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Related lectures (30)
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Modes of Momentum Transport and Viscosity
Explores momentum transport modes, fluid density, viscosity, and Newton's law, with examples and exercises.
Plasma Physics II: Fundamentals and Applications
Covers collisional and transport phenomena, collective phenomena, and wave-particle interactions in plasma physics.
Transport Phenomena: Definitions
Covers the mechanisms of transport and current density vectors in different quantities.
Diffusion and transport in tokamak plasmas
Covers diffusive transport in tokamak plasmas, including classical and neo-classical diffusion, ambipolar diffusion, and turbulent transport.
Introduction to Transport Phenomena: Bernoulli's Equation
Covers Bernoulli's equation and its applications in fluid flow problems, including continuity, friction factors, and practical examples.
Diffusion and Transport in Tokamak Plasmas
Explores diffusive transport, classical and neo-classical diffusion, and turbulent transport in tokamak plasmas.
Green Chemistry and Engineering: Introduction
Introduces the benefits and principles of green chemistry and engineering, focusing on emerging technologies.
Heterogeneous Catalysis: Transport Effects
Explores heterogeneous catalysis fundamentals, transport effects, and rate data analysis in catalytic reactions.
Two phase flow and heat transfer
Explores two-phase flow, heat transfer, film condensation, pool boiling, and forced convection boiling in pipes.
CVD: Theoretical Concepts and Boundary Layers
Explores theoretical concepts in CVD, focusing on boundary layers and the Reynolds number.