課程介紹
微奈米尺度熱傳
Micro/Nanoscale Heat Transfer — 114-2 Elective course (3.0 credits). English-taught. Energy transport at micro/nanoscale.
✦ Course Information
| Course title | 微奈米尺度熱傳 / Micro/Nanoscale Heat Transfer |
|---|---|
| Semester | 114-2 |
| Designated for | College of Engineering · Department of Mechanical Engineering / Nano Engineering and Science Doctoral Program / Nano Engineering and Science Master's Program / Graduate Institute of Mechanical Engineering |
| Curriculum Number | ME5047 |
| Curriculum Identity Number | 522U6230 |
| Class | — |
| Credits | 3.0 |
| Full / Half Yr. | Half |
| Required / Elective | 選修 (Elective) |
| Remarks | 本課程以英語授課。修課總人數 40 人(本校 40 人)。 |
為確保您我的權利,請尊重智慧財產權及不得非法影印。
Class Section
| Class | Instructor | Time | Location |
|---|---|---|---|
| — | 呂明璋 | Tuesday 2, 3, 4 | 機械114 |
Course Description
This course is taught in English. It focuses on the mechanisms of energy transport of micro/nanoscale systems, particularly thermal energy transport. The concepts of statistical physics, quantum mechanics, solid-state physics, kinetic theory, Boltzmann transport equation, and energy transport by waves will be introduced.
Course Objective
gain an understanding of the fundamentals of kinetic theory, statistical thermodynamics, solid-state physics, and quantum mechanics;
learn the mechanisms of energy transport at the micro/nanoscale;
acquire the skills for the modeling of the transport properties of the micro/nanoscale systems, such as thermal conductivity and resistivity.
Course Requirement
- Thermodynamics, Heat Transfer, Fluid Mechanics
- Student Workload (Expected weekly study hours before and/or after class): —
- Office Hours: 星期三 13:00 – 16:00. TA: Kuang-Yu Chen 陳光宇. TA Office hours: 1–4 pm on Wednesday. Location: ME 411. Email: f08522117@ntu.edu.tw. Phone: 61789
- Designated reading: Nanoscale Energy Transport and Conversion, Gang Chen, 2005
- 針對學生困難提供學生調整方式: A2 以錄影輔助 (Assisted by video)
References
Chang-Lin Tien, Arunava Majumdar, Frank M. Gerner, Microscale Energy Transport, 1997
Van P. Carey, Statistical Thermodynamics and Microscale Thermophysics, 1999
Charles Kittel, Introduction to Solid State Physics, 2005
David J. Griffiths, Introduction to Quantum Mechanics, 2nd Edition, 2005
Zhuomin M. Zhang, Nano/Microscale Heat Transfer, 2008
Grading
| No. | Item | % | Explanations for the conditions |
|---|---|---|---|
| 1. | Homework | 30% | The late homework submitted within one day after the due date will be 20% deducted from the original score. The homework submitted beyond one day after the due date will not be accepted. |
| 2. | Midterm exam | 35% | — |
| 3. | Final project | 35% | The final project is a two-student team project. The grade of the final project will be judged based on the content, presentation, and the written report. |
評量方式
本校尚無訂定 A+ 比例上限。
等第制
本校採用等第制評定成績,學生成績評量辦法中的百分制分數區間與單科成績對照表僅供參考,授課教師可依等第定義調整分數區間。詳見學習評量專區。
Progress
| Week | Date | Topic |
|---|---|---|
| 第 1 週 | — | Introduction: Length scale, kinetic theory, mean free path, etc. |
| 第 2 週 | — | Statistical Thermodynamics |
| 第 3 週 | — | Statistical Thermodynamics |
| 第 4 週 | — | Quantum Mechanics |
| 第 5 週 | — | Quantum Mechanics |
| 第 6 週 | — | Quantum Mechanics |
| 第 7 週 | — | Solid State Physics |
| 第 8 週 | — | Midterm exam |
| 第 9 週 | — | Solid State Physics |
| 第 10 週 | — | Solid State Physics |
| 第 11 週 | — | Boltzmann Transport Equations |
| 第 12 週 | — | Boltzmann Transport Equations |
| 第 13 週 | — | Boltzmann Transport Equations |
| 第 14 週 | — | Energy Transport by Waves |
| 第 15 週 | — | Interface resistance |
| 第 16 週 | — | Final project presentation |