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Lecture
Thermophysical Properties: Models and Applications
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Related lectures (46)
Thermal Energy and Degrees of Freedom
Explores energy equipartition in ideal gases, heat capacity, and thermodynamic transformations.
Path Integral Methods: Efficient Energy Estimators
Covers advanced path integral methods for deriving efficient energy estimators in molecular dynamics simulations.
Path Integral Methods: Convergence and Computational Techniques
Covers path integral methods, focusing on convergence and computational techniques for quantum systems.
Calorimetry: Properties of Ideal Gases
Provides an overview of calorimetry and the thermodynamic properties of ideal gases, including their state equations and heat capacities.
Thermodynamics: Energy Transformation
Covers energy transformation in thermodynamics, discussing laws, entropy, and spontaneity criteria for reactions.
Calorimetry: Principles and Applications in Thermodynamics
Discusses calorimetry principles, including heat transfer, calorimetric coefficients, and their applications in thermodynamics.
Calorimetry: Principles and Applications
Provides an overview of calorimetry, covering key principles, coefficients, and applications in thermodynamics.
Thermodynamics in Cell Biology
Explores the role of thermodynamics in cell biology, focusing on the connection between thermodynamics and cellular processes.
Thermodynamic Transformations and Entropy
Explores thermodynamic transformations of ideal gases, heat capacity, entropy, and adiabatic processes.
Protein Folding: Principles and Thermodynamics
Explores protein folding principles, thermodynamics, Boltzmann distribution, and NMR structures in biomolecules.
Calorimetric Coefficients: Ideal Gas
MOOC: Thermodynamics I
Explores calorimetric coefficients for ideal gases, focusing on specific heat capacities and their relationships.
Specific Heat of Water
MOOC: Thermodynamics I
Covers the specific heat of water, thermodynamics, and the Dulong-Petit law.
Chemical Equilibria and Reactivity
Covers the concepts of energy types, entropy, second principle, and Gibbs free energy.
Chemistry: Atomic Structure and Thermodynamics
Covers atomic structure, thermodynamics, material properties, and ideal gas law.
First Principle of Thermodynamics
Explains the conservation of energy in thermodynamic systems during heat and work exchange processes.
Protein Folding: Thermodynamic Insights
Delves into the energetic determinants of protein folding, equilibrium constants, and thermodynamic properties of proteins, emphasizing enthalpy, entropy, and heat capacity.
Heat Capacity and Degrees of Freedom in Thermodynamics
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Covers heat capacity, degrees of freedom, and their implications in thermodynamics.
Thermodynamics: Heat Capacity of Ideal and Van der Waals Gases
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Discusses the heat capacity of ideal gases and solids, and the Van der Waals equation's implications for real gases.
Entropy and the Second Law of Thermodynamics
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Covers entropy, its definition, and its implications in thermodynamics.
States of Matter: Compressibility and Thermal Expansion
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Explores compressibility, thermal expansion, and specific heat capacity of materials.
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