(a)
Interpretation:
Derive an expression of a and b.
Concept introduction:
Raoult’s law equation is given as,
Where, P = the pressure of the system, y = mole fraction in vapor, x = mole fraction in liquid and
(b)
Interpretation:
Calculate the mole fraction of pentane in the vapor phase for the given case and estimate a and b.
Concept introduction:
Raoult’s law equation is given as,
Where, P = the pressure of the system, y = mole fraction in vapor, x = mole fraction in liquid and
(c)
Interpretation:
Prove the given equation is valid using the materials balances.
Concept introduction:
Raoult’s law equation is given as,
Where, P = the pressure of the system, y = mole fraction in vapor, x = mole fraction in liquid and
(d)
Interpretation:
Derive the given expression.
Concept introduction:
Raoult’s law equation is given as,
Where, P = the pressure of the system, y = mole fraction in vapor, x = mole fraction in liquid and
(e)
Interpretation:
Calculate x, y, NL and nv. On a single graph plot x and y versus t for calculated Q values.
Concept introduction:
Raoult’s law equation is given as,
Where, P = the pressure of the system, y = mole fraction in vapor, x = mole fraction in liquid and
(f)
Interpretation:
Explain about the composition of the vapor and residual liquid, how the heating rate affects the system behavior.
Concept introduction:
Raoult’s law equation is given as,
Where, P = the pressure of the system, y = mole fraction in vapor, x = mole fraction in liquid and
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