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전산물리학:전산물리교재개발 [2014/12/15 15:41] – beomjun | 전산물리학:전산물리교재개발 [2023/09/05 15:46] (current) – external edit 127.0.0.1 | ||
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+ | ===백승기의 강의계획서 (시안)=== | ||
+ | ==교재== | ||
+ | *주교재: 유인물 | ||
+ | *부교재: | ||
+ | *M. Newman, Computational Physics | ||
+ | *M. Di Pierro, Annotated Algorithms in Python (아마존 추천) | ||
+ | |||
+ | ==강의내용== | ||
+ | 일단 Newman 책을 기준으로, | ||
+ | * [[: | ||
+ | * [[: | ||
+ | * Lists and arrays, Good programming style | ||
+ | * Graphics and visualization | ||
+ | * Accracy and speed | ||
+ | * Evaluating integrals | ||
+ | * Derivatives | ||
+ | * Linear equations | ||
+ | * Eigenvalues and eigenvectors ([[: | ||
+ | * Nonlinear equations, Maxima and minima | ||
+ | * Discrete Fourier transform | ||
+ | * Fast Fourier transforms | ||
+ | * First-order differential equations with one variable | ||
+ | * Differential equations with more than one variable | ||
+ | * Other methods for differential equations | ||
+ | * [[: | ||
+ | * Random processes and Monte Carlo methods ([[: | ||
+ | * [[: | ||
+ | * [[: | ||
+ | |||
+ | |||