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Related lectures (18)
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Gas-Liquid Equilibrium
Explores non-ideal gases, phase transitions, chemical potential, and gas-liquid equilibrium in mixtures.
Thermodynamic Equilibria: Solution Models
Explores solution models for binary mixtures, including regular and real solutions, exchange energy, and thermodynamic quantities.
Order-Disorder Transformations: Introduction and Nomenclature
Covers ordering states in structures, binary alloys, transformation to ordered structures, and salient features of ordered states.
High Entropy Alloys: Overview and Properties
Covers the definitions, stability criteria, classes, and influences on physical properties of high entropy alloys.
Binary Systems: Solid Solutions
Explores binary systems, solid solutions, phase diagrams, and phase equilibrium conditions.
Ideal Gas Law: Mixing
Explains the chemical potential of ideal gases and the law of mass action.
Electrons beyond conductivity
Explores Miedema's model for electron density calculations and phase stability in alloys.
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.
Solutions Properties: Raoult's Law
Explores Raoult's Law for ideal solutions and Henry's Law for gas solubility.
Order-Disorder Transformation: Bragg-Williams Analysis
Explores the Bragg-Williams analysis of order-disorder transformations in materials, including enthalpy, entropy, and critical temperature equilibrium.
Stoichiometry and Chemical Reactions: Key Concepts
Introduces stoichiometry, covering the mole concept, balancing reactions, and gas behavior.
Solubility: Equilibrium and Factors
Explores solubility as a chemical equilibrium phenomenon, discussing factors and interactions between solvents and solutes.
Osmotic Pressure: Electrochemical Potential
Explores osmotic pressure and electrochemical potential, highlighting their calculation and significance in electrolyte behavior.
Properties of Solutions: Ideal Solutions and Thermodynamics
Explores ideal solutions, thermodynamics of mixtures, chemical potential, and colligative properties of solutions.
Colligative Properties, Solutions Properties 4
Explores colligative properties of solutions, osmotic pressure, Raoult's law, and practical applications in biology.
Chemical Potential and Thermodynamic Functions in Mixtures
Covers chemical potential variations and thermodynamic functions in mixtures, emphasizing their implications in real and ideal gases.
Thermodynamics: Enthalpy and Energy Transformations
Explores thermodynamics, state functions, internal energy, and enthalpy, emphasizing energy conservation and heat exchange in various systems.
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