課程名稱 |
微奈米尺度熱傳 Micro/Nanoscale Heat Transfer |
開課學期 |
112-2 |
授課對象 |
重點科技研究學院 奈米工程與科學碩士學位學程 |
授課教師 |
呂明璋 |
課號 |
ME5047 |
課程識別碼 |
522EU6230 |
班次 |
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學分 |
3.0 |
全/半年 |
半年 |
必/選修 |
選修 |
上課時間 |
星期二7,8,9(14:20~17:20) |
上課地點 |
工綜205 |
備註 |
本課程以英語授課。 總人數上限:40人 |
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課程簡介影片 |
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核心能力關聯 |
核心能力與課程規劃關聯圖 |
課程大綱
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課程概述 |
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. |
課程目標 |
The students will (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. |
課程要求 |
Thermodynamics,
Heat Transfer,
Fluid Mechanics |
預期每週課後學習時數 |
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Office Hours |
每週一 15:00~17:00 備註: TA: Ruay-Hong-Wu 吳睿紘
TA Office hours: 3-5 pm on Monday
Location: Room 523 in the College of Engineering building
Email: soyuuu8485@gmail.com
Phone: 61789 |
指定閱讀 |
Nanoscale Energy Transport and Conversion, Gang Chen, 2005
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參考書目 |
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 |
評量方式 (僅供參考) |
No. |
項目 |
百分比 |
說明 |
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.
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2. |
Midterm exam |
35% |
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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. |
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針對學生困難提供學生調整方式 |
上課形式 |
以錄影輔助 |
作業繳交方式 |
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考試形式 |
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其他 |
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週次 |
日期 |
單元主題 |
第1週 |
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Introduction: Length scale, kinetic theory, mean free path, etc.
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第2週 |
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Statistical Thermodynamics
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第3週 |
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Statistical Thermodynamics
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第4週 |
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Quantum Mechanics
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第5週 |
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Quantum Mechanics
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第6週 |
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Quantum Mechanics
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第7週 |
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Solid State Physics
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第8週 |
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Midterm exam
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第9週 |
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Solid State Physics
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第10週 |
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Solid State Physics
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第11週 |
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Boltzmann Transport Equations
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第12週 |
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Boltzmann Transport Equations
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第13週 |
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Boltzmann Transport Equations
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第14週 |
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Energy Transport by Waves
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第15週 |
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Interface resistance
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第16週 |
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Final project presentation
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