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Lecture
Glass Transition: Theory and Applications
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Polymer Solid State and Properties: Structure and Behavior
Explores the structure and behavior of polymers in the solid state, covering crystallinity, glass transition, and viscoelasticity.
Chemical Potential and Thermodynamic Functions in Mixtures
Covers chemical potential variations and thermodynamic functions in mixtures, emphasizing their implications in real and ideal gases.
Phase Transitions: Understanding Thermodynamic Stability
Explores phase transitions in thermodynamics, focusing on stability criteria and real-world applications.
Solid State Properties of Polymers
Explores the solid state properties of polymers, including microstructure, crystallization, tacticity, glass transition, and mechanical properties.
Thermodynamics: Real Gases and Phase Transitions
Discusses the thermodynamic behavior of real gases and phase transitions, including the Joule-Thomson effect and latent heat values.
Polymer Chain Architecture and Properties
Explores polymer chain architecture, properties, states, types, branching, length, configuration, isomerism, tacticity, polymerization, nomenclature, copolymers, molecular weight distribution, and thermal transitions.
Freely-Jointed-Chain Model
Explores the statistical properties of the Freely-Jointed-Chain model and the Worm-like Chain Model transition from discrete to continuum.
The Crystalline Phase: Polymers and Crystallization
Delves into the crystalline phase of polymers, emphasizing crystallization processes and structural influences on melting temperatures.
Thermodynamic Equilibria: Concepts and Calculations
Covers basic thermodynamic conventions, chemical potential, vapor pressure, and the relationship between chemical potential and pressure in gases.
Polymer Blends: Thermodynamics and Phase Diagrams
Explores the thermodynamics of polymer blends, phase diagrams, miscible blends, phase segregation, block copolymers, and applications in thermoplastic elastomers and nanotechnology.