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Molecular Spectroscopy

Instructors and Course Schedule:

Date

Lecturer

Date

Lecturer

9/15

Prof. Wun-Shain Fan

11/10

Prof. Wen-Bih Tzeng

9/22

Prof. Wun-Shain Fan

11/17

Prof. Wen-Bih Tzeng

9/29

Prof. Chi-Kung Ni

11/24

Prof. Wen-Bih Tzeng

10/06

Prof. Chi-Kung Ni

12/01

Prof. Shang-Bin Liu

10/13

Prof. Wen-Bih Tzeng

12/08

Prof. Shang-Bin Liu

10/20

Prof. Wen-Bih Tzeng

12/15

Prof. Shang-Bin Liu

10/27

Prof. Wen-Bih Tzeng

12/22

Prof. Shang-Bin Liu

11/03

Prof. Wen-Bih Tzeng

12/29

Prof. Shang-Bin Liu

Outline:

Part 1 (Week 1-week 2)

Speaker

Prof. Wun-Shain Fan 范文祥教授

Class Outline

Spectroscopy of condensed matter

Textbook

Lecture notes

Part 2 (Week 3-4)

Speaker

Prof. Chi-Kung Ni 倪其焜教授

Class Outline

Review of group theory

1. point group

2. Application of group theory in molecular vibration

3. Application of group theory in molecular orbitals

4. Applicatin of group theory iin chemical reactivity

Textbook

Lecture notes

Part 3 (Week 5-11)

Speaker

Prof. Wen-Bih Tzeng 曾文碧教授

Class Outline

  1. Rotational spectroscopy
  2. Vibrational spectroscopy
  3. Electronic spectroscopy

Introduction

  1. (a) Linear, Symmetric Rotor, Spherical Rotor, and Asymmetric Rotor Molecules, (b) Rotational Infrared, Millimeter Wave, and Microwave Spectra, (c) Rotational Raman Spectroscopy, (d) Structure Determination from Rotational Constants
  2. (a) Infrared Spectra, (b) Raman Spectra, (c) Vibrational Selection Rules, (d) Vibration-Rotation Spectroscopy, (e) Anharmonicity
  3. (a) Molecular Orbitals, (b) Classification of Electronic States, (c) Electronic and Vibronic Selection Rules, (d) Chromophores, (e) Vibrational Coarse Structure

Grading

1 quiz and 1 term paper

Textbook

Lecture notes

Part 4 (Week 12-16)

Speaker

Prof. Shang-Bin Liu 劉尚斌教授

Class Outline

Introduction to NMR and ESR spectroscopy

Introduction

1. Background and History of NMR & ESR Spectroscopy

2. Fundamental NMR: Classical Mechanics Perspectives

3. Fundamental NMR: Quantum Mechanics Perspectives

4. Solid-State NMR: Techniques and Applications

Grading

Home works (30%)

Two take home exams (70%)

Textbook

Lecture notes