Chemistry: Principles and Practice
Chemistry: Principles and Practice
3rd Edition
ISBN: 9780534420123
Author: Daniel L. Reger, Scott R. Goode, David W. Ball, Edward Mercer
Publisher: Cengage Learning
Question
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Chapter 12, Problem 12.20QE

(a)

Interpretation Introduction

Interpretation:

The concentration of [CO(NH2)2] in mass percentage has to be calculated.

Concept Introduction:

Mass percentage:  The mass percentage gives the number of grams of solute present in 100g of solution.  The formula of mass percentage is,

  Masspercentage=GramsofsoluteGramsofsolution×100%

(a)

Expert Solution
Check Mark

Answer to Problem 12.20QE

The concentration of [CO(NH2)2] in mass percentage is 2.9503%.

Explanation of Solution

Given,

Mass of [CO(NH2)2]    =3.80 g

Mass of water        =125.0g

Mass of solution    =128.8g

The mass percentage of [CO(NH2)2] is given as,

  Masspercentage=GramsofsoluteGramsofsolution×100%Masspercentage=3.80g128.8g×100%Masspercentage=2.9503%

The concentration of [CO(NH2)2] in mass percentage is 2.9503%.

(b)

Interpretation Introduction

Interpretation:

The concentration of [CO(NH2)2] in mole fraction has to be calculated.

Concept Introduction:

Mole fraction:  Mole fraction of a substance in a solution is the number of moles of that substance divided by the total number of moles of all substances present.  The formula is,

  χA=MolesofA (inmol)MolesofA (in mol) +MolesofB (in mol) +MolesofC (in mol) +...χA=MolesofA (inmol)Totalnumberofmolesofcomponents(inmol)

(b)

Expert Solution
Check Mark

Answer to Problem 12.20QE

The concentration of [CO(NH2)2] in mole fraction is 0.0090.

Explanation of Solution

Given,

Mass of [CO(NH2)2]    =3.80 g

Mass of water        =125.0g

Mass of solution    =128.8g

The moles of [CO(NH2)2]=3.80g×1mol60.06g=0.0632moles

The moles of water=125g×1mol18.02g=6.9367moles

The mole fraction of [CO(NH2)2],

  χ[CO(NH2)2]=Molesof[CO(NH2)2] (inmol)Totalnumberofmolesofcomponents(inmol)χ[CO(NH2)2]=0.0632moles0.0632moles+ 6.9367molesχ[CO(NH2)2]=0.0632moles6.9999molesχ[CO(NH2)2]=0.0090

The concentration of [CO(NH2)2] in mole fraction is 0.0090.

(c)

Interpretation Introduction

Interpretation:

The concentration of [CO(NH2)2] in molality has to be calculated.

Concept Introduction:

Molality:  Molality is defined as moles of solute per specified amount of mass of the solvent.  The formula is,

  Molality(m)=Mass ofsolute (in mol)Massofsolvent (in kg)

(c)

Expert Solution
Check Mark

Answer to Problem 12.20QE

The concentration of [CO(NH2)2] in molality is 0.51m.

Explanation of Solution

Given,

Mass of [CO(NH2)2]    =3.80 g

Mass of water        =125.0g=0.125kg

Mass of solution    =128.8g

The moles of [CO(NH2)2]=3.80g×1mol60.06g=0.0632moles

The concentration of [CO(NH2)2] is,

  Molality(m)=Mass ofsolute (in mol)Massofsolvent (in kg)m=0.0632moles0.125kgm=0.5056m0.51m

The concentration of [CO(NH2)2] in molality is 0.51m.

