
Lecture Description
This video lecture, part of the series Nonequilibrium Statistical Mechanics by Prof. V. Balakrishnan, does not currently have a detailed description and video lecture title. If you have watched this lecture and know what it is about, particularly what Physics topics are discussed, please help us by commenting on this video with your suggested description and title. Many thanks from,
- The CosmoLearning Team
- The CosmoLearning Team
Course Index
- Recapitulation of equilibrium statistical mechanics
- The Langevin model (Part 1)
- The Langevin model (Part 2)
- The Langevin model (Part 3)
- The Langevin model (Part 4)
- Linear response theory (Part 1)
- Linear response theory (Part 2)
- Linear response (Part 3)
- Linear response(Part 4)
- Linear response (Part 5)
- Linear response (Part 6)
- Linear response theory (Part 7)
- Quiz 1 - Questions and answers
- Linear response theory (Part 8)
- Linear response theory (Part 9)
- The dynamic mobility
- Fokker-Planck equations (Part 1)
- Fokker-Planck equations (Part 2)
- Fokker-Planck equations (Part 3)
- The generalized Langevin equation (Part 1)
- The generalized Langevin equation (Part 2)
- Diffusion in a magnetic field
- The Boltzmann equation for a dilute gas (Part 1)
- The Boltzmann equation for a dilute gas (Part 2)
- The Boltzmann equation for a dilute gas (Part 3)
- The Boltzmann equation for a dilute gas (Part 4)
- The Boltzmann equation for a dilute gas (Part 5)
- Quiz 2 - Questions and answers
- Critical phenomena (Part 1)
- Critical phenomena (Part 2)
- Lec-31 Critical phenomena (Part 3)
- Critical phenomena (Part 4)
- Critical phenomena (Part 5)
- Critical phenomena (Part 6)
- Critical phenomena (Part 7)
- The Wiener process (standard Brownian motion)
Course Description
This course covers Thermal fluctuations, Langevin dynamics, Brownian motion and diffusion, Fokker-Planck equations, linear response theory, fluctuation-dissipation relations, the Boltzmann equation, critical phenomena, scaling and critical exponents.
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