Thermodynamics II

Thermodynamics II

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Thermodynamics: Course overview, Review of thermodynamics fundamentals (26 of 51)

1 of 27

1 of 27

Thermodynamics: Course overview, Review of thermodynamics fundamentals (26 of 51)

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Thermodynamics II

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  1. 1 Thermodynamics: Course overview, Review of thermodynamics fundamentals (26 of 51)
  2. 2 Thermodynamics: Review of fundamentals, variable specific heats, isentropic efficiency (27 of 51)
  3. 3 Thermodynamics: Review of thermodynamic cycles, Gas power cycles, Otto Cycle (28 of 51)
  4. 4 Thermodynamics: Otto cycle, Diesel cycle (29 of 51)
  5. 5 Thermodynamics: Diesel cycle (30 of 51)
  6. 6 Thermodynamics: Stirling and Ericsson cycles, Ideal and non-ideal simple Brayton cycle (31 of 51)
  7. 7 Thermodynamics : Brayton cycle with regeneration, Brayton cycle with intercooling (32 of 51)
  8. 8 Thermodynamics: Brayton cycle with intercooling and reheating, Ideal simple Rankine cycle (33 of 51)
  9. 9 Thermodynamics : Ideal and non-ideal Rankine cycle, Rankine cycle with reheating (34 of 51)
  10. 10 Thermodynamics : Rankine cycle with reheating, Feedwater heaters (35 of 51)
  11. 11 Thermodynamics: Rankine cycle with open feedwater heater, Closed feedwater heater (36 of 51)
  12. 12 Thermodynamics: Closed feedwater heaters, Vapor-compression refrigeration cycle (37 of 51)
  13. 13 Thermodynamics: Non-ideal vapor-compression cycle, absorption refrigeration cycle (38 of 51)
  14. 14 Thermodynamics: Review of midterm exam, Maxwell relations (39 of 51)
  15. 15 Thermodynamics: Clapeyron equation, Various thermodynamic property relationships (40 of 51)
  16. 16 Thermodynamics: Other thermodynamic property relationships, Ideal gases (41 of 51)
  17. 17 Thermodynamics: Overview of ideal gas mixtures, Amagat's and Dalton's laws (42 of 51)
  18. 18 Thermodynamics: Properties of ideal gas mixtures, Dry air/water vapor mixtures (43 of 51)
  19. 19 Thermodynamics: Humidity, Enthalpy of air/water vapor mixtures, Dew point (44 of 51)
  20. 20 Thermodynamics: Dew point, Adiabatic saturation, Psychrometer (45 of 51)
  21. 21 Thermodynamics: Psychrometric chart, Air conditioning processes (46 of 51)
  22. 22 Thermodynamics: Midterm review, Heating with humidification, Dehumidification by cooling (47 of 51)
  23. 23 Thermodynamics: Dehumidification by cooling, Evaporative cooling, Cooling towers (48 of 51)
  24. 24 Thermodynamics: Wet cooling towers, Stoichiometric combustion (49 of 51)
  25. 25 Thermodynamics: Combustion with excess air, dew point of combustion products (50 of 51)
  26. 26 Thermodynamics: Combustion with excess air review, Course review (51 of 51)
  27. 27 Thermodynamics: Interview with Professor David Miller

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