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Introductory solid state physics with MATLAB applications
Record Type:
Language materials, printed : Monograph/item
Title/Author:
Introductory solid state physics with MATLAB applications/ Javier E. Hasbun, Trinanjan Datta.
Author:
Hasbun, Javier Ernesto.
other author:
Datta, Trinanjan.
Published:
Boca Raton, FL :CRC Press, : c2020.,
Description:
1 online resource (571 p.)
Subject:
Solid state physics. -
Online resource:
https://www.taylorfrancis.com/books/9780429086601
ISBN:
9780429086601
Introductory solid state physics with MATLAB applications
Hasbun, Javier Ernesto.
Introductory solid state physics with MATLAB applications
[electronic resource] /Javier E. Hasbun, Trinanjan Datta. - Boca Raton, FL :CRC Press,c2020. - 1 online resource (571 p.)
Includes bibliographical references and index.
Solid state physics, the study and prediction of the fundamental physical properties of materials, forms the backbone of modern materials science and has many technological applications. The unique feature of this text is the MATLAB-based computational approach with several numerical techniques and simulation methods included. This is highly effective in addressing the need for visualization and a direct hands-on approach in learning the theoretical concepts of solid state physics. The code is freely available to all textbook users. Additional Features: Uses the pedagogical tools of computational physicsthat have become important in enhancing physics teaching of advanced subjects such as solid state physics Adds visualization and simulation to the subject in a way that enables students to participate actively in a hand-on approach Covers the basic concepts of solid state physics and provides students with a deeper understanding of the subject matter Provides unique example exercises throughout the text Obtains mathematical analytical solutions Carries out illustrationsof important formulae results using programming scripts that students can run on their own and reproduce graphs and/or simulations Helps students visualize solid state processes and apply certain numerical techniques using MATLAB, making the process of learning solid state physics much more effective Reinforces the examples discussed within the chapters through the use of end-of-chapter exercises Includes simple analytical and numerical examples to more challenging ones, as well as computational problems with the opportunity to run codes, create new ones, or modify existing ones to solve problems or reproduce certain results.
ISBN: 9780429086601Subjects--Uniform Titles:
MATLAB.
Subjects--Topical Terms:
641431
Solid state physics.
LC Class. No.: QC176
Dewey Class. No.: 530.41
Introductory solid state physics with MATLAB applications
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Solid state physics, the study and prediction of the fundamental physical properties of materials, forms the backbone of modern materials science and has many technological applications. The unique feature of this text is the MATLAB-based computational approach with several numerical techniques and simulation methods included. This is highly effective in addressing the need for visualization and a direct hands-on approach in learning the theoretical concepts of solid state physics. The code is freely available to all textbook users. Additional Features: Uses the pedagogical tools of computational physicsthat have become important in enhancing physics teaching of advanced subjects such as solid state physics Adds visualization and simulation to the subject in a way that enables students to participate actively in a hand-on approach Covers the basic concepts of solid state physics and provides students with a deeper understanding of the subject matter Provides unique example exercises throughout the text Obtains mathematical analytical solutions Carries out illustrationsof important formulae results using programming scripts that students can run on their own and reproduce graphs and/or simulations Helps students visualize solid state processes and apply certain numerical techniques using MATLAB, making the process of learning solid state physics much more effective Reinforces the examples discussed within the chapters through the use of end-of-chapter exercises Includes simple analytical and numerical examples to more challenging ones, as well as computational problems with the opportunity to run codes, create new ones, or modify existing ones to solve problems or reproduce certain results.
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https://www.taylorfrancis.com/books/9780429086601
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