OWLv2 with Student Solutions Manual eBook for Masterton/Hurley's Chemistry: Principles and Reactions, 8th Edition, [Instant Access], 4 terms (24 months)
OWLv2 with Student Solutions Manual eBook for Masterton/Hurley's Chemistry: Principles and Reactions, 8th Edition, [Instant Access], 4 terms (24 months)
8th Edition
ISBN: 9781305863170
Author: William L. Masterton; Cecile N. Hurley
Publisher: Cengage Learning US
bartleby

Concept explainers

bartleby

Videos

Textbook Question
Book Icon
Chapter 15, Problem 32QAP

A solution is prepared by mixing 45.00 mL of 0.022 M AgNO3 with 13.00 mL of 0.0014 M Na2CO3. Assume that volumes are additive.

(a) Will precipitation occur?

(b) Calculate [Ag+], [CO32-], [Na+], and [NO3-] after equilibrium is established.

Expert Solution
Check Mark
Interpretation Introduction

(a)

Interpretation:

Whether the reaction undergoes precipitation or not needs to be determined.

Concept introduction:

For a reaction, if ionic ( Q) product of the compound is greater than solubility product of compound, then precipitation occurs.

Answer to Problem 32QAP

The reaction undergoes precipitation.

Explanation of Solution

It is given that volume of 0.022MAgNO3 is 45.00mL.

Volume of 0.0014MNa2CO3 is 13.00mL.

Reaction of AgNO3 with Na2CO3 is as follows:

AgNO3+Na2CO3Ag2CO3+NaNO3

Totalvolumeofsolution=13mL+45 mL=58mL

Molar concentration of [Ag+] and [CO32] in 58mL solution are as follows:

[Ag+]=0.022M×45mL58mL=1.7×102M

So, [Ag+] ion concentration is 1.7×102M.

[CO32]=0.0014M×13mL58mL=3.13×104M

So, [CO32] ion concentration is 3.13×104M.

Calculate ionic product (Q) for Ag2CO3

Q=[Ag+]2[CO32]=(1.7×102)2×3.13×104=9.05×108

So, ionic product ( Q)of silver carbonate (Ag2CO3) is 9.05×108.

Solubility of silver carbonate (Ag2CO3) is 8.1×1012

Q>Solubilityproduct

So, precipitation of silver carbonate (Ag2CO3) occurs.

Expert Solution
Check Mark
Interpretation Introduction

(b)

Interpretation:

The equilibrium concentration of [Ag+],[CO32],[Na+],[NO3] needs to be determined.

Concept introduction:

The equilibrium reaction after mixing solution of AgNO3 and Na2CO3 is,

AgNO3(aq)+Na2CO3(aq)Ag2CO3(s)+2NaNO3(aq)

The molarity of solution is calculated as follows:

M=nV

Here, n is number of moles of solute and V is volume of solution in L.

Answer to Problem 32QAP

[Ag+]=0.0164M[CO32]=3.125×108M[Na+]=6.22×104M[NO3]=1.72×102M

Explanation of Solution

The equilibrium reaction after mixing solution of AgNO3 and Na2CO3 is,

AgNO3(aq)+Na2CO3(aq)Ag2CO3(s)+2NaNO3(aq)   ....... (1)

MolesofAgNO3=0.022M×45ml=0.99mol

MolesofNa2CO3=0.0014M×13ml=0.0182mol

As 0.0182 mol of Na2CO3 is completely utilized to react with 0.99 mol of AgNO3. Na2CO3 is the limiting reagent.

ICE table for equation (1) is,

2AgNO3(aq)+Na2CO3(aq)2NaNO3(aq)Initial0.990.01820Change0.03640.01820.0182Equilibrium0.95400.0182

Totalvolumeofsolution=13mL+45mL=58 mL

Equilibrium concentration of Ag ion is,

[Ag+]=0.954mol58mL=0.0164

Equilibrium concentration of NO3 ion is,

[NO3]=0.022M×45 mL58mL=1.72×102M

Equilibrium concentration of NO3 ion is,

[Na+]=0.0182mol×258mL=6.22×104M

Equilibrium concentration of CO3 ion is,

Ksp(Ag2CO3)=8×1012Ksp(Ag2CO3)=[Ag+]2[CO32]

[CO32]=Ksp(Ag2CO3)[Ag+]2=8×1012(1.6×102)2=3.125×108M

Want to see more full solutions like this?

Subscribe now to access step-by-step solutions to millions of textbook problems written by subject matter experts!
Students have asked these similar questions
4. A solution prepared to be initially 1 M in NH3 and 0.5 M in HCl is (Kb for NH3 = 1.8 x 10¯5):   (A) a solution with a pH less than 7 that is not a buffer solution  (B) a buffer solution with a pH between 4 and 7  (C) a buffer solution with a pH between 7 and 10  (D) a solution with a pH greater than 7 that is not a buffer solution  (E) a solution with a pH of 7
What is the concentration (in molarity) of H+, HCO3−, and CO32–, in a solution that is initially prepared as a mixture of 0.0100 M H2CO3 and 0.000010 M Na2CO3? (Carbonic acid is a weak diprotic acid where   Ka1 is 4.20 x 10–5 and Ka2 is 2.00 x 10–6)   a) [H+] at equilibrium = ? b) [HCO3-] at equilibrium = ? c) [CO32-] at equilibrium = ?
A buffer solution is made that is 0.417 M in HC1O and 0.417 M in KC10. If K, for HC1O is 3.50 × 10-8, what is the pH of the buffer solution? pH = 3.14 Write the net ionic equation for the reaction that occurs when 0.110 mol HNO3 is added to 1.00 L of the buffer solution. (Use the lowest possible coefficients. Omit states of matter. Use H30* instead of H*) + +

