
(a)
Interpretation:
Amount of ammonium chloride present in 375 gm of 1.51% of ammonium chloride solution has to be calculated.
Concept Introduction:
Composition of a solution can be defined by expressing its concentration. The concentrations of solutions can be expressed in different ways, which are involved in the quantity of solute and the quantity of solution or solvent. Various methods are used to describe the concentration of the solution quantitatively. Some commonly used quantitative concentration terms are percent by mass, percent by volume, molarity, molality and mole fraction.
Mass percentage or percent by mass (w/W %): The mass percentage of a component of a solution is defined as:
(a)

Answer to Problem 13A
5.66 gm of ammonium chloride present in 375 gm of 1.51% of ammonium chloride solution.
Data given: Total mass of the solution = 375 gm
Percent by mass = 1.51%
(b)
Interpretation:
Amount of sodium chloride present in 125 gm of 2.91% of sodium chloride solution has to be calculated.
Concept Introduction:
Composition of a solution can be defined by expressing its concentration. The concentrations of solutions can be expressed in different ways, which are involved in the quantity of solute and the quantity of solution or solvent. Various methods are used to describe the concentration of the solution quantitatively. Some commonly used quantitative concentration terms are percent by mass, percent by volume, molarity, molality and mole fraction.
Mass percentage or percent by mass (w/W %): The mass percentage of a component of a solution is defined as:
3.64 gm of sodium chloride present in 125 gm of 2.91% of sodium chloride solution.
Data given: Total mass of the solution = 125 gm
Percent by mass = 2.91%
(c)
Interpretation:
Amount of potassium nitrate present in 1.31 kg of 4.92% of potassium nitrate solution has to be calculated.
Concept Introduction:
Composition of a solution can be defined by expressing its concentration. The concentrations of solutions can be expressed in different ways, which are involved in the quantity of solute and the quantity of solution or solvent. Various methods are used to describe the concentration of the solution quantitatively. Some commonly used quantitative concentration terms are percent by mass, percent by volume, molarity, molality and mole fraction.
Mass percentage or percent by mass (w/W %): The mass percentage of a component of a solution is defined as:
64.5 gm of potassium nitrate present in 1.31 kg of 4.92% of potassium nitrate solution.
Data given: Total mass of the solution = 1.31 kg
Percent by mass = 4.92%
(d)
Interpretation:
Amount of ammonium nitrate present in 478 mg of 12.5% of ammonium nitrate solution has to be calculated.
Concept Introduction:
Composition of a solution can be defined by expressing its concentration. The concentrations of solutions can be expressed in different ways, which are involved in the quantity of solute and the quantity of solution or solvent. Various methods are used to describe the concentration of the solution quantitatively. Some commonly used quantitative concentration terms are percent by mass, percent by volume, molarity, molality and mole fraction.
Mass percentage or percent by mass (w/W %): The mass percentage of a component of a solution is defined as:
0.059 gm of ammonium nitrate present in 478 mg of 12.5% of ammonium nitrate solution.
Data given: Total mass of the solution = 478 mg
Percent by mass = 12.5%
Explanation of Solution
Data given: Total mass of the solution = 375 gm
Percent by mass = 1.51%
(b)
Interpretation:
Amount of sodium chloride present in 125 gm of 2.91% of sodium chloride solution has to be calculated.
Concept Introduction:
Composition of a solution can be defined by expressing its concentration. The concentrations of solutions can be expressed in different ways, which are involved in the quantity of solute and the quantity of solution or solvent. Various methods are used to describe the concentration of the solution quantitatively. Some commonly used quantitative concentration terms are percent by mass, percent by volume, molarity, molality and mole fraction.
Mass percentage or percent by mass (w/W %): The mass percentage of a component of a solution is defined as:
(b)

Answer to Problem 13A
3.64 gm of sodium chloride present in 125 gm of 2.91% of sodium chloride solution.
Data given: Total mass of the solution = 125 gm
Percent by mass = 2.91%
(c)
Interpretation:
Amount of potassium nitrate present in 1.31 kg of 4.92% of potassium nitrate solution has to be calculated.
Concept Introduction:
Composition of a solution can be defined by expressing its concentration. The concentrations of solutions can be expressed in different ways, which are involved in the quantity of solute and the quantity of solution or solvent. Various methods are used to describe the concentration of the solution quantitatively. Some commonly used quantitative concentration terms are percent by mass, percent by volume, molarity, molality and mole fraction.
Mass percentage or percent by mass (w/W %): The mass percentage of a component of a solution is defined as:
64.5 gm of potassium nitrate present in 1.31 kg of 4.92% of potassium nitrate solution.
Data given: Total mass of the solution = 1.31 kg
Percent by mass = 4.92%
(d)
Interpretation:
Amount of ammonium nitrate present in 478 mg of 12.5% of ammonium nitrate solution has to be calculated.
Concept Introduction:
Composition of a solution can be defined by expressing its concentration. The concentrations of solutions can be expressed in different ways, which are involved in the quantity of solute and the quantity of solution or solvent. Various methods are used to describe the concentration of the solution quantitatively. Some commonly used quantitative concentration terms are percent by mass, percent by volume, molarity, molality and mole fraction.
Mass percentage or percent by mass (w/W %): The mass percentage of a component of a solution is defined as:
0.059 gm of ammonium nitrate present in 478 mg of 12.5% of ammonium nitrate solution.
Data given: Total mass of the solution = 478 mg
Percent by mass = 12.5%
Explanation of Solution
Data given: Total mass of the solution = 125 gm
Percent by mass = 2.91%
(c)
Interpretation:
Amount of potassium nitrate present in 1.31 kg of 4.92% of potassium nitrate solution has to be calculated.
Concept Introduction:
Composition of a solution can be defined by expressing its concentration. The concentrations of solutions can be expressed in different ways, which are involved in the quantity of solute and the quantity of solution or solvent. Various methods are used to describe the concentration of the solution quantitatively. Some commonly used quantitative concentration terms are percent by mass, percent by volume, molarity, molality and mole fraction.
Mass percentage or percent by mass (w/W %): The mass percentage of a component of a solution is defined as:
(c)

