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Titlebook: Quantum Mechanics: Genesis and Achievements; Alexander Komech Book 2013 Springer Science+Business Media Dordrecht 2013 Black Body Radiatio

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書(shū)目名稱(chēng)Quantum Mechanics: Genesis and Achievements
編輯Alexander Komech
視頻videohttp://file.papertrans.cn/782/781358/781358.mp4
概述Covers nonrelativisitic and relativistic quantum mechanics.Quantum mechanics concepts are also made accessible to non-physicists.Applications of quantum mechanics to basic quantum phenomena.Includes d
圖書(shū)封面Titlebook: Quantum Mechanics: Genesis and Achievements;  Alexander Komech Book 2013 Springer Science+Business Media Dordrecht 2013 Black Body Radiatio
描述The focus of the present work is nonrelativistic and relativistic quantum mechanics with standard applications to the hydrogen atom. The author has aimed at presenting quantum mechanics in a comprehensive yet accessible for mathematicians and other non-physicists. The genesis of quantum mechanics, its applications to basic quantum phenomena, and detailed explanations of the corresponding mathematical methods are presented. The exposition is formalized (whenever possible) on the basis of the coupled Schroedinger, Dirac and Maxwell equations. Aimed at upper graduate and graduate students in mathematical and physical science studies.
出版日期Book 2013
關(guān)鍵詞Black Body Radiation; Classical Electodynamics; Diffraction of Electrons; Lecture Notes Quantum Mechani
版次1
doihttps://doi.org/10.1007/978-94-007-5542-0
isbn_softcover978-94-007-9302-6
isbn_ebook978-94-007-5542-0
copyrightSpringer Science+Business Media Dordrecht 2013
The information of publication is updating

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,Schr?dinger’s Wave Mechanics, regards the Hamiltonian as an operator in a?Hilbert space, and the stationary energies, as the corresponding eigenvalues..The Schr?dinger wave equation alone cannot be justified experimentally. One should complete the equation with the corresponding quantum observables: energy, momentum, angular mo
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Lagrangian Formalism,nserved quantities suggested by the Noether’s theory of invariants..On the other hand, the charge and current densities in classical electrodynamics correspond to derivatives of the Lagrangian density with respect to the Maxwell potentials. Respectively, to identify correctly the quantum charge and
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Scattering of Light and Particles,s are nonlinear, and so the calculations can be done only by perturbation procedure neglecting the self action; i.e., in the Born approximation. This approximation leads to some inconsistency breaking the charge conservation law, which should be fixed in a true nonlinear approach..The corresponding
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Electron Spin and Pauli Equation,tical problems: the anomalous Zeeman splitting of spectra, the Einstein–de?Haas and Stern–Gerlach experiments, as well as by some open questions in the Bohr theory of periodic table..The electron spin was introduced in 1925 by Goudsmit and Uhlenbeck to explain the double splitting of spectral lines
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