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Lecture
Thermodynamic Systems
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Related lectures (30)
Thermodynamic Systems: First Principle and Energy Conservation
Discusses thermodynamic systems, the first principle of thermodynamics, and energy conservation in various contexts.
Thermodynamic Systems: First Principle and Applications
Covers thermodynamic systems, the first principle, and their applications in physics.
Thermodynamics: System, Surface Actions, and Typology
MOOC: Thermodynamics II
Covers thermodynamic systems, surface actions, and system typology with examples.
Thermodynamic Equations: Constitutive Equations and Properties Calculation
Explores the importance of constitutive equations in calculating thermodynamic properties.
Constitutive Equations: Thermodynamic State Modeling
Explains the modeling of thermodynamic states using constitutive equations to represent molecular properties and interactions in energy systems.
Optimisation in Energy Systems
Explores optimization in energy system modeling, covering decision variables, objective functions, and different strategies with their pros and cons.
Interpreting Sorption
MOOC: Sorption and transport in cementitious materials
Explores the interpretation of sorption in cementitious materials and its modeling approaches.
Thermodynamics: Exploring Thermodynamic Potentials and Equilibrium States
Covers thermodynamic potentials and their role in system equilibrium with reservoirs.
Entropy: Heat and Processes
Explores entropy, heat transfer, friction, and mechanical power conversion in various systems.
Thermodynamic Equations and Diagrams
MOOC: Thermodynamics II
Explains the thermodynamic state of a system, equilibrium, equations of state, and state diagrams.
Heat Transfer Analysis in Process Units
Explores heat transfer analysis in process units, emphasizing the importance of balancing mass and energy for optimizing energy efficiency.
Thermodynamics: Entropy and the Second Principle
Provides an overview of thermodynamics, focusing on entropy and the second principle, with practical examples and applications.
Thermodynamic Properties: Equations and Models
Explains thermodynamic properties, equations of state, and mixture rules for energy systems modeling.
Thermodynamic Identity: Entropy and Energy
Explores the thermodynamic identity, entropy-temperature relationship, and pressure definition, illustrating key principles with practical examples.
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 Functions and Calorimetric Coefficients
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Discusses thermodynamic functions, calorimetric coefficients, and their relationships in physical systems.
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.
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.
Thermodynamic Properties of Ideal Gases
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Covers the thermodynamic properties of ideal gases, including equilibrium distance, repulsive force, and kinetic energy.
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