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Computational Quantum Mechanics
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SpringerLink (Online service)
Computational Quantum Mechanics
Record Type:
Language materials, printed : Monograph/item
Title/Author:
Computational Quantum Mechanics/ by Joshua Izaac, Jingbo Wang.
Author:
Izaac, Joshua.
other author:
Wang, Jingbo.
Description:
XIII, 494 p. 1 illus.online resource. :
Contained By:
Springer Nature eBook
Subject:
Quantum physics. -
Online resource:
https://doi.org/10.1007/978-3-319-99930-2
ISBN:
9783319999302
Computational Quantum Mechanics
Izaac, Joshua.
Computational Quantum Mechanics
[electronic resource] /by Joshua Izaac, Jingbo Wang. - 1st ed. 2018. - XIII, 494 p. 1 illus.online resource. - Undergraduate Lecture Notes in Physics,2192-4791. - Undergraduate Lecture Notes in Physics,.
Part I Scientific programming: an introduction for physicists: Numbers and precision -- Fortran -- Python -- Part II Numerical methods for quantum physics: Finding roots -- Differentiation and initial value problems -- Numerical integration -- The eigenvalue problem -- The Fourier transform -- PART III Solving the Schrödinger equation: One dimension -- Higher dimensions and basic techniques -- Time propagation -- Central potentials -- Multi-electron systems -- Exercises.
Quantum mechanics undergraduate courses mostly focus on systems with known analytical solutions; the finite well, simple Harmonic, and spherical potentials. However, most problems in quantum mechanics cannot be solved analytically. This textbook introduces the numerical techniques required to tackle problems in quantum mechanics, providing numerous examples en route. No programming knowledge is required – an introduction to both Fortran and Python is included, with code examples throughout. With a hands-on approach, numerical techniques covered in this book include differentiation and integration, ordinary and differential equations, linear algebra, and the Fourier transform. By completion of this book, the reader will be armed to solve the Schrödinger equation for arbitrarily complex potentials, and for single and multi-electron systems.
ISBN: 9783319999302
Standard No.: 10.1007/978-3-319-99930-2doiSubjects--Topical Terms:
1179090
Quantum physics.
LC Class. No.: QC173.96-174.52
Dewey Class. No.: 530.12
Computational Quantum Mechanics
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Quantum mechanics undergraduate courses mostly focus on systems with known analytical solutions; the finite well, simple Harmonic, and spherical potentials. However, most problems in quantum mechanics cannot be solved analytically. This textbook introduces the numerical techniques required to tackle problems in quantum mechanics, providing numerous examples en route. No programming knowledge is required – an introduction to both Fortran and Python is included, with code examples throughout. With a hands-on approach, numerical techniques covered in this book include differentiation and integration, ordinary and differential equations, linear algebra, and the Fourier transform. By completion of this book, the reader will be armed to solve the Schrödinger equation for arbitrarily complex potentials, and for single and multi-electron systems.
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