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Chapter 12 Solutions

Chemistry: Principles and Practice

Ch. 12 - Prob. 12.11QECh. 12 - Prob. 12.12QECh. 12 - Create a flow diagram, similar to those used in...Ch. 12 - Prob. 12.14QECh. 12 - Prob. 12.15QECh. 12 - Prob. 12.16QECh. 12 - Prob. 12.17QECh. 12 - Prob. 12.18QECh. 12 - Prob. 12.19QECh. 12 - Prob. 12.20QECh. 12 - Prob. 12.21QECh. 12 - Prob. 12.22QECh. 12 - Prob. 12.23QECh. 12 - Prob. 12.24QECh. 12 - Prob. 12.25QECh. 12 - Prob. 12.26QECh. 12 - Prob. 12.27QECh. 12 - What is the molality of copper(II) bromide (CuBr2)...Ch. 12 - Prob. 12.29QECh. 12 - Prob. 12.30QECh. 12 - A water solution of sodium hypochlorite (NaOCl) is...Ch. 12 - Prob. 12.32QECh. 12 - Prob. 12.33QECh. 12 - Vinegar is a 5.0% solution of acetic acid...Ch. 12 - Prob. 12.35QECh. 12 - A 2.77 M NaOH solution in water has a density of...Ch. 12 - The density of a 3.75 M aqueous sulfuric acid...Ch. 12 - Prob. 12.40QECh. 12 - Prob. 12.41QECh. 12 - Prob. 12.42QECh. 12 - Predict the relative solubility of each compound...Ch. 12 - Predict the relative solubility of each compound...Ch. 12 - Prob. 12.45QECh. 12 - Prob. 12.46QECh. 12 - Prob. 12.47QECh. 12 - Prob. 12.48QECh. 12 - Prob. 12.49QECh. 12 - The solubility of ethylene (C2H4) in water at 20 C...Ch. 12 - Prob. 12.51QECh. 12 - Prob. 12.52QECh. 12 - Prob. 12.53QECh. 12 - Prob. 12.54QECh. 12 - Prob. 12.55QECh. 12 - Prob. 12.56QECh. 12 - From the data presented in Figure 12.11, determine...Ch. 12 - Prob. 12.58QECh. 12 - Prob. 12.59QECh. 12 - Prob. 12.60QECh. 12 - Prob. 12.61QECh. 12 - Prob. 12.62QECh. 12 - The vapor pressure of chloroform (CHCl3) is 360...Ch. 12 - Prob. 12.64QECh. 12 - Prob. 12.65QECh. 12 - Prob. 12.66QECh. 12 - Prob. 12.67QECh. 12 - Prob. 12.68QECh. 12 - Prob. 12.69QECh. 12 - Prob. 12.70QECh. 12 - A solution of 1.00 g of a protein in 20.0 mL water...Ch. 12 - Prob. 12.72QECh. 12 - Arrange the following aqueous solutions in order...Ch. 12 - Arrange the following solutions in order of...Ch. 12 - Prob. 12.75QECh. 12 - An aqueous solution of sodium bromide freezes at...Ch. 12 - Prob. 12.77QECh. 12 - Prob. 12.78QECh. 12 - Prob. 12.79QECh. 12 - Prob. 12.80QECh. 12 - A 0.029 M solution of potassium sulfate has an...Ch. 12 - The freezing point of a 0.031-m solution of...Ch. 12 - Prob. 12.83QECh. 12 - Prob. 12.84QECh. 12 - Prob. 12.85QECh. 12 - Prob. 12.86QECh. 12 - Prob. 12.87QECh. 12 - Prob. 12.88QECh. 12 - Prob. 12.89QECh. 12 - Prob. 12.90QECh. 12 - Predict the relative solubility of each compound...Ch. 12 - Prob. 12.92QECh. 12 - Prob. 12.94QECh. 12 - Prob. 12.95QECh. 12 - Prob. 12.96QECh. 12 - Sketch graphs of total vapor pressure versus the...Ch. 12 - Prob. 12.98QECh. 12 - Prob. 12.99QECh. 12 - Prob. 12.100QECh. 12 - Prob. 12.101QECh. 12 - Prob. 12.102QECh. 12 - Prob. 12.103QECh. 12 - A 10.00-mL sample of a 24.00% solution of ammonium...Ch. 12 - Prob. 12.105QECh. 12 - In the 1986 Lake Nyos disaster (see the chapter...Ch. 12 - Prob. 12.107QE
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