ME5047

微奈米尺度熱傳

Department
Mechanical Engineering
Instructor
呂明璋/MING-CHANG LU
分類
2026年春季學期研究生課程

課程介紹

ME5047 · 機械工程學系

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.

ME5047 Curriculum Number 114-2 Semester 3.0 Credits 40 Seat Limit

✦ 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

1

gain an understanding of the fundamentals of kinetic theory, statistical thermodynamics, solid-state physics, and quantum mechanics;

2

learn the mechanisms of energy transport at the micro/nanoscale;

3

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

1

Chang-Lin Tien, Arunava Majumdar, Frank M. Gerner, Microscale Energy Transport, 1997

2

Van P. Carey, Statistical Thermodynamics and Microscale Thermophysics, 1999

3

Charles Kittel, Introduction to Solid State Physics, 2005

4

David J. Griffiths, Introduction to Quantum Mechanics, 2nd Edition, 2005

5

Zhuomin M. Zhang, Nano/Microscale Heat Transfer, 2008

Grading

No. Item % Explanations for the conditions
1.Homework30%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 exam35%
3.Final project35%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

附件

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