OWLv2 for Moore/Stanitski's Chemistry: The Molecular Science, 5th Edition, [Instant Access], 1 term (6 months)
OWLv2 for Moore/Stanitski's Chemistry: The Molecular Science, 5th Edition, [Instant Access], 1 term (6 months)
5th Edition
ISBN: 9781285460420
Author: John W. Moore; Conrad L. Stanitski
Publisher: Cengage Learning US
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Chapter 8, Problem 118QRT

(a)

Interpretation Introduction

Interpretation:

PCl5 decomposition whether takes place has to be determined using calculation.

Concept Introduction:

Molar mass can be determined using the given equation,

  nMassMolar mass

Ideal gas Equation:

Any gas is described by using four terms namely pressure, volume, temperature and the amount of gas. Thus combining three laws namely Boyle’s, Charles’s Law and Avogadro’s Hypothesis the following equation could be obtained. It is referred as ideal gas equation.

  PV = nRT

Here,

  n is the moles of gas

    P is the Pressure

  V is the Volume

    T is the Temperature

    R is the gas constant

(a)

Expert Solution
Check Mark

Explanation of Solution

Number of moles of PCl5 before vaporization is calculated as given below,

  n = MassMolar mass= 2.69 g208.22 g/mol= 0.0129 mol

Number of moles present after vaporization is calculated using Ideal Gas Lew as given below,

  T = 250°C = (250+273)K= 523 KPV = nRT(1.0 atm)(1.0 L)= n(0.0821 L.atm.mol1.K1)(523 K)n = (1.0 atm)(1.0 L)(0.0821 L.atm.mol1.K1)(523 K)= 0.0233 mol

Number of moles before and after vaporization are not equal. Hence, decomposition of PCl5 takes place.

(b)

Interpretation Introduction

Interpretation:

Partial pressure of each of the gaseous compound has to be calculated.

Concept Introduction:

Mole fraction: Quantity which defines the number of moles of a substance in a mixture divided by the total number of moles of all substances present.

xa=nantotal

Partial pressure of a gas in the mixture of gases is the product of mole fraction of the gas and the total pressure.

  pa=xa×Ptotal

(b)

Expert Solution
Check Mark

Answer to Problem 118QRT

Partial pressure of each of the gaseous compound is given below,

  pPCl5= 0.11 atmpPCl3= 0.446 atmpCl2 = 0.446 atm

Explanation of Solution

Total number of moles is 0.0233 mol.

Initial number of moles of PCl5 is 0.0129 mol.

Change in number of moles of reactants and products can be determined as given below,

             PCl5  PCl3  +     Cl2Initial moles0.0129     0           0     Change in nx+x+xFinal moles(0.0129x)xx

According to Dalton’s law, the total pressure exerted by each gas in a mixture is equal to the sum of the individual partial pressure of the gases.

  Ptotal = pPCl5 + pPCl3 +  pCl2(0.0233 mol)= (0.0129 molx)+x+xx = 0.0104 mol = pPCl3 =  pCl2pPCl5 = (0.0129 molx)=(0.0129 mol0.0104)= 2.5×103 mol

Mole fraction of each of the gaseous compound is calculated as follows,

  Xa=nantotalXPCl3=0.0104 mol0.0233 mol= 0.446XPCl3XCl2= 0.446XPCl5=2.5×103 mol0.0233 mol= 0.11

Partial pressure of each of the gaseous compound is determined as follows,

  pa=Xa×PtotalpPCl5XPCl5×Ptotal= 0.11×1.00 atm = 0.11 atmpPCl3XPCl3×Ptotal= 0.446×1.00 atm = 0.446 atmpCl2XCl2×Ptotal= 0.446×1.00 atm = 0.446 atm

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Chapter 8 Solutions

OWLv2 for Moore/Stanitski's Chemistry: The Molecular Science, 5th Edition, [Instant Access], 1 term (6 months)

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