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Quantum Physics of Atoms, Molecules, Solids, Nuclei and Particules - Solutions - R. Eisberg - 2nd Ed.32s.pdf

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Quantum Physics of Atoms, Molecules, Solids, Nuclei and Particules - Solutions - R. Eisberg - 2nd Ed.32s.pdf

文档介绍

文档介绍:量子物理習題 CH00 量子物理習題 CH00
Quantum Physics(量子物理)習題
Robert Eisberg(Second edition)
~*~*~*~*~*~*~*~*~*~*~*~*~*~*~*~*~*~*~*~*~*~*~*~*~*~*~*~*~*~*~*~*~*~*~*~*~*~*~
Solutions Supplement to pany
Quantum Physics of Atoms, molecules,solids,
nuclei, and particles
Quantum Physics of Atoms, molecules,solids, Second Edition
nuclei, and particles Robert Eisberg
Prepared by Edward Derringh
Second Edition

Robert Eisberg


CH01:Thermal radiation and Planck’s postulate
CH02:Photons-particlelike properties of radiation
CH03:De Broglie’s postulate-wavelike properties of particles
CH04:Bohr’s model of the atom
CH05:Schroedinger’s theory of quantum mechanics
CH06:Solutions of time-independent Schroedinger equations
CH07:One-electron atoms
CH08:ic dipole moments, spin and transition rates
CH09:Multielectron atoms – ground states and x-ray excitations
CH10:Multielectron atoms-optical exciations
CH11:Quantum statistics
CH12:Molecules
CH13:Solids-conductors and semiconductors
CH14:Solids-superconductors and ic properties
CH15:Nuclear models
CH16:Nuclear decay and nuclear reactions
CH17:Introduction to elementary particles
CH18:More elementary particles






CH00-page1 CH00-page2
量子物理習題 CH01 量子物理習題 CH01
Quantum Physics(量子物理)習題
νν2211
Robert Eisberg(Second edition) ANS: PAR==()ν dνρννρνν Ac () d =∆ Ac ( )
∫∫TTTav44
CH 01:Thermal radiation and Planck’s postulate 11νν
~*~*~*~*~*~*~*~*~*~*~*~*~*~*~*~*~*~*~*~*~*~*~*~*~*~*~*~*~*~*~*~*~*~*~*~*~*~*~ c × 108
ν== = × 1014 Hz
0 1 −7
1-1、At what wavelength does a cavity at 6000 K radiated most per unit wavelength? λ1 × 10
0 8
( 6000 K 時,一空腔輻射體的最強波長為何?) c × 10 14
ν 2 ==−7 = × 10 Hz
ANS: λ2 × 10
~*~*~*~*~*~*~*~*~*~*~*~*~*~*~*~*~*~*~*~*~*~*~*~*~*~*~*~*~*~*~*~*~*~*~*~*~*~*~ 1
Therefore, ν=+=×(νν) 1014 Hz
4 av 2 12
1-2、Show that the proportionality constant in (1-4) is . That is, show that the relation b