EBK INTRODUCTION TO CHEMISTRY
EBK INTRODUCTION TO CHEMISTRY
5th Edition
ISBN: 9781260162165
Author: BAUER
Publisher: MCGRAW HILL BOOK COMPANY
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Chapter 4, Problem 106QP

(a)

Interpretation Introduction

Interpretation:

The number of moles and mass of CaCl2 are to be determined.

(a)

Expert Solution
Check Mark

Explanation of Solution

The conversion of volume from milliliters to liters is given as follows:

VolumeL=x mL×1 L1000 mL …… (1)

The molarity of the solution is determined by the following expression:

M=nV …… (2)

Here, n is the number of moles of solute, V is the volume of the solution in liters, and M is the molarity of the solution.

Substitute 150.0 mL for x in equation (1) in order to determine the volume of CaCl2 solution in liters as follows:

VolumeL=150.0 mL×1 L1000 mL=0.1500 L

Rearrange equation (2) in terms of the number of moles.

n=M×V ...... (3)

Substitute 0.1500 L for V and 0.245 molL1 for M in equation (3) to determine the moles of CaCl2 as follows:

n=0.245 mol CaCl2 L CaCl2  ×0.1500 L CaCl2 =0.0368 mol 

The mass of solute is determined by the following expression:

m=n×Mm ...... (4)

Here, Mm is the molar mass of solute and n is the number of moles of solute.

The molar mass of CaCl2 is 110.98 gmol1 .

Substitute 110.98 gmol1 for Mm and 0.0368 mol  for n in equation (4) in order to determine the mass of CaCl2 as follows:

m=0.0368 mol CaCl2 ×110.98 g CaCl21 mol CaCl2=4.08 g

Therefore, the number of moles and mass of CaCl2 are 0.0368 mol and 4.08 g , respectively.

(b)

Interpretation Introduction

Interpretation:

The number of moles and mass of H2SO4 are to be determined.

(b)

Expert Solution
Check Mark

Explanation of Solution

Substitute 1450 mL for x in equation (1) in order to determine the volume of H2SO4 solution in liters as follows:

VolumeL=1450 mL×1 L1000 mL=1.45 L

Substitute 1.45 L for V and 0.00187 molL1 for M in equation (3) to determine the moles of H2SO4 as follows:

n=0.00187 mol H2SO4 L H2SO4  ×1.45 L H2SO4 =0.00271 mol 

The molar mass of H2SO4 is 98.08 gmol1 .

Substitute 98.08 gmol1 for Mm and 0.00271 mol for n in equation (4) in order to determine the mass of H2SO4 as follows:

m=0.00271mol H2SO4 ×98.08 H2SO41 mol H2SO4=0.266 g

Therefore, the number of moles and mass of H2SO4 are 0.00271 mol and 0.266 g , respectively.

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Chapter 4 Solutions

EBK INTRODUCTION TO CHEMISTRY

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Solutions: Crash Course Chemistry #27; Author: Crash Course;https://www.youtube.com/watch?v=9h2f1Bjr0p4;License: Standard YouTube License, CC-BY