Thermodynamics

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Across
  1. 2. A gas that is simple to work with
  2. 3. Eqn llows relation of enthalpy with pressure and temp
  3. 6. Chemical value which is the partial molar energy
  4. 8. According to Panagio. Thermodynamics is this
  5. 9. One of the two greatest TAs ever
  6. 11. At equilibrium, this energy is minimized
  7. 13. The best thermodynamics professor
  8. 15. The amount of heat required to increase temp by 1 degree
  9. 17. Man who related ideal vapor and liquid pressures
  10. 18. Transformation that makes Thermo calculus possible
  11. 20. A mixture which has a point of no further simple distillation
  12. 21. Building for the best thermodynamics class
  13. 22. Point at which no phase boundaries exist.
  14. 25. A system whose entropy never decreases
  15. 31. A system which all properties are uniform
  16. 32. Quantity whose origin names from lation word meaning to flee
  17. 34. more practical cycle than the Carnot
Down
  1. 1. Equation of state with many coefficients
  2. 3. Factor that allows calculation with non-ideal gas
  3. 4. Man who discovered that total pressure is sum of partial pressures
  4. 5. Equation of state
  5. 7. Systems at a local minimum have this equilibrium
  6. 9. Expression for mixtures which have small deviations from ideality
  7. 10. One of the two greatest TAs ever
  8. 12. Point at which the first trace of gas appears
  9. 14. Pressure required to counter tendency of solvent to move from high to low conc.
  10. 16. Thermodynamically isolated
  11. 19. Man who discovered law between partial pressure and molar fractions
  12. 20. Coefficient that deals with derivations from ideal behavior
  13. 23. Eqn to find saturation pressure
  14. 24. form of Gibbs free energy which contains two constants
  15. 26. Quantity that is unavailable for mechanical work.
  16. 27. Ideal heat cycle
  17. 28. Point at which the first drop of liquid appears
  18. 29. Device that converts flow into energy
  19. 30. Rule that allows easy manipulation between thermo values
  20. 33. Point at which three phases are at equilibrium