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Related lectures (29)
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Chemical Engineering Fundamentals
Covers the fundamentals of chemical engineering, including material and energy balances, ideal and real solutions, and the dissolving process.
Chemical Engineering Fundamentals
Covers material and energy balances, properties of mixtures, and the formation of liquid solutions.
Thermodynamic Modeling: Real Solutions
Explores thermodynamic modeling of real solutions in materials science, focusing on regular and sublattice models.
Thermodynamic Modeling: Ge-Ni System
Explores thermodynamic modeling of the Ge-Ni binary system, focusing on phase diagrams, enthalpy of mixing, and Gibbs energy.
Order-Disorder Transformations: Introduction and Nomenclature
Covers ordering states in structures, binary alloys, transformation to ordered structures, and salient features of ordered states.
Flash Drum: Principles and Mass Balance in Separation Processes
Covers the principles of flash drums and the mass and energy balances involved in separation processes.
Typological Variations in Architecture
Explores Michael Alder's architectural typological approach, emphasizing spatial relationships and adaptable design solutions.
Osmosis and Van't Hoff Law
Explores osmotic pressure, dilute solutions, and biological applications of osmosis.
Order-Disorder Transformation: Bragg-Williams Analysis
Explores the Bragg-Williams analysis of order-disorder transformations in materials, including enthalpy, entropy, and critical temperature equilibrium.
Properties of Solutions: Ideal Solutions and Thermodynamics
Explores ideal solutions, thermodynamics of mixtures, chemical potential, and colligative properties of solutions.
Solutions Properties: Raoult's Law
Explores Raoult's Law for ideal solutions and Henry's Law for gas solubility.
Chemical Equilibria and Reactivity
Explores enthalpy, phase transitions, and chemical reactions, including enthalpy of formation and Hess's law.
Chemical Thermodynamics: State Functions and Enthalpy
Covers chemical thermodynamics, state functions, enthalpy, and Hess's law in chemical reactions.
Electrons beyond conductivity
Explores Miedema's model for electron density calculations and phase stability in alloys.
Chemical Equilibria and Reactivity
Covers chemical equilibria, dissolution, solvation, solubility, entropy effects, colligative properties, and osmotic pressure.
Ideal solutions and phase equilibria
Covers the concept of ideal solutions and phase equilibria.
Untitled
High Entropy Alloys: Overview and Properties
Covers the definitions, stability criteria, classes, and influences on physical properties of high entropy alloys.
Thermodynamic Equilibria: Solution Models
Explores solution models for binary mixtures, including regular and real solutions, exchange energy, and thermodynamic quantities.
Enthalpy Standard and Hess Law
Explores standard enthalpy of formation and Hess's Law applications in thermodynamics.
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