Answer to Problem 13A
64.5 gm of potassium nitrate present in 1.31 kg of 4.92% of potassium nitrate solution.
Data given: Total mass of the solution = 1.31 kg
Percent by mass = 4.92%
(d)
Interpretation:
Amount of ammonium nitrate present in 478 mg of 12.5% of ammonium nitrate solution has to be calculated.
Concept Introduction:
Composition of a solution can be defined by expressing its concentration. The concentrations of solutions can be expressed in different ways, which are involved in the quantity of solute and the quantity of solution or solvent. Various methods are used to describe the concentration of the solution quantitatively. Some commonly used quantitative concentration terms are percent by mass, percent by volume, molarity, molality and mole fraction.
Mass percentage or percent by mass (w/W %): The mass percentage of a component of a solution is defined as:
0.059 gm of ammonium nitrate present in 478 mg of 12.5% of ammonium nitrate solution.
Data given: Total mass of the solution = 478 mg
Percent by mass = 12.5%
Explanation of Solution
Data given: Total mass of the solution = 1.31 kg
Percent by mass = 4.92%
(d)
Interpretation:
Amount of ammonium nitrate present in 478 mg of 12.5% of ammonium nitrate solution has to be calculated.
Concept Introduction:
Composition of a solution can be defined by expressing its concentration. The concentrations of solutions can be expressed in different ways, which are involved in the quantity of solute and the quantity of solution or solvent. Various methods are used to describe the concentration of the solution quantitatively. Some commonly used quantitative concentration terms are percent by mass, percent by volume, molarity, molality and mole fraction.
Mass percentage or percent by mass (w/W %): The mass percentage of a component of a solution is defined as:
(d)

Answer to Problem 13A
0.059 gm of ammonium nitrate present in 478 mg of 12.5% of ammonium nitrate solution.
Data given: Total mass of the solution = 478 mg
Percent by mass = 12.5%
Explanation of Solution
Data given: Total mass of the solution = 478 mg
Percent by mass = 12.5%
Chapter 15 Solutions
World of Chemistry
- If I have 1-bromopropene, to obtain compound A, I have to add NaOH and another compound. Indicate which compound that would be. C6H5 CH3arrow_forwardIf I have 1-bromopropene and I want to obtain (1,1-dipropoxyethyl)benzene, indicate the compound that I should add in addition to NaOH.arrow_forwardDraw the major product of this reaction. Ignore inorganic byproducts. Ο HSCH2CH2CH2SH, BF3 Select to Draw I Submitarrow_forward
- Feedback (7/10) Draw the major product of this reaction. Ignore inorganic byproducts. Assume that the water side product is continuously removed to drive the reaction toward products. Incorrect, 3 attempts remaining Ο (CH3CH2)2NH, TSOH Select to Draw V N. 87% Retryarrow_forwardIf I want to obtain (1,1-dipropoxyethyl)benzene from 1-bromopropene, indicate the product that I have to add in addition to NaOH.arrow_forwardIndicate the products obtained when fluorobenzene reacts with a sulfonitric acid mixture (HNO3 + H2SO4). Indicate the majority if necessary.arrow_forward
- Indicate the products obtained when chlorobenzene acid reacts with a sulfonitric acid mixture (HNO3 + H2SO4). Indicate the majority if necessary.arrow_forwardIndicate the products obtained by reacting benzenesulfonic acid with a sulfonitric acid mixture (HNO3 + H2SO4). Indicate the majority if necessary.arrow_forwardIndicate the products obtained by reacting ethylbenzene with a sulfonitric acid mixture (HNO3 + H2SO4). Indicate the majority if necessary.arrow_forward
- Indicate the products obtained when tert-butylbenzene reacts with a sulfonitric acid mixture (HNO3 + H2SO4). Indicate the majority if necessary.arrow_forwardIndicate the products obtained when acetophenone reacts with a sulfonitric acid mixture (HNO3 + H2SO4). Indicate the majority if necessary.arrow_forwardIndicate the products obtained from the reaction of N-(4-methylphenyl)acetamide with a sulfonitric acid mixture (H2SO4 + HNO3). Indicate the majority if necessary.arrow_forward
- ChemistryChemistryISBN:9781305957404Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCostePublisher:Cengage LearningChemistryChemistryISBN:9781259911156Author:Raymond Chang Dr., Jason Overby ProfessorPublisher:McGraw-Hill EducationPrinciples of Instrumental AnalysisChemistryISBN:9781305577213Author:Douglas A. Skoog, F. James Holler, Stanley R. CrouchPublisher:Cengage Learning
- Organic ChemistryChemistryISBN:9780078021558Author:Janice Gorzynski Smith Dr.Publisher:McGraw-Hill EducationChemistry: Principles and ReactionsChemistryISBN:9781305079373Author:William L. Masterton, Cecile N. HurleyPublisher:Cengage LearningElementary Principles of Chemical Processes, Bind...ChemistryISBN:9781118431221Author:Richard M. Felder, Ronald W. Rousseau, Lisa G. BullardPublisher:WILEY





