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Fourier Analysis, Self-Adjointness

Fourier Analysis, Self-Adjointness, Volume 2 (Methods of Modern Mathematical Physics)

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  • 361pages
  • 13 heures de lecture

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This volume will serve several purposes: to provide an introduction for graduate students not previously acquainted with the material, to serve as a reference for mathematical physicists already working in the field, and to provide an introduction to various advanced topics which are difficult to understand in the literature. Not all the techniques and application are treated in the same depth. In general, we give a very thorough discussion of the mathematical techniques and applications in quatum mechanics, but provide only an introduction to the problems arising in quantum field theory, classical mechanics, and partial differential equations. Finally, some of the material developed in this volume will not find applications until Volume III. For all these reasons, this volume contains a great variety of subject matter. To help the reader select which material is important for him, we have provided a "Reader's Guide" at the end of each chapter.

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Fourier Analysis, Self-Adjointness, Michael Reed, Lieutenant Colonel Simon Barry

Langue
Année de publication
1975
Reliure
(rigide)
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Titre
Fourier Analysis, Self-Adjointness
Sous-titre
Fourier Analysis, Self-Adjointness, Volume 2 (Methods of Modern Mathematical Physics)
Langue
Anglais
Publié
1975
Format
rigide
Pages
361
ISBN10
0125850026
ISBN13
9780125850025
Séries
Description
This volume will serve several purposes: to provide an introduction for graduate students not previously acquainted with the material, to serve as a reference for mathematical physicists already working in the field, and to provide an introduction to various advanced topics which are difficult to understand in the literature. Not all the techniques and application are treated in the same depth. In general, we give a very thorough discussion of the mathematical techniques and applications in quatum mechanics, but provide only an introduction to the problems arising in quantum field theory, classical mechanics, and partial differential equations. Finally, some of the material developed in this volume will not find applications until Volume III. For all these reasons, this volume contains a great variety of subject matter. To help the reader select which material is important for him, we have provided a "Reader's Guide" at the end of each chapter.