General, Organic, and Biological Chemistry - 4th edition
General, Organic, and Biological Chemistry - 4th edition
4th Edition
ISBN: 9781259883989
Author: by Janice Smith
Publisher: McGraw-Hill Education
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Chapter 5, Problem 75P
Interpretation Introduction

(a)

Interpretation:

Number of grams of CO2 that is formed from 2.5 mol of C2H2 is to be determined considering the following combustion reaction of acetylene:

  2C2H2+5O24CO2+2H2O

Concept Introduction:

The carbon-containing compound i.e., acetylene, reacts with oxygen to form water and carbon dioxide. This reaction is known as combustion.

The combustion reaction of acetylene C2H2 is as shown below:

  2C2H2+5O24CO2+2H2O.

Following is the formula that will be used to calculate the mass of the substance:

  mass=number of moles×Molar mass

Expert Solution
Check Mark

Answer to Problem 75P

  220.5g of CO2 are formed from 2.5 mol of C2H2

Explanation of Solution

According to the equation: 2C2H2+5O24CO2+2H2O

Moles ratio of C2H2 :CO2 = 2:4 ,

i.e., if 2 moles of C2H2 requires 4 mole of CO2 ,

  then  2.5mole of C2H2will require= 2.5×42 moles of CO2                                                      = 5 moles of CO2

  mass=number of moles×Molar mass

  molar mass of CO2=44.01g/mol

  mass= 5.0 mol×44.01g/mol          =220.05 g

Hence, 220.5 g of CO2 is formed from 2.5 mol of C2H2.

Interpretation Introduction

(b)

Interpretation:

Number of grams of CO2 that is formed from 0.5 mol of C2H2 is to be determined considering the following combustion reaction of acetylene:

  2C2H2+5O24CO2+2H2O

Concept Introduction:

The carbon-containing compound i.e., acetylene, reacts with oxygen to form water and carbon dioxide. This reaction is known as combustion.

The combustion reaction of acetylene C2H2 is as shown below:

  2C2H2+5O24CO2+2H2O.

Following is the formula that will be used to calculate the mass of the substance:

  mass=number of moles×Molar mass

Expert Solution
Check Mark

Answer to Problem 75P

  44.01 g of CO2 are formed from 0.5 mol of C2H2

Explanation of Solution

According to the equation: 2C2H2+5O24CO2+2H2O

Moles ratio of C2H2 :CO2 = 2:4 ,

i.e., if 2 moles of C2H2 requires 4 mole of CO2 ,

  then  0.5 mole of C2H2will require= 0.5×42 moles of CO2                                                      = 1.0 moles of CO2

  mass=number of moles×Molar mass

  molar mass of CO2=44.01g/mol

  mass= 1 mol×44.01g/mol          =44.01 g

Hence, 44.01 g of CO2 is formed from 0.5 mol of C2H2.

Interpretation Introduction

(c)

Interpretation:

Number of grams of H2O that is formed from 0.25 mol of C2H2 is to be determined considering the following combustion reaction of acetylene:

  2C2H2+5O24CO2+2H2O

Concept Introduction:

The carbon-containing compound i.e., acetylene, reacts with oxygen to form water and carbon dioxide. This reaction is known as combustion.

The combustion reaction of acetylene C2H2 is as shown below:

  2C2H2+5O24CO2+2H2O.

Following is the formula that will be used to calculate the mass of the substance:

  mass=number of moles×Molar mass

Expert Solution
Check Mark

Answer to Problem 75P

  4.505 g of H2O are formed from 0.25 mol of C2H2

Explanation of Solution

According to the equation: 2C2H2+5O24CO2+2H2O

Moles ratio of C2H2 :H2O = 2:2 ,

i.e., if 2 moles of C2H2 requires 2 mole of H2O ,

  then  0.5 mole of C2H2will require= 0.25×22 moles of H2O                                                      = 0.25 moles of H2O

  mass=number of moles×Molar mass

  molar mass of H2O=18.02g/mol

  mass= 0.25 mol×18.02g/mol          =4.505 g

Hence, 4.505 g of H2O is formed from 0.25 mol of C2H2.

Interpretation Introduction

(d)

Interpretation:

Number of grams of O2 that reacts with 3.0 mol of C2H2 is to be determined considering the following combustion reaction of acetylene:

  2C2H2+5O24CO2+2H2O

Concept Introduction:

The carbon-containing compound i.e., acetylene, reacts with oxygen to form water and carbon dioxide. This reaction is known as combustion.

The combustion reaction of acetylene C2H2 is as shown below:

  2C2H2+5O24CO2+2H2O.

Following is the formula that will be used to calculate the mass of the substance:

  mass=number of moles×Molar mass

Expert Solution
Check Mark

Answer to Problem 75P

  120 g of O2 reacts with 3 mol of C2H2.

Explanation of Solution

According to the equation: 2C2H2+5O24CO2+2H2O

Moles ratio of C2H2 :O2 = 2:5 ,

i.e., if 2 moles of C2H2 requires 5 mole of O2 ,

  then  3 mole of C2H2will require= 3×52 moles of O2                                                      = 7.5 moles of O2

  mass=number of moles×Molar mass

  molar mass of O2=16g/mol

  mass= 7.5 mol×16g/mol          =120 g

Hence, 120 g of O2 is formed from 3 mol of C2H2.

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Chapter 5 Solutions

General, Organic, and Biological Chemistry - 4th edition

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