| Hint | Risposta | % Corretto |
|---|---|---|
| Vtot = ∑Vi | Amagat | 100%
|
| log₁₀P⁰ = A-B/(C-T) | Antoine | 100%
|
| log₁₀P⁰ = A-B/T | August | 100%
|
| S = KlnW | Boltzmann | 100%
|
| Ptot = ∑Pi | Dalton | 100%
|
| ∑n₁dm₁ = 0 | Gibbs & Duhem | 100%
|
| P₁ = Hχ₁ | Henry | 100%
|
| ΔH⁰ = ∑v₁ΔH⁰(formazione) | Hesse | 100%
|
| ΔH(T) = ΔH⁰ + ∫ΔCp dt | Kirchhoff | 100%
|
| P = RT/(V-b) - aα/(V^2+2bU-b^2) | Peng & Robinson | 100%
|
| PV = zRT con z = z(Tr, Pr, ω) | Pitzer | 100%
|
| P₁ = χ₁P₁⁰(saturazione) | Raoult | 100%
|
| P = RT/(V-b) - a/(√TV(V+b) | Redlich & Kwong | 100%
|
| P = RT/(V-b) - aα/[V(V+b)] | Soave | 100%
|
| PV = zRT con z = z(Tr, Pr) | Van der Waals | 100%
|
| P = RT/(V-b) - a/V^2 | Van der Waals | 100%
|
| ln(K₂/K₁) = -ΔH⁰/R * (1/T₂ - 1/T₁) | Van't Hoff | 100%
|
| λ₂/λ₁ = [(1 - Tr₂)/(1 - Tr₁)]^0.38 | Watson | 100%
|
| ∮đQ/T ≤ 0 | Clausius | 0%
|
| dP/dT = λ¹⁻²/(ΔTv¹⁻²) | Clausius Clapeyron | 0%
|
| f = y₁f₁ | Lewis & Randall | 0%
|