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Chemical Engineering Fundamentals
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Related lectures (27)
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Chemical Equilibria and Reactivity
Covers chemical equilibria, dissolution, solvation, solubility, entropy effects, colligative properties, and osmotic pressure.
Thermodynamic Modeling: Ge-Ni System
Explores thermodynamic modeling of the Ge-Ni binary system, focusing on phase diagrams, enthalpy of mixing, and Gibbs energy.
Equations of Heat and Fourier Transform
Covers heat equations, Fourier transforms, and variable separation methods.
Chemical Equilibria and Reactivity
Explores cohesion rupture, solvation, gas dissolution, and colligative properties in solutions.
Fourier Analysis and PDEs
Explores Fourier analysis, PDEs, historical context, heat equation, Laplace equation, and periodic boundary conditions.
Chemical Equilibria and Reactivity
Delves into the second law of thermodynamics, chemical equilibrium, free enthalpy, activity in mixtures, and the Debye-Hückel equation.
Liquid-Liquid Extraction: Principles and Applications
Discusses liquid-liquid extraction principles, focusing on purifying acetic acid using 1-butanol as a solvent in a countercurrent extraction process.
Heat Equation: Separation of Variables
Covers the application of separation of variables method to solve the heat equation.
Solvents: Properties and Applications
Explores the properties and applications of solvents, including polarity, density, viscosity, and solubility, as well as their role in heterogeneous mixtures and auto-ignition.
Chemical Equilibria and Reactivity Course
Explains osmosis, the van't Hoff equation, and osmometry applications.