Chapter 15 Solutions

OWLv2 with Student Solutions Manual eBook for Masterton/Hurley's Chemistry: Principles and Reactions, 8th Edition, [Instant Access], 4 terms (24 months)

Ch. 15 - A buffer is prepared by dissolving 0.0250 mol of...Ch. 15 - Prob. 12QAPCh. 15 - A buffer solution is prepared by adding 15.00 g of...Ch. 15 - A buffer solution is prepared by adding 5.50 g of...Ch. 15 - A solution with a pH of 9.22 is prepared by adding...Ch. 15 - An aqueous solution of 0.057 M weak acid, HX, has...Ch. 15 - Which of the following would form a buffer if...Ch. 15 - Which of the following would form a buffer if...Ch. 15 - Calculate the solubility (in grams per liter) of...Ch. 15 - Calculate the solubility (in grams per liter) of...Ch. 15 - Copper(l) chloride, CuCl, is the starting material...Ch. 15 - Prob. 22QAPCh. 15 - Prob. 23QAPCh. 15 - Ksp for CaSO4 at 100C is estimated to be1.6105. At...Ch. 15 - Prob. 25QAPCh. 15 - At 25C, 10.24 mg of Cr(OH)2 are dissolved in...Ch. 15 - Calcium nitrate is added to a sodium sulfate...Ch. 15 - Cadmium(ll) chloride is added to a solution of...Ch. 15 - Water from a well is found to contain 3.0 mg of...Ch. 15 - Silver(I) sulfate (Ksp=1.2105) is used in the...Ch. 15 - A solution is prepared by mixing 13.00 mL of...Ch. 15 - A solution is prepared by mixing 45.00 mL of 0.022...Ch. 15 - A solution is 0.047 M in both NaF and Na2CO3....Ch. 15 - Solid lead nitrate is added to a solution that is...Ch. 15 - A solution is made up by adding 0.632 g of barium...Ch. 15 - A solution is made up by adding 0.839 g of...Ch. 15 - Prob. 37QAPCh. 15 - To a beaker with 500 mL of water are added 95 mg...Ch. 15 - Write net ionic equations for the reaction of H+...Ch. 15 - Prob. 40QAPCh. 15 - Prob. 41QAPCh. 15 - Write a net ionic equation for the reaction with...Ch. 15 - Prob. 43QAPCh. 15 - Write a net ionic equation for the reaction with...Ch. 15 - Prob. 45QAPCh. 15 - Write an overall net ionic equation and calculate...Ch. 15 - Consider the reaction...Ch. 15 - Consider the reaction BaF2(s)+SO42(aq)BaSO4(s)+2...Ch. 15 - Aluminum hydroxide reacts with an excess of...Ch. 15 - Prob. 50QAPCh. 15 - Calculate the molar solubility of gold(I) chloride...Ch. 15 - Calculate the molar solubility of PbCl2 in 0.2 M...Ch. 15 - For the reaction...Ch. 15 - For the reaction Zn(OH)2(s)+2OH(aq)Zn(OH)42(aq)...Ch. 15 - What are the concentrations of Cu2+, NH3, and...Ch. 15 - Prob. 56QAPCh. 15 - Calcium ions in blood trigger clotting. To prevent...Ch. 15 - Prob. 58QAPCh. 15 - A town adds 2.0 ppm of F- ion to fluoridate its...Ch. 15 - Consider the following hypothetical dissociation:...Ch. 15 - Prob. 61QAPCh. 15 - Consider a 2.0-L aqueous solution of 4.17 M NH3,...Ch. 15 - Marble is almost pure CaCO3. Acid rain has a...Ch. 15 - Prob. 64QAPCh. 15 - Prob. 65QAPCh. 15 - The box below represents one liter of a saturated...Ch. 15 - Consider a saturated solution of BaCO3 at 7.5C....Ch. 15 - Prob. 68QAPCh. 15 - Consider the insoluble salts JQ, K2R, L2S3, MT2,...Ch. 15 - Prob. 70QAPCh. 15 - Consider the equilibrium curve for AgCl shown...Ch. 15 - Dissolving CaCO3 is an endothermic reaction. The...Ch. 15 - Challenge Problems Insoluble hydroxides such as...Ch. 15 - What is the solubility of CaF2 in a buffer...Ch. 15 - What is [Br-] just as AgCl begins to precipitate...Ch. 15 - Prob. 76QAPCh. 15 - Prob. 77QAPCh. 15 - Prob. 78QAP
Knowledge Booster
Background pattern image
Chemistry
Learn more about
Need a deep-dive on the concept behind this application? Look no further. Learn more about this topic, chemistry and related others by exploring similar questions and additional content below.
Similar questions
SEE MORE QUESTIONS
Recommended textbooks for you
Text book image
Chemistry: Principles and Practice
Chemistry
ISBN:9780534420123
Author:Daniel L. Reger, Scott R. Goode, David W. Ball, Edward Mercer
Publisher:Cengage Learning
Text book image
Chemistry: Principles and Reactions
Chemistry
ISBN:9781305079373
Author:William L. Masterton, Cecile N. Hurley
Publisher:Cengage Learning
Text book image
Chemistry: The Molecular Science
Chemistry
ISBN:9781285199047
Author:John W. Moore, Conrad L. Stanitski
Publisher:Cengage Learning
Text book image
Chemistry by OpenStax (2015-05-04)
Chemistry
ISBN:9781938168390
Author:Klaus Theopold, Richard H Langley, Paul Flowers, William R. Robinson, Mark Blaser
Publisher:OpenStax
Acid-Base Titration | Acids, Bases & Alkalis | Chemistry | FuseSchool; Author: FuseSchool - Global Education;https://www.youtube.com/watch?v=yFqx6_Y6c2M;License: Standard YouTube License, CC-BY