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States of Matter: Ideal vs. Real Gases
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Related lectures (31)
Thermodynamic Coefficients: Applications
MOOC: Thermodynamics I
Explores the practical applications of calorimetric coefficients in thermodynamics, including specific calculations for perfect gases.
Chemistry: Atomic Structure and Thermodynamics
Covers atomic structure, thermodynamics, material properties, and ideal gas law.
Thermodynamics in Cell Biology
Explores the role of thermodynamics in cell biology, focusing on the connection between thermodynamics and cellular processes.
Atomic Model & Ideal Gas
Explores the atomic model, ideal gas kinetics, and thermal energy in systems.
Calorimetric Coefficients: Ideal Gas
MOOC: Thermodynamics I
Explores calorimetric coefficients for ideal gases, focusing on specific heat capacities and their relationships.
Thermal Energy and Degrees of Freedom
Explores energy equipartition in ideal gases, heat capacity, and thermodynamic transformations.
Thermodynamics: Enthalpy and Energy Transformations
Explores thermodynamics, state functions, internal energy, and enthalpy, emphasizing energy conservation and heat exchange in various systems.
Vapor-Liquid Phase Diagrams: Engineering Applications
Covers vapor-liquid phase diagrams and their applications in molecular separation processes, focusing on equilibrium, graphical methods, and the use of flash drums.
Thermodynamics: Energy Transformations
Covers the basics of thermodynamics, focusing on energy transformations within a system and the conservation of energy.
Heat Transfer Fundamentals
Covers the basics of heat transfer, including conduction, convection, and radiation, and explores the principles of thermodynamics.
Specific Heat of Water
MOOC: Thermodynamics I
Covers the specific heat of water, thermodynamics, and the Dulong-Petit law.
Thermal Expansion, First Law of Thermodynamics, States of Matter
Covers thermal expansion, first law of thermodynamics, and states of matter.
Thermodynamics and Energetics I
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Explores fundamental thermodynamics concepts, laws, energy transfer, and system analysis.
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.
Chemical Potential and Thermodynamic Functions in Mixtures
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Covers chemical potential variations and thermodynamic functions in mixtures, emphasizing their implications in real and ideal gases.
Thermodynamics: Entropy and Ideal Gases
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Explores entropy, ideal gases, and TDS equations in thermodynamics, emphasizing the importance of the Clausius inequality and the Carnot cycle.
Special Relativity and Thermodynamics
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Introduces special relativity, covering time dilation, mass-energy equivalence, and thermodynamics, including ideal gas laws and phase transitions.
Entropy and the Second Law of Thermodynamics
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Covers entropy, its definition, and its implications in thermodynamics.
Relativity and Thermodynamics: Key Concepts Explained
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Covers key concepts in relativity and thermodynamics, including time dilation, length contraction, and the principles of heat engines.
Thermodynamics: Understanding Mixtures and Distillation Processes
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Explains thermodynamic principles of mixtures, focusing on distillation and phase behavior of real gases and liquids.
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