Introduction to Quantum Mechanics 2: Wave-Corpuscle, Quantization and Schrodinger's Equation / Edition 1

Introduction to Quantum Mechanics 2: Wave-Corpuscle, Quantization and Schrodinger's Equation / Edition 1

by Ibrahima Sakho
ISBN-10:
1786305011
ISBN-13:
9781786305015
Pub. Date:
02/05/2020
Publisher:
Wiley
ISBN-10:
1786305011
ISBN-13:
9781786305015
Pub. Date:
02/05/2020
Publisher:
Wiley
Introduction to Quantum Mechanics 2: Wave-Corpuscle, Quantization and Schrodinger's Equation / Edition 1

Introduction to Quantum Mechanics 2: Wave-Corpuscle, Quantization and Schrodinger's Equation / Edition 1

by Ibrahima Sakho
$177.95
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$177.95 
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Overview

Quantum mechanics is the foundation of modern technology, due to its innumerable applications in physics, chemistry and even biology.

This second volume studies Schrödinger s equation and its applications in the study of wells, steps and potential barriers. It examines the properties of orthonormal bases in the space of square-summable wave functions and Dirac notations in the space of states.

This book has a special focus on the notions of the linear operators, the Hermitian operators, observables, Hermitian conjugation, commutators and the representation of kets, bras and operators in the space of states. The eigenvalue equation, the characteristic equation and the evolution equation of the mean value of an observable are introduced. The book goes on to investigate the study of conservative systems through the time evolution operator and Ehrenfest s theorem.

Finally, this second volume is completed by the introduction of the notions of quantum wire, quantum wells of semiconductor materials and quantum dots in the appendices.


Product Details

ISBN-13: 9781786305015
Publisher: Wiley
Publication date: 02/05/2020
Pages: 304
Product dimensions: 6.45(w) x 9.37(h) x 0.94(d)

About the Author

Ibrahima Sakho is a Doctor of Physical Science, and works at the science and technology training and research unit at the University of Thiès (Senegal). On-site, he teaches quantum mechanics, atomic and nuclear physics, radiation–matter interaction, and environmental chemistry.

Table of Contents

1. Schrödinger s Equation and its Applications.

2. Hermitian Operator, Dirac s Notations.

3. Eigenvalues and Eigenvectors of an Observable.

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