Introductory Chemistry: An Active Learning Approach
Introductory Chemistry: An Active Learning Approach
6th Edition
ISBN: 9781305079250
Author: Mark S. Cracolice, Ed Peters
Publisher: Cengage Learning
Question
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Chapter 16, Problem 39E
Interpretation Introduction

Interpretation:

The molarity of solutions on dissolving 18.0g of anhydrous nickel (II) chloride and 30.0g of nickel (II) chloride hexahydrate separately in 90.0mL water is to be calculated. The solution with the higher molar concentration is to be identified.

Concept Introduction:

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 & Answer
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Answer to Problem 39E

The molarity of 18.0g of anhydrous nickel (II) chloride and 30.0g of nickel (II) chloride dissolved separately in 90.0mL water is 1.54MNiCl2 and 1.4MNiCl2.6H2O respectively. The molar concentration of anhydrous nickel (II) chloride is higher than that of nickel (II) chloride hexahydrate.

Explanation of Solution

The molarity of solution when 18.0g of anhydrous nickel (II) chloride is dissolved in 90.0mL water is calculated by the formula given below.

Molarity=MolesofsoluteVolumeofsolution … (1)

The molar mass of anhydrous nickel (II) chloride is 129.59g/mol.

Number of moles of 18.0g of anhydrous nickel (II) chloride is calculated as shown below.

MolesofNiCl2=GivenmassofNiCl2MolarmassofNiCl2=18.0gNiCl2×1molNiCl2129.59gNiCl2=0.139molNiCl2

The molarity of anhydrous nickel (II) chloride is calculated using equation (1) as shown below.

MolarityofNiCl2=0.138molNiCl290.0mL×1000mL1L=1.54MNiCl2

The molar mass of anhydrous nickel (II) chloride hexahydrate is 237.69g/mol.

Number of moles of 30.0g of nickel (II) chloride hexahydrate in 90.0mL water is calculated as shown below.

MolesofNiCl2.6H2O=GivenmassofNiCl2.6H2OMolarmassofNiCl2.6H2O=30.0gNiCl2.6H2O×1molNiCl2.6H2O237.69gNiCl2.6H2O=0.126molNiCl2.6H2O

The molarity of anhydrous nickel (II) chloride hexahydrate is calculated using equation (1) as shown below.

MolarityofNiCl2.6H2O=0.126molNiCl2.6H2O90.0mL×1000mL1L=1.4MNiCl2.6H2O

Therefore, the molar concentration of anhydrous nickel (II) chloride is higher than that of nickel (II) chloride hexahydrate.

Conclusion

The molarity of solutions on dissolving 18.0g of anhydrous nickel (II) chloride and 30.0g of nickel (II) chloride hexahydrate separately in 90.0mL water is calculated as 1.54MNiCl2 and 1.4MNiCl2.6H2O respectively. The molar concentration of anhydrous nickel (II) chloride is found to be higher than that of nickel (II) chloride hexahydrate.

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Chapter 16 Solutions

Introductory Chemistry: An Active Learning Approach

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