Introductory Chemistry: Concepts and Critical Thinking (8th Edition)
Introductory Chemistry: Concepts and Critical Thinking (8th Edition)
8th Edition
ISBN: 9780134421377
Author: Charles H Corwin
Publisher: PEARSON
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Chapter 13, Problem 53E
Interpretation Introduction

(a)

The molar concentration of 1.50 g NaCl in 100.0 mL of solution is to be stated.

Concept introduction:

The molarity is defined as the number of moles present in one liter of solution. General expression is shown below.

Molarity=MolesofsoluteVolumeofsolution

Measuring unit of molarity is mol/L or molar(M).

Expert Solution
Check Mark

Answer to Problem 53E

The molar concentration of 1.50 g NaCl in 100.0 mL of solution is 0.257 M.

Explanation of Solution

The molar concentration is calculated by the formula shown below.

M=w(g)×1000Mo(g/mol)×volume of solution (in mL) … (1)

Where,

w is the mass of NaCl.

Mois the molar mass of NaCl.

M is the molarity of NaCl.

The given value of w, Mo and volume of solution is 1.50 g, 58.44 g/mol and 100.0mL respectively.

Substitute all the values of w, Mo and volume of solution in equation 1 as shown below.

M=w(g)×1000Mo(g/mol)×volume of solution (in mL)=1.50 g×100058.44 g/mol×100.0 mL=0.257 M

Therefore, the molar concentration of 1.50 g NaCl in 100.0 mL of solution is 0.257 M.

Conclusion

The molar concentration of 1.50 g NaCl in 100.0 mL of solution is calculated as 0.257 M.

Interpretation Introduction

(b)

Interpretation:

The molar concentration of 1.50 g K2Cr2O7 in 100.0 mL of solution is to be stated.

Concept introduction:

The molarity is defined as the number of moles present in one liter of solution. General expression is shown below.

Molarity=MolesofsoluteVolumeofsolution

Measuring unit of molarity is mol/L or molar(M).

Expert Solution
Check Mark

Answer to Problem 53E

The molar concentration of 1.50 g K2Cr2O7 in 100.0 mL of solution is 0.0510 M.

Explanation of Solution

The molar concentration is calculated by the formula shown below.

M=w(g)×1000Mo(g/mol)×volume of solution (in mL) … (1)

Where,

w is the mass of K2Cr2O7.

Mois the molar mass of K2Cr2O7.

M is the molarity of K2Cr2O7.

The given value of w, Mo and volume of solution is 1.50 g, 294.18 g/mol and 100.0mL respectively.

Substitute all the values of w, Mo and volume of solution in equation 1 as shown below.

M=w(g)×1000Mo(g/mol)×volume of solution (in mL)=1.50 g×1000294.18 g/mol×100.0 mL=0.0510 M

Therefore, the molar concentration of 1.50 g K2Cr2O7 in 100.0 mL of solution is 0.0510 M.

Conclusion

The molar concentration of 1.50 g K2Cr2O7 in 100.0 mL of solution is calculated as 0.0510 M.

Interpretation Introduction

(c)

Interpretation:

The molar concentration of 5.55 g CaCl2 in 125.0 mL of solution is to be stated.

Concept introduction:

The molarity is defined as the number of moles present in one liter of solution. General expression is shown below.

Molarity=MolesofsoluteVolumeofsolution

Measuring unit of molarity is mol/L or molar(M).

Expert Solution
Check Mark

Answer to Problem 53E

The molar concentration of 5.55 g CaCl2 in 125.0 mL of solution is 0.400 M.

Explanation of Solution

The molar concentration is calculated by the formula shown below.

M=w(g)×1000Mo(g/mol)×volume of solution (in mL) … (1)

Where,

w is the mass of CaCl2.

Mois the molar mass of CaCl2.

M is the molarity of CaCl2.

The given value of w, Mo and volume of solution is 5.55 g, 110.98 g/mol and 125.0mL respectively.

Substitute all the values of w, Mo and volume of solution in equation 1 as shown below.

M=w(g)×1000Mo(g/mol)×volume of solution (in mL)=5.55 g×1000110.98 g/mol×125.0 mL=0.400 M

Therefore, the molar concentration of 5.55 g CaCl2 in 125.0 mL of solution is 0.400 M.

Conclusion

The molar concentration of 5.55 g CaCl2 in 125.0 mL of solution is calculated as 0.400 M.

Interpretation Introduction

(d)

Interpretation:

The molar concentration of 5.55 g Na2SO4 in 125.0 mL of solution is to be stated.

Concept introduction:

The molarity is defined as the number of moles present in one liter of solution. General expression is shown below.

Molarity=MolesofsoluteVolumeofsolution

Measuring unit of molarity is mol/L or molar(M).

Expert Solution
Check Mark

Answer to Problem 53E

The molar concentration of 5.55 g Na2SO4 in 125.0 mL of solution is 0.313 M.

Explanation of Solution

The molar concentration is calculated by the formula shown below.

M=w(g)×1000Mo(g/mol)×volume of solution (in mL) … (1)

Where,

w is the mass of Na2SO4.

Mois the molar mass of Na2SO4.

M is the molarity of Na2SO4.

The given value of w, Mo and volume of solution is 5.55 g, 142.04 g/mol and 125.0mL respectively.

Substitute all the values of w, Mo and volume of solution in equation 1 as shown below.

M=w(g)×1000Mo(g/mol)×volume of solution (in mL)=5.55 g×1000142.04 g/mol×125.0 mL=0.313 M

Therefore, the molar concentration of 5.55 g Na2SO4 in 125.0 mL of solution is 0.313 M.

Conclusion

The molar concentration of 5.55 g Na2SO4 in 125.0 mL of solution is calculated as 0.313 M.

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Chapter 13 Solutions

Introductory Chemistry: Concepts and Critical Thinking (8th Edition)

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