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ChE-204: Introduction to transport phenomena
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Lectures in this course (9)
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.
Pressure Drop in Closed-Flow Systems
Explores pressure drop in closed-flow systems, including minor losses and exercises on fluid transfer and pump power.
Microscopic Heat Transport: Modes and Laws
Explores microscopic heat transport modes and laws, including Fourier's law and Newton's law, highlighting thermal conductivity principles.
Heat Transport Fundamentals
Explores heat transport through conduction, convection, and radiation, including thermal resistance and practical examples.
Heat Exchangers: Fundamentals and Applications
Explores the fundamentals of heat exchangers, including conduction, convection, and temperature profiles, with practical examples.
Mass Transport: Fick's Law of Molecular Diffusion
Covers mass transport through molecular diffusion, explaining Fick's first law and diffusion coefficient values for various materials.
Mass Transfer Coefficients: Liquid vs Gas
Explores mass transfer coefficients in liquid and gas phases, with a focus on convective mass transfer around dissolving bubbles and experimental dynamics of granular systems.
Mass Transfer Coefficients: Gas-Liquid Phases
Explores mass transfer coefficients between gas and liquid phases, equilibrium diagrams, and partition coefficients.
Modes of Momentum Transport and Viscosity
Explores momentum transport modes, fluid density, viscosity, and Newton's law, with examples and exercises.
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