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Exergy Analysis: Concepts and Applications
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Related lectures (44)
Thermodynamics: System, Surface Actions, and Typology
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Covers thermodynamic systems, surface actions, and system typology with examples.
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Thermodynamics: Exploring Thermodynamic Potentials and Equilibrium States
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Entropy and the Second Law of Thermodynamics
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Thermodynamics: Adiabatic Transformations and Cyclic Processes
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Discusses adiabatic transformations, cyclic processes, and the efficiency of thermodynamic cycles in ideal gases.
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.
Thermodynamics Basics
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Introduces the fundamental concepts of thermodynamics, including energy conservation, system definitions, and different forms of work.
Thermodynamic Systems: Basics
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Covers the basics of thermodynamic systems, energy transfer, state functions, forms of work, and energy conservation.
Thermodynamic Functions and Calorimetric Coefficients
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Discusses thermodynamic functions, calorimetric coefficients, and their relationships in physical systems.
Energy Conservation and Thermodynamic Cycles
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Explores energy conservation in closed systems and the significance of thermodynamic cycles, emphasizing performance and efficiency.
Thermodynamic Functions and Equilibria: Mathematical Tools
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Discusses thermodynamic functions, their mathematical tools, and key relationships between state variables in thermodynamics.
Thermodynamic Transformations: Heat and Work Principles
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Explains thermodynamic transformations, focusing on heat, work, and energy principles.
Thermodynamics: Basics and Power Cycles
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Explores thermodynamic basics, power cycles, and renewable energy applications.
Exergy and Thermodynamics
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Explores exergy, entropy, and thermodynamic efficiencies in closed and open systems.
Geothermal Energy Systems: Principles and Applications
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Provides an overview of geothermal energy systems, covering thermodynamic principles, heat pump technologies, and the classification of geothermal reservoirs.
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.
Second Principle: Thermodynamic Systems and Entropy Analysis
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Covers the second principle of thermodynamics, focusing on entropy and reversible processes in thermodynamic systems.
Thermodynamics: Second Principle and Engine Efficiency
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Explains the second principle of thermodynamics and its impact on engine efficiency.
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