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MIT
MIT
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Lecture
Course
Institute
Instructor
Discipline
5076
11. Energy Transfer by Waves: Plane Waves (M-I-T)
Nano to Macro Transport Processes (M-I-T)
MIT
Prof. Dr. Gang Chen
Applied Sciences
5077
12. EM Waves: Reflection at a Single Interface (M-I-T)
Nano to Macro Transport Processes (M-I-T)
MIT
Prof. Dr. Gang Chen
Applied Sciences
5078
13. EM Wave Propagation Through Thin Films & Multilayers (M-I-T)
Nano to Macro Transport Processes (M-I-T)
MIT
Prof. Dr. Gang Chen
Applied Sciences
5079
14. Wave Phenomena and Landauer Formalism (M-I-T)
Nano to Macro Transport Processes (M-I-T)
MIT
Prof. Dr. Gang Chen
Applied Sciences
5080
Day 1: Introductory Lecture (M-I-T)
The Art and Science of Boat Design (M-I-T)
MIT
Kurt Hasselbalch
Applied Sciences
5081
15. Particle Description, Liouville & Boltzmann Equations (M-I-T)
Nano to Macro Transport Processes (M-I-T)
MIT
Prof. Dr. Gang Chen
Applied Sciences
5082
Day 1: MIT Museum Nautical Collections and an Introductory Demonstration (M-I-T)
The Art and Science of Boat Design (M-I-T)
MIT
Kurt Hasselbalch
Applied Sciences
5083
16. Fermi Golden Rule and Relaxation Time Approximation (M-I-T)
Nano to Macro Transport Processes (M-I-T)
MIT
Prof. Dr. Gang Chen
Applied Sciences
5084
Day 2: Model Building (M-I-T)
The Art and Science of Boat Design (M-I-T)
MIT
Kurt Hasselbalch
Applied Sciences
5085
17. Solutions to Boltzmann Equation: Diffusion Laws (M-I-T)
Nano to Macro Transport Processes (M-I-T)
MIT
Prof. Dr. Gang Chen
Applied Sciences
5086
Day 4: Finishing Up and Drawing Up Plans (M-I-T)
The Art and Science of Boat Design (M-I-T)
MIT
Kurt Hasselbalch
Applied Sciences
5087
18. Electron Transport and Thermoelectric Effects (M-I-T)
Nano to Macro Transport Processes (M-I-T)
MIT
Prof. Dr. Gang Chen
Applied Sciences
5088
Day 5: Conclusion, and More of the MIT Museum's Nautical Collections (M-I-T)
The Art and Science of Boat Design (M-I-T)
MIT
Kurt Hasselbalch
Applied Sciences
5089
19. Classical Size Effects, Parallel Direction (M-I-T)
Nano to Macro Transport Processes (M-I-T)
MIT
Prof. Dr. Gang Chen
Applied Sciences
5090
2. Characteristic Time and Length, Simple Kinetic Theory (M-I-T)
Nano to Macro Transport Processes (M-I-T)
MIT
Prof. Dr. Gang Chen
Applied Sciences
5091
Lecture 10: Solution of Equilibrium Equations in Dynamic Analysis (M-I-T)
Linear Analysis (M-I-T)
MIT
Prof. Klaus-Jürgen Bathe
Applied Sciences
5092
20. Classical Size Effects, Perpendicular Direction (M-I-T)
Nano to Macro Transport Processes (M-I-T)
MIT
Prof. Dr. Gang Chen
Applied Sciences
5093
Lecture 11: Mode Superposition Analysis; Time History (M-I-T)
Linear Analysis (M-I-T)
MIT
Prof. Klaus-Jürgen Bathe
Applied Sciences
5094
21. Slip Condition, Coupled Energy Transport & Conversion (M-I-T)
Nano to Macro Transport Processes (M-I-T)
MIT
Prof. Dr. Gang Chen
Applied Sciences
5095
Lecture 12: Solution Methods for Frequencies and Mode Shapes (M-I-T)
Linear Analysis (M-I-T)
MIT
Prof. Klaus-Jürgen Bathe
Applied Sciences
5096
22. PN Junction, Diode and Photovoltaic Cells (M-I-T)
Nano to Macro Transport Processes (M-I-T)
MIT
Prof. Dr. Gang Chen
Applied Sciences
5097
Lecture 1: Some Basic Concepts of Engineering Analysis (M-I-T)
Linear Analysis (M-I-T)
MIT
Prof. Klaus-Jürgen Bathe
Applied Sciences
5098
23. Liquids: Brownian Motion and Forces in Liquids (M-I-T)
Nano to Macro Transport Processes (M-I-T)
MIT
Prof. Dr. Gang Chen
Applied Sciences
5099
Lecture 10: Solution of Nonlinear Static FE Equations I (M-I-T)
Non-Linear Analysis (M-I-T)
MIT
Prof. Klaus-Jürgen Bathe
Applied Sciences
5100
Lecture 2: Analysis of Continuous Systems (M-I-T)
Linear Analysis (M-I-T)
MIT
Prof. Klaus-Jürgen Bathe
Applied Sciences
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