Saturaded Water Vapor Mixture
Compressed Liquid
SuperHeated Vapor
Property Diagrams
T-v (Temperature-Specific Volume) Diagrams
Property Tables
00:00 Pure Substances
00:39 Piston-Cylinder Under Heat
01:43 Compressed, Saturated, SuperHeated
01:52 Property Diagrams
02:03 Temperature-Specific Volume Diagram
02:54 Saturation Temperature & Saturation Pressure
03:31 High Altitude Example
04:27 Different Pressures on the T-v Diagram
04:57 T-v Diagram Regions
05:30 Property Tables
07:19 Interpolation and Discussion
08:37 Property Subscripts
09:16 What Table to Use?!
09:28 Example - Finding vf and vg
11:42 Example - For Knowing What Table to Use
Example 1: • Thermodynamics Water TABLES: Saturate...
Example 2: • Thermodynamics Water TABLES: Superhea...
Example 3: • Thermodynamics TABLES: Compressed Liq...
Previous Lecture:
5. Efficiency in Thermodynamic Systems: • EFFICIENCY of Thermodynamic Systems i...
Next Lecture:
7. Interpolating and Quality Derivation: • INTERPOLATION for Thermodynamics and ...
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Other Thermodynamics Lectures:
1. Thermodynamics Intro and Units Review: • THERMODYNAMICS Basic Units and Pressu...
2. Zeroth Law of Thermodynamics: • ZEROTH LAW of Thermodynamics & Temper...
3. Closed vs. Open Systems & Intensive vs. Extensive Properties: • CONTROL VOLUMES - Closed vs. Open - E...
4. First Law and Energy Types: • Energy Conservation Equation & FIRST ...
5. Efficiency in Thermodynamic Systems: • EFFICIENCY of Thermodynamic Systems i...
6. Five Regions of T-v Diagrams: • T-v Diagrams and PROPERTY TABLES for ...
7. Interpolating and Quality Derivation: • INTERPOLATION for Thermodynamics and ...
8. Enthalpy and Internal Energy: • ENTHALPY and INTERNAL ENERGY in 12 Mi...
9. Compressed Liquid Properties: • Thermodynamics COMPRESSED Liquid Prop...
10. Ideal Gas and Compressibility Factor: • Ideal Gas Equation and COMPRESSIBILIT...
11. Specific Heats: • Thermodynamics SPECIFIC HEATS - cv & ...
12. Specific Heat Relationships of Ideal Gases and Incompressible Substances: • Specific Heat and Energy Changes for ...
13. Polytropic Process Work: • Work Expressions for POLYTROPIC Proce...
14. Mass and Volumetric Flow Rate: • Volumetric and MASS FLOW RATES for Th...
15. Flow Work and Energy Conservation in Open Systems: • FLOW WORK & Energy Conservation in Op...
16. Pipe Flow, Nozzles, Diffusers, and Throttling Devices: • Pipe Flow, Nozzles, Diffusers, and Th...
17. Turbines, Compressors, and Pumps: • Thermodynamics - Turbines, Compressor...
18. Mixing Chambers and Heat Exchangers: • Heat Exchangers and Mixing Chambers -...
19. Transient Systems:
20. Second Law Intro and Power Cycles: • 2nd Law Intro and POWER CYCLES in 10 ...
21. Refrigerators and Heat Pumps: • REFRIGERATION and Heat Pump Cycles in...
22. Carnot Cycles and Reversible Processes: • Reversible Processes and CARNOT CYCLE...
23. Entropy as a Thermodynamic Property: • Thermodynamics - ENTROPY as a Propert...
24. Reference Entropy and Specific Heats: • REFERENCE ENTROPY and Specific Heats ...
25. Isentropic Efficiency: • Turbines, Compressors, and Pumps - IS...
26. Brayton Cycle: • Ideal BRAYTON CYCLE Explained in 11 M...
27. Intercooling, Reheating, and Regenerators: • Regeneration, Intercooling, and Rehea...
28. Otto Cycle:
29. Standard Diesel Cycle:
30. Rankine Cycle:
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Other Engineering Courses (Playlists):
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Statics: • Statics: Engineering Mechanics
Mechanics of Materials: • Mechanics of Materials
Machine Design: • Mechanical Engineering Design I
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Fluid Mechanics: • Fluid Mechanics
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