Rowanwilson731
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7 - Introduction to Heat Transfer
Outlines the different modes of heat transfer and the maths governing these. Applies Fourier's law and goes into thermal resistance.
- Package deal
- Class notes
- • 8 pages •
Outlines the different modes of heat transfer and the maths governing these. Applies Fourier's law and goes into thermal resistance.
6 - Open Systems
Details open systems, specifically the conservation of mass, the steady flow energy equation, specific flow work, specific enthalpy, and perfect gases in open systems.
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- Class notes
- • 4 pages •
Details open systems, specifically the conservation of mass, the steady flow energy equation, specific flow work, specific enthalpy, and perfect gases in open systems.
5 - Perfect Gasses
Explains perfect gases and the mathematical basis for them, then details polytropic and isentropic processes as well as how perfect gases relate to them.
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- Class notes
- • 3 pages •
Explains perfect gases and the mathematical basis for them, then details polytropic and isentropic processes as well as how perfect gases relate to them.
4 - Energy Quality and Entropy
Bit more information on the 2nd law of thermodynamics, then goes into more depth on entropy, particularly energy quality and disorder. Details a Sterling Engine and then goes into a Mathematical analysis of entropy and then goes into heat pumps and refrigerators.
- Package deal
- Class notes
- • 5 pages •
Bit more information on the 2nd law of thermodynamics, then goes into more depth on entropy, particularly energy quality and disorder. Details a Sterling Engine and then goes into a Mathematical analysis of entropy and then goes into heat pumps and refrigerators.
3 - Heat Engines and the Second Law of Thermodynamics
Explains the concept and the mathematical basis of the 2nd law of thermodynamics, as well as how it relates to the 1st law. Explains how heat engines operate, as well as detailing the Brayton/Joule cycle. Outlines thermal efficiency and Carnot efficiency, as well as going into more detail on reversible and irreversible processes.
- Package deal
- Class notes
- • 4 pages •
Explains the concept and the mathematical basis of the 2nd law of thermodynamics, as well as how it relates to the 1st law. Explains how heat engines operate, as well as detailing the Brayton/Joule cycle. Outlines thermal efficiency and Carnot efficiency, as well as going into more detail on reversible and irreversible processes.
2 - First Law, Enthalpy and Specific Heat
Details the first law of thermodynamics, defines and explains work, goes further into depth with cycles, and explains internal energy. Also outlines the corollaries of the first law, goes further into depth with systems, and explains specific heat.
- Package deal
- Class notes
- • 3 pages •
Details the first law of thermodynamics, defines and explains work, goes further into depth with cycles, and explains internal energy. Also outlines the corollaries of the first law, goes further into depth with systems, and explains specific heat.
1 - Systems, Properties and Processes
Introduction to the basics of thermodynamics. Details different thermodynamic properties, as well as the different types of processes and how to draw process diagrams.
- Package deal
- Class notes
- • 2 pages •
Introduction to the basics of thermodynamics. Details different thermodynamic properties, as well as the different types of processes and how to draw process diagrams.