EBK FOUNDATIONS OF COLLEGE CHEMISTRY
EBK FOUNDATIONS OF COLLEGE CHEMISTRY
15th Edition
ISBN: 9781118930144
Author: Willard
Publisher: JOHN WILEY+SONS INC.
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Chapter 9, Problem 3RQ

(a)

Interpretation Introduction

Interpretation:

The statement that one mole of Ca3P2 produces 2 mole of PH3 is correct or incorrect have to be given.

(a)

Expert Solution
Check Mark

Answer to Problem 3RQ

The statement is correct.

Explanation of Solution

The given balanced equation is,

  Ca3P2+6H2O3Ca(OH)2+2PH3

In the mole ratio, the coefficients of the balanced equation are used.  Therefore the mole ratio is (2molPH31molCa3P2).

The number of moles of phosphine can be calculated as,

  (1molCa3P2)(2molPH31molCa3P2)=2molPH3

The statement that one mole of Ca3P2 produces 2 mole of PH3 is correct statement.

(b)

Interpretation Introduction

Interpretation:

The statement that one gram of Ca3P2 produces 2 gram of PH3 is correct or incorrect has to be given.

(b)

Expert Solution
Check Mark

Answer to Problem 3RQ

The statement is incorrect.

Explanation of Solution

Given,

The mass of Ca3P2 is 1g.

The mass of phosphine is 2g.

The molecular weight of phosphine is 33.99g/mol.

The molecular weight of Ca3P2 is 182.2g/mol.

The given balanced equation is,

  Ca3P2+6H2O3Ca(OH)2+2PH3

In the mole ratio, the coefficients of the balanced equation are used.  Therefore the mole ratio is (2molPH31molCa3P2).

The number of grams of phosphine can be calculated as,

  1gCa3P2(1mol182.2g)(2molPH31molCa3P2)(33.99g1mol)=0.373PH3

The statement one gram of Ca3P2 produces 2 gram of PH3 is an incorrect statement.

(c)

Interpretation Introduction

Interpretation:

The statement that three moles of Ca(OH)2 produced for each 2 mole of PH3 is correct or incorrect has to be given.

(c)

Expert Solution
Check Mark

Answer to Problem 3RQ

The statement is correct.

Explanation of Solution

The given balanced equation is,

  Ca3P2+6H2O3Ca(OH)2+2PH3

In the mole ratio, the coefficients of the balanced equation are used.  Therefore the mole ratio is (3molCa3P22molPH3).

The statement that three moles of Ca(OH)2 produced for each 2 mole of PH3 is correct statement.

(d)

Interpretation Introduction

Interpretation:

The statement that the mole ratio between phosphine and calcium phosphide is (2molPH31molCa3P2) correct or incorrect has to be given.

(d)

Expert Solution
Check Mark

Answer to Problem 3RQ

The statement is correct.

Explanation of Solution

The given balanced equation is,

  Ca3P2+6H2O3Ca(OH)2+2PH3

In the mole ratio, the coefficients of the balanced equation are used.  Therefore the mole ratio is (2molPH31molCa3P2).

The statement is correct statement.

(e)

Interpretation Introduction

Interpretation:

The statement 2mol of Ca3P2 and 3mol of H2O reacts to form 4mol of phosphine is correct or incorrect has to be given.

(e)

Expert Solution
Check Mark

Answer to Problem 3RQ

The statement is incorrect.

Explanation of Solution

The given balanced equation is,

  Ca3P2+6H2O3Ca(OH)2+2PH3

In the mole ratio, the coefficients of the balanced equation are used.  Therefore the mole ratio is (2molPH36mol H2O).

The number of moles of phosphine produced from water can be calculated as,

  3mol H2O(2molPH36mol H2O)=1mol PH3

2mol Of Ca3P2 will reacts with 3mol of H2O to produce 1mol of PH3.  The statement is incorrect.

(f)

Interpretation Introduction

Interpretation:

The statement 2mol of Ca3P2 and 15mol of H2O reacts to form 6mol of Ca(OH)2 is correct or incorrect has to be given.

(f)

Expert Solution
Check Mark

Answer to Problem 3RQ

The statement is correct.

Explanation of Solution

The given balanced equation is,

  Ca3P2+6H2O3Ca(OH)2+2PH3

In the mole ratio, the coefficients of the balanced equation are used.  Therefore the mole ratio is (3mol Ca(OH)21molCa3P2).

The number of moles of Ca(OH)2 produced from Ca3P2 can be calculated as,

  2molCa3P2(3mol Ca(OH)21molCa3P2)=6molCa(OH)2

2mol Of Ca3P2 will reacts with 12mol of H2O (3 moles in excess) to produce 6mol of Ca(OH)2.  The statement is correct.

(g)

Interpretation Introduction

Interpretation:

The possibility of limiting agent being Ca3P2 when 200.0gCa3P2 and 100gH2O is reacted has to be given.

Concept Introduction:

The limiting reactant of the reaction is the reactant that is completely used during the reaction.  Using the mole ratio and starting amounts of the reactants limiting reactant can be determined.

Example:

Consider a reaction starts with 30g CaCO3&11gHCl.  The values in grams has to be converted to moles by dividing with their molecular weights.  According to the mole ratio 0.3g of calcium carbonate require 0.6g of HCl completely.  Therefore HCl is the limiting agent.

(g)

Expert Solution
Check Mark

Answer to Problem 3RQ

The statement is incorrect.

Explanation of Solution

Given,

The mass of H2O is 100g.

The mass of Ca3P2 is 200g.

The molecular weight of phosphine is 33.99g/mol.

The molecular weight of H2O is 18.02g/mol.

The molecular weight of Ca3P2 is 182.2g/mol.

The given balanced equation is,

  Ca3P2+6H2O3Ca(OH)2+2PH3

The amount of water needed to react with 200g of Ca3P2 can be calculated as,

  200gCa3P2(1mol182.2g)(6molH2O1molCa3P2)(18.02gmol)=119gH2O

The amount of water present is less than needed to react with 200g of Ca3P2.  Water is the limiting agent.  The statement is incorrect.

(h)

Interpretation Introduction

Interpretation:

The theoretical yield of PH3 is 57.4g correct or incorrect has to be given.

(h)

Expert Solution
Check Mark

Answer to Problem 3RQ

The statement is incorrect.

Explanation of Solution

Given,

The mass of H2O is 100g.

The mass of Ca3P2 is 200g.

The molecular weight of phosphine is 33.99g/mol.

The molecular weight of H2O is 18.02g/mol.

The molecular weight of Ca3P2 is 182.2g/mol.

The given balanced equation is,

  Ca3P2+6H2O3Ca(OH)2+2PH3

The theoretical yield of phosphine from 100g of water can be calculated by,

  100gH2O(1molH2O18.02g)(2molPH36molH2O)(33.99gPH31mol)=62.9g

The theoretical yield of phosphine from 200g of Ca3P2 can be calculated by,

  200gCa3P2(1molCa3P2182.2g)(2molPH31molCa3P2)(33.99gPH31mol)=74.62g

The theoretical yield of phosphine is 62.9g&74.62g.  The statement is incorrect.

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