i. K = exp[-TE₁ µi (T)] RT ii. K = x²xD 2 XAX iii. 0 = m₁h₁ + m₂h₂ − m3 +Q+W₂ iv. hu+ Pv xį are mole fractions in liquid. v. w— - § Pdv vi. h2 – h1 = Cp(T2 – Ti) vii. U2 viii. f₁(T,p,x₁) = x₁P u1 = Cp(T2 – Ti) ix. Y₁P = x;√;Pșat; y; is a gas-phase mole fraction and ï¿ is a liquid-phase mole fraction. i X. dpsat dT Ah² →v RT² psat

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For the following situations, state under what conditions the following equations would apply. Be as specific (but succinct) as possible.

 

i. K = exp[-TE₁ µi (T)]
RT
ii. K =
x²xD
2
XAX
iii. 0 = m₁h₁ + m₂h₂ − m3 +Q+W₂
iv. hu+ Pv
xį are mole fractions in liquid.
v. w—
- § Pdv
vi. h2 – h1 = Cp(T2 – Ti)
Transcribed Image Text:i. K = exp[-TE₁ µi (T)] RT ii. K = x²xD 2 XAX iii. 0 = m₁h₁ + m₂h₂ − m3 +Q+W₂ iv. hu+ Pv xį are mole fractions in liquid. v. w— - § Pdv vi. h2 – h1 = Cp(T2 – Ti)
vii. U2
viii. f₁(T,p,x₁) = x₁P
u1 = Cp(T2 – Ti)
ix. Y₁P = x;√;Pșat; y; is a gas-phase mole fraction and ï¿ is a liquid-phase mole fraction.
i
X.
dpsat
dT
Ah² →v
RT²
psat
Transcribed Image Text:vii. U2 viii. f₁(T,p,x₁) = x₁P u1 = Cp(T2 – Ti) ix. Y₁P = x;√;Pșat; y; is a gas-phase mole fraction and ï¿ is a liquid-phase mole fraction. i X. dpsat dT Ah² →v RT² psat
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