GENERAL CHEMISTRY(LL)-W/MASTERINGCHEM.
GENERAL CHEMISTRY(LL)-W/MASTERINGCHEM.
11th Edition
ISBN: 9780134566030
Author: Petrucci
Publisher: PEARSON
Question
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Chapter 18, Problem 62E
Interpretation Introduction

(a)

Interpretation:

Whether the reaction Cu2+(aq) + H2S(satd aq)  proceeds to a significant extent in the forward direction should be predicted and the products should be determined.

Concept introduction:

Major objective of qualitative cation analysis is identifying the cations present in a mixture. In qualitative cation analysis, cations are categorized into 5 groups depending on the solubilities of their compounds. Pb2+, Hg22+, Ag+ belong to the first group which form insoluble chlorides when HCl(aq) is added. When the remaining solution is added with H2S in an acidic medium(0.3 M HCl), a group of sulfides precipitate. The remaining solution from this is next treated with H2S in a buffer mixture of NH3 and NH4+ ions which then gives a mixture of insoluble hydroxides and sulfides. Filtrate of above reaction mixture is then treated with CO32-. This yields carbonate precipitates of cations. In the final solution, all the water soluble cations include.

Interpretation Introduction

(b)

Interpretation:

Whether the reaction Mg2+(aq) + H2S(satd aq) 0.3 M HCl proceeds to a significant extent in the forward direction should be predicted and the products should be determined.

Concept introduction:

Major objective of qualitative cation analysis is identifying the cations present in a mixture. In qualitative cation analysis, cations are categorized into 5 groups depending on the solubilities of their compounds. Pb2+, Hg22+, Ag+ belong to the first group which form insoluble chlorides when HCl(aq) is added. When the remaining solution is added with H2S in an acidic medium (0.3 M HCl), a group of sulfides precipitate. The remaining solution from this is next treated with H2S in a buffer mixture of NH3 and NH4+ ions which then gives a mixture of insoluble hydroxides and sulfides. Filtrate of above reaction mixture is then treated with CO32-. This yield carbonate precipitates of cations. In the final solution, all the water soluble cations include.

Interpretation Introduction

(c)

Interpretation:

Whether the reaction PbS(s) + HCl(0.3 M)  proceeds to a significant extent in the forward direction should be predicted and the products should be determined.

Concept introduction:

Major objective of qualitative cation analysis is identifying the cations present in a mixture. In qualitative cation analysis, cations are categorized into 5 groups depending on the solubilities of their compounds. Pb2+, Hg22+, Ag+ belong to the first group which form insoluble chlorides when HCl(aq) is added. When the remaining solution is added with H2S in an acidic medium (0.3 M HCl), a group of sulfides precipitate. The remaining solution from this is next treated with H2S in a buffer mixture of NH3 and NH4+ ions which then gives a mixture of insoluble hydroxides and sulfides. Filtrate of above reaction mixture is then treated with CO32-. This yield carbonate precipitates of cations. The final solution includes all the water soluble cations.

Interpretation Introduction

(d)

Interpretation:

Whether the reaction ZnS(s) + HNO3(aq)  proceeds to a significant extent in the forward direction should be predicted and the products should be determined.

Concept introduction:

Major objective of qualitative cation analysis is identifying the cations present in a mixture. In qualitative cation analysis, cations are categorized into 5 groups depending on the solubilities of their compounds. Pb2+, Hg22+, Ag+ belong to the first group which form insoluble chlorides when HCl(aq) is added. When the remaining solution is added with H2S in an acidic medium (0.3 M HCl), a group of sulfides precipitate. The remaining solution from this is next treated with H2S in a buffer mixture of NH3 and NH4+ ions which then gives a mixture of insoluble hydroxides and sulfides. Filtrate of above reaction mixture is then treated with CO32-. This yield carbonate precipitates of cations. In the final solution, all the water soluble cations include.

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Chapter 18 Solutions

GENERAL CHEMISTRY(LL)-W/MASTERINGCHEM.

