Introduction to Chemistry
Introduction to Chemistry
4th Edition
ISBN: 9780073523002
Author: Rich Bauer, James Birk Professor Dr., Pamela S. Marks
Publisher: McGraw-Hill Education
Question
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Chapter 6, Problem 26QP

(a)

Interpretation Introduction

Interpretation:

The given equation C6H12l+O2gCO2g+H2Og is to be balanced and after that, the number of grams of the first reactant that is required to react completely to give 1.70 g of the product indicated in the boldface is to be determined.

(a)

Expert Solution
Check Mark

Explanation of Solution

The relation among the number of moles, molar mass and mass is,

n= mMM

Here, n is the number of moles, m is mass and MM is molar mass.

By rearranging the above equation mass can be determined as follows:

m=n×MM …..(1)

The balanced equation is,

C6H12l+9O2g6CO2g+6H2Og

The molar mass of CO2 is 44.01g/mol and C6H12 is 84.16g/mol . The mass of C6H12 is determined by using equation (1) as follows:

m=1.70g CO2×mol CO244.01g CO2×1 mol C6H126mol CO2×84.16g C6H121mol C6H12=0.542 g C6H12

(b)

Interpretation Introduction

Interpretation:

The given equation NI3sN2g+I2s is to be balanced and after that, the number of grams of the first reactant that is required to react completely to give 1.70 g of the product indicated in the boldface is to be determined.

(b)

Expert Solution
Check Mark

Explanation of Solution

The balanced equation is,

2NI3sN2g+3I2s

The molar mass of I2 is 253.8g/mol and NI3 is 394.7g/mol . The mass of NI3 is determined by using equation (1) as follows:

m=1.70g I2×mol I2253.8g I2×2 mol NI33mol I2×394.7g NI31mol NI3=1.76 g NI3

(c)

Interpretation Introduction

Interpretation:

The given equation Nas+O2gN2Os is to be balanced and after that, the number of grams of the first reactant that is required to react completely to give 1.70 g of the product indicated in the boldface is to be determined.

(c)

Expert Solution
Check Mark

Explanation of Solution

The balanced equation is,

4Nas+O2g2Na2Os

The molar mass of Na2O is 61.98g/mol and Na is 22.99g/mol . The mass of Na is determined by using equation (1) as follows:

m=1.70g Na2O×mol Na2O61.98g Na2O×4 mol Na2mol Na2O×22.99g Na1mol Na=1.26 g Na

(d)

Interpretation Introduction

Interpretation:

The given equation Cas+HClaqCaCl2aq+H2g is to be balanced and after that, the number of grams of the first reactant that is required to react completely to give 1.70 g of the product indicated in the boldface is to be determined.

(d)

Expert Solution
Check Mark

Explanation of Solution

The balanced equation is,

Cas+2HClaqCaCl2aq+H2g

The molar mass of H2 is 2.016g/mol and Ca is 40.08g/mol . The mass of Ca is determined by using equation (1) as follows:

m=1.70g H2×mol H22.016g H2×1 mol Ca1mol H2×40.08g Ca1mol Ca=33.8 g Ca

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Chapter 6 Solutions

Introduction to Chemistry

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