. Inelastic Behaviour of Structures under Variable Loads. Dordrecht: Springer Netherlands, 1995.

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3

1948-, Weichert Dieter, Maier Giulio e International Centre for Mechanical Sciences., eds. Inelastic behaviour of structures under variable repeated loads: Direct analysis methods. Wien: Springer, 2002.

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4

International Symposium on Multiparticle Dynamics (26th 1996 Faro, Portugal). Proceedings of the XXVI International Symposium on Multiparticle Dynamics, Faro, Portugal, 1-5 September 1996. Singapore: World Scientific, 1997.

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5

International Symposium on Multiparticle Dynamics (24th 1994 Salerno, Italy). Proceedings of the XXIV International Symposium on Multiparticle Dynamics, Vietri sul Mare, Salerno, Italy, 12-19 September 1994. Singapore: World Scientific, 1995.

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6

Shi, Chenyang. Local structure and lattice dynamics study of low dimensional materials using atomic pair distribution function and high energy resolution inelastic x-ray scattering. [New York, N.Y.?]: [publisher not identified], 2015.

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7

Workshop on Inelastic and Quasielastic Neutron Scattering in Biology (1996 Institut Laue-Langevin). Biological macromolecular dynamics: Proceedings of a Workshop on Inelastic and Quasielastic Neutron Scattering in Biology, Institut Laue-Langevin, Grenoble, France, 14-15 October 1996. Editado por Cusack Stephen. Schenectady, NY, USA: Adenine Press, 1997.

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8

Associates, Key, ed. FMA-3D theoretical manual: A program for simulating the large deformation, elastic and inelastic, transient dynamic response of three-dimensional solids and structures : version 7.43, March 26, 1994. Albuquerque, N.M: Key Associates, 1994.

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9

Schu¨lke, Winfried. Electron Dynamics by Inelastic X-ray Scattering. Oxford University Press, Incorporated, 2007.

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10

Dorner, B. Coherent Inelastic Neutron Scattering in Lattice Dynamics. Springer, 2006.

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11

Dorner, B. Coherent Inelastic Neutron Scattering in Lattice Dynamics. Springer, 2013.

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12

Electron dynamics by inelastic X-ray scattering. Oxford: Oxford University Press, 2007.

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13

Bathe, Klaus-Jürgen, e M. Kojic. Inelastic Analysis of Solids and Structures. Springer London, Limited, 2006.

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14

Bathe, Klaus-Jurgen, e M. Kojic. Inelastic Analysis of Solids and Structures. Springer, 2010.

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15

(Editor), Dieter Weichert, e Giulio Maier (Editor), eds. Inelastic Behavior of Structures Under Varied Repeated Losses. Springer, 2002.

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16

Cunsolo, Alessandro. Thz Dynamics of Liquids Probed by Inelastic X-Ray Scattering. World Scientific Publishing Co Pte Ltd, 2020.

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17

Weichert, Dieter, e Giulio Maier. Inelastic Behaviour of Structures under Variable Repeated Loads: Direct Analysis Methods. Springer London, Limited, 2014.

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18

Schuelke, Winfried. Electron Dynamics by Inelastic X-Ray Scattering (Oxford Series on Synchrotron Radiation). Oxford University Press, USA, 2007.

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19

Weichert, Dieter, e Giulio Maier. Inelastic Analysis of Structures under Variable Loads: Theory and Engineering Applications. Springer, 2012.

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20

Schuelke, Winfried. Electron Dynamics by Inelastic X-Ray Scattering. Oxford Series on Synchrotron Radiation, Volume 7. Oxford University Press, 2007.

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21

Templeton, Elizabeth Land. Effects of inelastic off-fault deformation on the dynamics of earthquake rupture and branch fault activation. 2009.

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22

Gans, Barbara Irma. The structure and dynamics of Cu₃Au(001) studied by elastic and inelastic helium atom scattering. 1990.

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23

(Editor), Dieter Weichert, e Giulio Maier (Editor), eds. Inelastic Analysis of Structures under Variable Loads: Theory and Engineering Applications (Solid Mechanics and Its Applications). Springer, 2001.

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24

J. Dias De Deus (Editor), P. Sa (Editor), M. Pimenta (Editor), S. Ramos (Editor) e J. Seixas (Editor), eds. Multiparticle Dynamics: Proceedings of the Xxvi International Symposium, Faro, Portugal 1-5 Septerber 1996. World Scientific Publishing Company, 1997.

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25

(Editor), A. Giovannini, S. Lupia (Editor) e R. Ugoccioni (Editor), eds. Proceedings of the Xxiv International Symposium on Multiparticle Dynamics: Vietri Sul Mare, Salerno, Italy 12-19 September 1994. World Scientific Pub Co Inc, 1995.

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26

Altenbach, Holm, e Michael Brünig. Inelastic Behavior of Materials and Structures under Monotonic and Cyclic Loading. Springer International Publishing AG, 2015.

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27

Altenbach, Holm, e Michael Brünig. Inelastic Behavior of Materials and Structures under Monotonic and Cyclic Loading. Springer, 2015.

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28

Altenbach, Holm, e Michael Brünig. Inelastic Behavior of Materials and Structures Under Monotonic and Cyclic Loading. Springer, 2016.

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29

Boothroyd, Andrew T. Principles of Neutron Scattering from Condensed Matter. Oxford University Press, 2020. http://dx.doi.org/10.1093/oso/9780198862314.001.0001.

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The book contains a comprehensive account of the theory and application of neutron scattering for the study of the structure and dynamics of condensed matter. All the principal experimental techniques available at national and international neutron scattering facilities are covered. The formal theory is presented, and used to show how neutron scattering measurements give direct access to a variety of correlation and response functions which characterize the equilibrium properties of bulk matter. The determination of atomic arrangements and magnetic structures by neutron diffraction and neutron optical methods is described, including single-crystal and powder diffraction, diffuse scattering from disordered structures, total scattering, small-angle scattering, reflectometry, and imaging. The principles behind the main neutron spectroscopic techniques are explained, including continuous and time-of-flight inelastic scattering, quasielastic scattering, spin-echo spectroscopy, and Compton scattering. The scattering cross-sections for atomic vibrations in solids, diffusive motion in atomic and molecular fluids, and single-atom and cooperative magnetic excitations are calculated. A detailed account of neutron polarization analysis is given, together with examples of how polarized neutrons can be exploited to obtain information about structural and magnetic correlations which cannot be obtained by other methods. Alongside the theoretical aspects, the book also describes the essential practical information needed to perform experiments and to analyse and interpret the data. Exercises are included at the end of each chapter to consolidate and enhance understanding of the material, and a summary of relevant results from mathematics, quantum mechanics, and linear response theory, is given in the appendices.
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