Ch. 18 - A 25.00mL sample of a clear saturated solution of...Ch. 18 - A 250 mL sample of saturated CaC2O4 (aq) requires...Ch. 18 - Prob. 13ECh. 18 - Prob. 14ECh. 18 - Calculate the molar solubility of...Ch. 18 - How would you expect the presence of the following...Ch. 18 - Prob. 17ECh. 18 - Describe the effect of the salt NNO2 on the...Ch. 18 - A 0.150 M Na2SO4 , solution that is saturated with...Ch. 18 - It 100.0 mL of 0. 0025 U Na2SO4(aq) is saturated...Ch. 18 - What [Pb2+] should be maintained in Pb( NO2)2(aq)...Ch. 18 - What [l-] should be maintained in Kl(aq) to...Ch. 18 - Can the solubility of Ag2CrO4 be lowered to 5.0104...Ch. 18 - Prob. 24ECh. 18 - Prob. 25ECh. 18 - Prob. 26ECh. 18 - Will prectiation of MgF2(s) occur if a 22.5 mg...Ch. 18 - Will pbCl2 precitate when 155mL of 0.016M KCl(aq)...Ch. 18 - What is the minimum pH at which Cd(OH)2(s) will...Ch. 18 - What is the minimum pH at which Cr(OH)2(s) will...Ch. 18 - Will precipitation occur in the following cases?...Ch. 18 - Prob. 32ECh. 18 - Prob. 33ECh. 18 - Prob. 34ECh. 18 - When 200.0 ml. of 0 350 N K2CrO4(aq) are added to...Ch. 18 - What percentage of the original Ag4 remains in...Ch. 18 - Prob. 37ECh. 18 - The ancient Romans added calcium sulfate to wine...Ch. 18 - Prob. 39ECh. 18 - Prob. 40ECh. 18 - Kl(aq) is slowly added to a solution with...Ch. 18 - A solution is 0010 M en both CrO42- and SO42 . To...Ch. 18 - An aqueous solution that 200 U m AgNO2 slowly...Ch. 18 - AgNO2(aq) is slowly added to a solution that is...Ch. 18 - Which of the following solids is (are) more...Ch. 18 - Which of the blowing solids is (are) more soluble...Ch. 18 - The solubility of Mg(OH)2 m a particualr buffer...Ch. 18 - To 0.350L of 0.150MNH2 is added 0.150 L of 0.100 M...Ch. 18 - For the equilibrium...Ch. 18 - Will the following precipitates form under the...Ch. 18 - Prob. 51ECh. 18 - Prob. 52ECh. 18 - In a solution that is 0.0500M in [Cu( CN)4]2 and...Ch. 18 - Calculate [Cu2+] in a 0.10M CuSO4(aq) solution...Ch. 18 - Prob. 55ECh. 18 - A solution is 0.10 M in free NH2 ,0.10M in NH4Cl ,...Ch. 18 - A 0.10 mol sample of AgNO2(s) is dissolved in...Ch. 18 - A solution is prepared at has [NH2]=1.00M and...Ch. 18 - Prob. 59ECh. 18 - A solution is 0.05 U m Cu2+ in Hg2+ , and in Mn2+...Ch. 18 - Prob. 61ECh. 18 - Prob. 62ECh. 18 - Suppose you did a group 1 qualitative cation...Ch. 18 - Prob. 64ECh. 18 - Prob. 65ECh. 18 - Prob. 66ECh. 18 - Prob. 67IAECh. 18 - A handbook lists the solubility of CaHPO4 as 0.32g...Ch. 18 - Prob. 69IAECh. 18 - What percentage of the Ba2+ in solution is...Ch. 18 - Prob. 71IAECh. 18 - Prob. 72IAECh. 18 - Prob. 73IAECh. 18 - What is the solubility of MnS, in grams per liter,...Ch. 18 - Prob. 75IAECh. 18 - Prob. 76IAECh. 18 - Prob. 77IAECh. 18 - Prob. 78IAECh. 18 - Prob. 79IAECh. 18 - Prob. 80IAECh. 18 - Prob. 81IAECh. 18 - Prob. 82IAECh. 18 - Prob. 83IAECh. 18 - Prob. 84IAECh. 18 - A 2509 sample of Ag2SO4(s) added to a beaker...Ch. 18 - Prob. 86IAECh. 18 - Prob. 87FPCh. 18 - In the Mohr titration, Cl(aq) is titrated with...Ch. 18 - The accompanying drawing suggests a series of...Ch. 18 - Prob. 90SAECh. 18 - Briefly describe each of the following ideas,...Ch. 18 - Prob. 92SAECh. 18 - Prob. 93SAECh. 18 - Prob. 94SAECh. 18 - Prob. 95SAECh. 18 - Prob. 96SAECh. 18 - Prob. 97SAECh. 18 - Prob. 98SAECh. 18 - Prob. 99SAECh. 18 - Prob. 100SAECh. 18 - Prob. 101SAECh. 18 - Prob. 102SAECh. 18 - Prob. 103SAECh. 18 - Prob. 104SAECh. 18 - Prob. 105SAECh. 18 - Prob. 106SAECh. 18 - Will Agl(s) precipitate from a solution with [[Ag...Ch. 18 - Prob. 108SAECh. 18 - Appendix describes a useful study aid known as...
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