課程資訊
課程名稱
分子模擬導論
INTRODUCTION TO MOLECULAR MODELING 
開課學期
99-1 
授課對象
理學院  化學所化學組  
授課教師
鄭原忠 
課號
Chem5075 
課程識別碼
223 U1400 
班次
 
學分
全/半年
半年 
必/選修
選修 
上課時間
星期三2(9:10~10:00)星期五1,2(8:10~10:00) 
上課地點
化210室化210室 
備註
本課程中文授課,使用英文教科書。本課程中文授課,使用英文教科書。詳選課須知。外系所學生選修需經授課教師同意。
限學士班三年級以上 且 限本系所學生(含輔系、雙修生)
總人數上限:60人 
Ceiba 課程網頁
http://ceiba.ntu.edu.tw/991imm 
課程簡介影片
 
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課程概述

The course will focus on theoretical backgrounds for molecular modeling methods. We emphasize how to choose suitable simulation methods and correctly interpret outputs of molecular modeling packages. The outline of the course is:

* Atoms, Molecules, and Interactions
o Ab initio methods for many electron systems
o Electron correlation methods
o Density function theory

* Structures and Phases
o Solid state physics
o Simple statistical thermodynamics
o Empirical force field models and molecular mechanics

* Time-Evolution and State Transitions
o Molecular dynamics simulation methods
o Methods for exploring conformational space
o Free energy calculations

* Properties and Functions
o Brownian dynamics
o Monte Carlo simulation methods
o Coarse-graining approaches
 

課程目標
This couse aims to provide a "multiscale" view of molecular modeling, which ranges from atomistic methods based on quantum mechanics and classical mechanics to coarse-grained statistical approaches. The goal is to provide students an overview of theoretical tools for molecular modeling that will be useful in physical chemistry researches. 
課程要求
Course Prerequisites:

* General Physics & General Chemistry
* Basic Quantum Mechanics (Physical Chemistry II)
* Linear Algebra
* Willingness to Learn How to Operate Computers
 
預期每週課後學習時數
 
Office Hours
每週三 17:30~18:30 
指定閱讀
 
參考書目
Textbook: Molecular Modelling, 2nd Edition by Andrew R. Leach, Prentice Hall.

Recommended reference book: Physical Chemistry, 4th Edition by Robert J. Silbey,
Robert A. Alberty, and Moungi G. Bawendi, Wiley. 
評量方式
(僅供參考)
 
No.
項目
百分比
說明
1. 
Homework & quizzes 
20% 
 
2. 
Midterm exams 
20% 
 
3. 
Final exam 
20% 
 
4. 
Final project 
40% 
This course puts a strong emphasis on being able to develop and complete a project pertaining to methods of molecular modeling. Each student taken the class must develop and solve a problem related to molecular modeling, based on a paper from a selected list of ~ 20 papers. 
 
課程進度
週次
日期
單元主題
第1週
9/15,9/17  H-like atoms, Helium atom, the Born-
Oppenheimer approximation 
第2週
9/24  The Hartree-Fock method, the Roothaan-Hall
equations 
第3週
9/29,10/01  Electron correlation methods, quantum
chemistry 
第4週
10/06,10/08  Molecular property & reactivity 
第5週
10/13,10/15  Density functional theory 
第6週
10/20,10/22  Solid state physics 
第7週
10/27,10/29  Molecular mechanics, potential energy surface,
long-range interactions 
第8週
11/03,11/05  Basic statistical mechanics 
第9週
11/10  Solvation model 
第9週
11/12  Mid-term Exam 
第10週
11/17,11/19  Molecular dynamics, liquids 
第11週
11/24,11/26  Time correlation functions, linear response
theory, transport phenomena 
第12週
12/01,12/03  Monte Carlo simulation methods 
第13週
12/08,12/10  Enhanced sampling methods 
第14週
12/15,12/17  Free energy calculations, free energy
perturbation, thermodynamic integration 
第15週
12/22,12/24  What is multiscale modeling, Coarse-grained models: Gay-Berne model & Elastic Network Model 
第16週
12/29,12/31  "Non-empirical" CG models, Force matching, Brownian dynamics 
第17週
1/05,1/07  Dissipative particle dynamics, Kinetic Monte Carlo 
第18週
TBA  Final Exam