Course Contents
Review of classical thermodynamics
Equation of states, molar volumes
Properties
Entropy
Thermal and Kinetic energies
Heat Capacities
Fluctuation and Nano thermodynamics
Brownian motion and electron density
Material equilibrium, free energy
Course Synopsis
Basic Laws and terms
Fundamentals thermodynamics parameters, Inter-relation for chemical processes, compute thermodynamic relations,
Types of properties
Entropy and 2nd Law of Thermodynamics
Apply thermodynamics to defects, Phase equilibria, Phase diagram, and Phase Transitions in nano system.
Basic principals of statistical thermodynamics
Explain thermodynamics properties of colloidal system, reflect differences from classical thermodynamics
Gibbs free energy
Course Learning Outcomes
In depth of understanding on the principals of thermodynamics of materials and applications to production of inorganic materials (thin films, bulk) selection of materials for hostile environment, adsorption and chemisorption processes, surfaces and interfaces, Phase equilibria and Phase transformation, statistical and nonequilibrium thermodynamics, capillary process and colloidal systems, Thermo dynamics of phenomena and processes at nanometer scale.
Basic Laws and terms , Fundamentals of thermodynamic parameters , Non equilibrium thermo dynamics
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Basic Laws and terms
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Fundamentals of thermodynamic parameters
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Heat capacities Intensive and extensive properties part 1
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Non equilibrium thermo dynamics
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Entropy
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Thermal and kinetic energies,
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Equation of states Thermodynamic considerations in intermolecular forces
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Molar volume properties part 1
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Molar volume properties part 2
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Heat capacities Intensive and extensive properties part 2
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Compute thermodynamic relations part 1
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Compute thermodynamic relations part 2
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Fluctuation and nano thermo- dynamics.
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Apply thermodynamics to defects,
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Phase equilibria, Phase diagram, and Phase Transitions in nano system
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Phase equilibria, Phase diagram, and Phase Transitions in nano system. part 2
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Brownian motion,
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Thermo-dynamic properties of colloidal system
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electron density Helmholtz free energy in thermodynamics
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Reflect differences from classical thermodynamics
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Gibbs free energy
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Self-assembly and thermo dynamics principles
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Nano manufacturing: self-assembly of micelles and block copolymers
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discussion and practicing for problem solving approach part 1
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discussion and practicing for problem solving approach part 2
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Book Title : Phase Transition in Materials by BRENT FULTZ, 2nd Edition,
Author : BRENT FULTZ
Edition : 2nd Edition,
Publisher : Cambridge University Press, 2001
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