高等物理化學(二)
Advanced Physical Chemistry II
| 節 | 週一 | 週三 |
|---|---|---|
2 09:00–09:50 | 高等物理化學(二) | |
3 10:10–11:00 | 高等物理化學(二) 2 節連堂 | |
4 11:10–12:00 |
* 根據陽明交大上課時間表所列
1. The characteristics of electronic transitions 2. The fates of electronically excited states 3. Lasers 4. Electronic spectroscopy 5. Vibronic spectroscopy 6. Photoionization spectrscopy 7. Photoelectron spectroscopy
By info
無備註
教師未提供此項資料
(1) class attendance, (2) quiz
教師未提供此項資料
| 週次 | 主題 |
|---|---|
| 第 1 週 | 1. The characteristics of electronic transitions 2. The fates of electronically excited states 3. Lasers 4. Electronic spectroscopy 5. Vibronic spectroscopy 6. Photoionization spectrscopy 7. Photoelectron spectroscopy 2/17 2/19 |
| 第 2 週 | 1. The characteristics of electronic transitions 2. The fates of electronically excited states 3. Lasers 4. Electronic spectroscopy 5. Vibronic spectroscopy 6. Photoionization spectrscopy 7. Photoelectron spectroscopy 2/24 2/26 |
| 第 3 週 | 1. The characteristics of electronic transitions 2. The fates of electronically excited states 3. Lasers 4. Electronic spectroscopy 5. Vibronic spectroscopy 6. Photoionization spectrscopy 7. Photoelectron spectroscopy 3/2 3/4 |
| 第 4 週 | Introduction to NMR Spectroscopy 1. Background and History of NMR Spectroscopy 2. Fundamental NMR: Theories and Introduction 3. High-resolution and Solid-State NMR: Techniques and Applications 3/9 3/11 |
| 第 5 週 | Introduction to NMR Spectroscopy 1. Background and History of NMR Spectroscopy 2. Fundamental NMR: Theories and Introduction 3. High-resolution and Solid-State NMR: Techniques and Applications 3/16 3/18 |
| 第 6 週 | Introduction to NMR Spectroscopy 1. Background and History of NMR Spectroscopy 2. Fundamental NMR: Theories and Introduction 3. High-resolution and Solid-State NMR: Techniques and Applications 3/23 3/25 |
| 第 7 週 | Introduction to NMR Spectroscopy 1. Background and History of NMR Spectroscopy 2. Fundamental NMR: Theories and Introduction 3. High-resolution and Solid-State NMR: Techniques and Applications 3/30 4/1 |
| 第 8 週 | Statistical thermodynamics: concepts and applications 1. Distribution of molecular states 2. Internal energy and entropy 3. Canonical partition function 4. Thermodynamics of diffusion 5. Thermodynamics of biological membrane dynamics 6. Optical microscopy in studying membrane diffusion I 7. Optical microscopy in studying membrane diffusion II 4/6 4/8 |
| 第 9 週 | Statistical thermodynamics: concepts and applications 1. Distribution of molecular states 2. Internal energy and entropy 3. Canonical partition function 4. Thermodynamics of diffusion 5. Thermodynamics of biological membrane dynamics 6. Optical microscopy in studying membrane diffusion I 7. Optical microscopy in studying membrane diffusion II 4/13 4/15 |
| 第 10 週 | Statistical thermodynamics: concepts and applications 1. Distribution of molecular states 2. Internal energy and entropy 3. Canonical partition function 4. Thermodynamics of diffusion 5. Thermodynamics of biological membrane dynamics 6. Optical microscopy in studying membrane diffusion I 7. Optical microscopy in studying membrane diffusion II 4/20 4/22 |
| 第 11 週 | Statistical thermodynamics: concepts and applications 1. Distribution of molecular states 2. Internal energy and entropy 3. Canonical partition function 4. Thermodynamics of diffusion 5. Thermodynamics of biological membrane dynamics 6. Optical microscopy in studying membrane diffusion I 7. Optical microscopy in studying membrane diffusion II 4/27 4/29 |
| 第 12 週 | Statistical thermodynamics: concepts and applications 1. Distribution of molecular states 2. Internal energy and entropy 3. Canonical partition function 4. Thermodynamics of diffusion 5. Thermodynamics of biological membrane dynamics 6. Optical microscopy in studying membrane diffusion I 7. Optical microscopy in studying membrane diffusion II 5/4 5/6 |
| 第 13 週 | Statistical thermodynamics: concepts and applications 1. Distribution of molecular states 2. Internal energy and entropy 3. Canonical partition function 4. Thermodynamics of diffusion 5. Thermodynamics of biological membrane dynamics 6. Optical microscopy in studying membrane diffusion I 7. Optical microscopy in studying membrane diffusion II 5/11 5/13 |
| 第 14 週 | 1. Molecular interactions—Molecular properties that underlie intermolecular interactions and the effects of these interactions will be introduced. 2. Macromolecules and aggregates— Techniques used in the study of molecular size and shape will first be introduced; and will then explore dynamic structures and properties of macromolecules and their aggregates. 5/18 5/20 |
| 第 15 週 | 1. Molecular interactions—Molecular properties that underlie intermolecular interactions and the effects of these interactions will be introduced. 2. Macromolecules and aggregates— Techniques used in the study of molecular size and shape will first be introduced; and will then explore dynamic structures and properties of macromolecules and their aggregates. 5/25 5/27 |
| 第 16 週 | 1. Molecular interactions—Molecular properties that underlie intermolecular interactions and the effects of these interactions will be introduced. 2. Macromolecules and aggregates— Techniques used in the study of molecular size and shape will first be introduced; and will then explore dynamic structures and properties of macromolecules and their aggregates. 6/1 6/3 |
| 第 18 週 | 1. Molecular interactions—Molecular properties that underlie intermolecular interactions and the effects of these interactions will be introduced. 2. Macromolecules and aggregates— Techniques used in the study of molecular size and shape will first be introduced; and will then explore dynamic structures and properties of macromolecules and their aggregates. 6/15 6/17 |
| 第 18 週 | 1. Molecular interactions—Molecular properties that underlie intermolecular interactions and the effects of these interactions will be introduced. 2. Macromolecules and aggregates— Techniques used in the study of molecular size and shape will first be introduced; and will then explore dynamic structures and properties of macromolecules and their aggregates. 6/8 6/10 |
Physical chemistry (P.W. Atkins) + class notes
- 地點
- By appointment
- 時間
- By appointment
- 聯絡方式
- By email
