Lecture 14: Diffusion (Part 2, Random Walk Model to Diffusion Equation) @bahgalabiitdelhi7797
Lecture 14: Diffusion (Part 2, Random Walk Model to Diffusion Equation)  @bahgalabiitdelhi7797
Uploaded February 2017 | Updated September 2026, 1 hour ago
In this lecture, we derive the diffusion equation for the continuum limit by considering a large collection of molecules independently performing random walk.
Lecture 14: Diffusion (Part 2, Random Walk Model to Diffusion Equation)Lecture 9: Heat and its comparison with work (Engineering Thermodynamics Lecture Series)Lecture 35: Droplet Microfluidics (Part 2, Jetting Regime)Lecture 3: Microscopic vs. Macroscopic viewpoints of Thermodynamics (Statistical vs Classical)Lecture 13: Spectral Leakage, Windowing, with Examples of Hanning and Hamming WindowsLecture 28: Availability and Extremum Principles for Thermodynamic PotentialsLecture 29: Useful Work, Exergy, and Second Law Efficiency (Engineering Thermodynamics Lectures)Lecture 32: The Rankine Cycle: Basic cycle and Superheating (Engineering Thermodynamics)Lecture 33: Rankine Cycle (Contd.) Effect of Pressure & Temperature, Reheat and Regenerative CyclesLecture 6: Flow in rectangular cross-section channelLecture 4: Reynolds numberLecture 24: Entropy of an isolated system increases during irreversible process; Clausius inequality
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Lecture 14: Diffusion (Part 2, Random Walk Model to Diffusion Equation)

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