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Quantum Transport in Thermal Machines
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Related lectures (45)
Calorimetric Coefficients
MOOC: Thermodynamics I
Covers the definitions and relationships between calorimetric coefficients in perfect gases.
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Thermodynamics: Heat - Work
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Heat Transfer Fundamentals
Covers the basics of heat transfer, including conduction, convection, and radiation, and explores the principles of thermodynamics.
Specific Heat of Water
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Covers the specific heat of water, thermodynamics, and the Dulong-Petit law.
Heat Pumps: Phase Changes
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Thermodynamics of Simple Subsystems: Heat and Matter Transfer
Explores the thermodynamics of simple subsystems, focusing on heat and matter transfer principles and their irreversible processes.
Thermodynamic Processes
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Explores thermal physics concepts like heat transfer and diffusion in simple systems.
Thermodynamic Identities
Explores thermodynamic identities, entropy changes, and thermal machine efficiencies, including Carnot and Otto cycles, heat pumps, and heating methods.
Entropy and the Second Law of Thermodynamics
Discusses entropy and the second law of thermodynamics, focusing on reversible processes and their implications in thermodynamic systems.
Thermodynamics: Identifying Thermal Identity
Covers the organization of the course, measuring entropy practically, and the relationship between entropy and energy distribution.
Thermodynamics: Energy Transformation
Covers energy transformation in thermodynamics, discussing laws, entropy, and spontaneity criteria for reactions.
Thermodynamics: Energy Conversion and System Analysis
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Covers the basics of thermodynamics, focusing on energy conversion systems and the principles governing heat to work conversion.
Untitled
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Introduction to Heat Transfer
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Covers the fundamentals of heat transfer, including conduction, convection, and radiation, emphasizing the importance of transport laws.
Thermodynamics and Energetics I
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Explores fundamental thermodynamics concepts, laws, energy transfer, and system analysis.
Entropy and the Second Law of Thermodynamics
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Covers entropy, its definition, and its implications in thermodynamics.
Thermodynamics: Adiabatic Transformations and Cyclic Processes
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Discusses adiabatic transformations, cyclic processes, and the efficiency of thermodynamic cycles in ideal gases.
Generating Mechanical Work with Thermodynamic Cycles
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Explores generating mechanical work with thermodynamic cycles, including the Carnot and Stirling cycles, and the conversion of work into heat.
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