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Thermodynamics and Kinetics (M-I-T)

(36 Lectures Available)

S# Lecture Course Institute Instructor Discipline
1
  • Lecture 10: Entropy and irreversibility (M-I-T)
Thermodynamics and Kinetics (M-I-T) MIT Prof. Keith A. Nelson, Prof. Moungi Bawendi Basic and Health Sciences
2
  • Lecture 11: Fundamental equation, absolute S, third law (M-I-T)
Thermodynamics and Kinetics (M-I-T) MIT Prof. Keith A. Nelson, Prof. Moungi Bawendi Basic and Health Sciences
3
  • Lecture 12: Criteria for spontaneous change (M-I-T)
Thermodynamics and Kinetics (M-I-T) MIT Prof. Keith A. Nelson, Prof. Moungi Bawendi Basic and Health Sciences
4
  • Lecture 13: Gibbs free energy (M-I-T)
Thermodynamics and Kinetics (M-I-T) MIT Prof. Keith A. Nelson, Prof. Moungi Bawendi Basic and Health Sciences
5
  • Lecture 14: Multicomponent systems, chemical potential (M-I-T)
Thermodynamics and Kinetics (M-I-T) MIT Prof. Keith A. Nelson, Prof. Moungi Bawendi Basic and Health Sciences
6
  • Lecture 15: Chemical equilibrium (M-I-T)
Thermodynamics and Kinetics (M-I-T) MIT Prof. Keith A. Nelson, Prof. Moungi Bawendi Basic and Health Sciences
7
  • Lecture 16: Temperature, pressure and Kp (M-I-T)
Thermodynamics and Kinetics (M-I-T) MIT Prof. Keith A. Nelson, Prof. Moungi Bawendi Basic and Health Sciences
8
  • Lecture 17: Equilibrium: application to drug design (M-I-T)
Thermodynamics and Kinetics (M-I-T) MIT Prof. Keith A. Nelson, Prof. Moungi Bawendi Basic and Health Sciences
9
  • Lecture 18: Phase equilibria — one component (M-I-T)
Thermodynamics and Kinetics (M-I-T) MIT Prof. Keith A. Nelson, Prof. Moungi Bawendi Basic and Health Sciences
10
  • Lecture 19: Clausius-Clapeyron equation (M-I-T)
Thermodynamics and Kinetics (M-I-T) MIT Prof. Keith A. Nelson, Prof. Moungi Bawendi Basic and Health Sciences
11
  • Lecture 1: State of a system, 0th law, equation of state (M-I-T)
Thermodynamics and Kinetics (M-I-T) MIT Prof. Keith A. Nelson, Prof. Moungi Bawendi Basic and Health Sciences
12
  • Lecture 20: Phase equilibria — two components (M-I-T)
Thermodynamics and Kinetics (M-I-T) MIT Prof. Keith A. Nelson, Prof. Moungi Bawendi Basic and Health Sciences
13
  • Lecture 21: Ideal solutions (M-I-T)
Thermodynamics and Kinetics (M-I-T) MIT Prof. Keith A. Nelson, Prof. Moungi Bawendi Basic and Health Sciences
14
  • Lecture 22: Non-ideal solutions (M-I-T)
Thermodynamics and Kinetics (M-I-T) MIT Prof. Keith A. Nelson, Prof. Moungi Bawendi Basic and Health Sciences
15
  • Lecture 23: Colligative properties (M-I-T)
Thermodynamics and Kinetics (M-I-T) MIT Prof. Keith A. Nelson, Prof. Moungi Bawendi Basic and Health Sciences
16
  • Lecture 24: Introduction to statistical mechanics (M-I-T)
Thermodynamics and Kinetics (M-I-T) MIT Prof. Keith A. Nelson, Prof. Moungi Bawendi Basic and Health Sciences
17
  • Lecture 25: Partition function (q) — large N limit (M-I-T)
Thermodynamics and Kinetics (M-I-T) MIT Prof. Keith A. Nelson, Prof. Moungi Bawendi Basic and Health Sciences
18
  • Lecture 26: Partition function (Q) — many particles (M-I-T)
Thermodynamics and Kinetics (M-I-T) MIT Prof. Keith A. Nelson, Prof. Moungi Bawendi Basic and Health Sciences
19
  • Lecture 27: Statistical mechanics and discrete energy levels (M-I-T)
Thermodynamics and Kinetics (M-I-T) MIT Prof. Keith A. Nelson, Prof. Moungi Bawendi Basic and Health Sciences
20
  • Lecture 28: Model systems (M-I-T)
Thermodynamics and Kinetics (M-I-T) MIT Prof. Keith A. Nelson, Prof. Moungi Bawendi Basic and Health Sciences
21
  • Lecture 29: Applications: chemical and phase equilibria (M-I-T)
Thermodynamics and Kinetics (M-I-T) MIT Prof. Keith A. Nelson, Prof. Moungi Bawendi Basic and Health Sciences
22
  • Lecture 2: Work, heat, first law (M-I-T)
Thermodynamics and Kinetics (M-I-T) MIT Prof. Keith A. Nelson, Prof. Moungi Bawendi Basic and Health Sciences
23
  • Lecture 30: Introduction to reaction kinetics (M-I-T)
Thermodynamics and Kinetics (M-I-T) MIT Prof. Keith A. Nelson, Prof. Moungi Bawendi Basic and Health Sciences
24
  • Lecture 31: Complex reactions and mechanisms (M-I-T)
Thermodynamics and Kinetics (M-I-T) MIT Prof. Keith A. Nelson, Prof. Moungi Bawendi Basic and Health Sciences
25
  • Lecture 32: Steady-state and equilibrium approximations (M-I-T)
Thermodynamics and Kinetics (M-I-T) MIT Prof. Keith A. Nelson, Prof. Moungi Bawendi Basic and Health Sciences