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Explore energy, heat, and work to understand the principles governing engineering systems.
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Section 1: Fundamental Concepts and Definitions
Section 2: First Law of Thermodynamics
Section 3: Properties of Pure Substances
Section 4: Second Law of Thermodynamics
Section 5: Gas Power Cycles
Section 6: Vapor Power Cycles
Section 7: Refrigeration and Heat Pump Cycles
What you’ll achieve
Understand the laws of thermodynamics and energy conservation.
Analyse properties of substances and thermodynamic cycles.
Apply thermodynamic principles to engines, refrigeration, and power systems.
Solve real-world problems in mechanical, chemical, and aerospace engineering.
Develop critical thinking and problem-solving skills for energy system optimisation.

Course overview
Thermodynamics introduces the fundamental concepts of energy, heat transfer, and work in engineering applications. Students study the laws of thermodynamics, properties of pure substances, cycles, and processes in closed and open systems. The course emphasises problem-solving in mechanical, chemical, and aerospace engineering contexts, including engines, refrigeration, and power systems. By linking theoretical principles with practical applications, learners develop the ability to analyse, design, and optimise energy systems, providing essential skills for engineering and technological problem solving.
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