| Item | Key Features | Notes / Differences |
|---|---|---|
| Ideal Gas | pV = nRT; no interactions | Simplified model, accurate at low P, T |
| Van der Waals Gas | (p + a(n/V)^2)(V - nb) = nRT | Accounts for molecular interactions |
| Reversible Process | No entropy production; idealized | Maximum work obtainable |
| Irreversible Process | Entropy increases; real processes | Less work, more entropy production |
| Isothermal | Constant T; work = -nRT ln(Vf/Vi) | ΔU = 0 |
| Adiabatic | No heat transfer; pV^γ = constant | T ∝ V^(γ-1) |
| Isobaric | Constant pressure; work = -p(Vf - Vi) | ΔH = Qp |
| Isochoric | Constant volume; no work, heat changes U or H | ΔU = Qv |
Thermodynamic System
├─ System Types
│ ├─ Closed
│ ├─ Open
│ └─ Isolated
├─ Equilibrium Conditions
│ ├─ Mechanical (p uniform)
│ └─ Thermal (T uniform)
├─ State Variables
│ ├─ Extensive: U, V
│ └─ Intensive: p, T
├─ Processes & Transformations
│ ├─ Quasi-static
│ ├─ Reversible
│ ├─ Adiabatic
│ ├─ Isothermal
│ └─ Isobaric / Isochoric
└─ Phase Diagram & Transitions
End of Revision Sheet
Testez vos connaissances sur Thermodynamics of Equilibrium Systems avec 10 questions à choix multiples avec corrections détaillées.
1. What is the primary difference between a closed and an open thermodynamic system?
2. Which of the following describes an open system in thermodynamics?
Mémorisez les concepts clés de Thermodynamics of Equilibrium Systems avec 10 flashcards interactives.
Systems — types?
Open, closed, and isolated.
System types — examples?
Closed, open, isolated.
Equilibrium — conditions?
Uniform pressure and temperature.
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