Mobility in Semiconductors XI. The basic ideas of crystal lattice dynamics, electron zone structure, and transport theory are developed from first principles, and formulae for the macroscopic coefficients are deduced by self-contained mathematical arguments.
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Users without a subscription are not able to see the full content. Biomedical Fluid Dynamics Troy Shinbrot. Electronic Conduction in Metals X. Find Rare Books Book Value. Used — Very Good. This book is a study of the theory of electrical and thermal conduction in metals, semiconductors, and insulators. The basic ideas of crystal lattice dynamics, electron zone structure, and transport theory are developed from first principles, and formulae for the macroscopic coefficients are deduced by self-contained mathematical arguments.
Interpretation in terms of electronic structure, chemical purity, crystal structure, and crystal perfection is emphasized as a tool for further investigation but detailed discussion of individual means or alloys is avoided. Keywords: electrical conduction , thermal conduction , electron zone structure , transport theory , crystal lattice dynamics.
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Oxford Scholarship Online. This book is available as part of Oxford Scholarship Online - view abstracts and keywords at book and chapter level. This study of the theory of electrical and thermal conduction in metals, semiconductors, and insulators is written at a level appropriate to graduate students and research workers and assumes some knowledge of wave mechanics in its reader.
The basic ideas of crystal lattice dynamics, electron zone structure, and transport theory are developed from first principles, and formulae for the macroscopic coefficients are deduced by self-contained mathematical arguments.
Interpretation in terms of electronic structure, chemical purity, crystal structure, and crystal perfection is emphasized as a tool for further investigation but detailed discussion of individual means or alloys is avoided.
Phonons 2. Electrons 3. Phonon-Phonon Interaction 4.
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