CHEMICAL PRINCIPLES (LL) W/ACCESS
CHEMICAL PRINCIPLES (LL) W/ACCESS
7th Edition
ISBN: 9781319421175
Author: ATKINS
Publisher: MAC HIGHER
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Chapter F, Problem I.13E

(a)

Interpretation Introduction

Interpretation:

Net ionic equation has to be written for the formation of precipitate and the spectator ions has to be identified in the reaction between FeCl2 and Na2S.

(a)

Expert Solution
Check Mark

Explanation of Solution

The reaction given is between aqueous solutions of FeCl2 and Na2S.  The reaction can be given as follows:

    FeCl2(aq)+Na2S(aq)FeS(s)+2NaCl(aq)

Aqueous solution of FeCl2 reacts with Na2S resulting in formation of FeS and NaCl.  The precipitate that is formed is FeS.  This is because the sulfides are insoluble if the cations are apart from the elements of Group-1 and Group-2.

The balanced chemical equation for the reaction is given as follows:

    FeCl2(aq)+Na2S(aq)FeS(s)+2NaCl(aq)

Complete ionic equation is written by showing the ions present in aqueous solution.  This is given as follows:

    Fe2+(aq)+2Cl(aq)+2Na+(aq)+S2(aq)FeS(s)+2Na+(aq)+2Cl(aq)

In the complete ionic equation, the common ions that are present on both sides of the equation is known as spectator ions.  Thus in this case, the spectator ions are Na+ and Cl.  Net ionic equation can be obtained from the complete ionic equation by removing the spectator ions.

    Fe2+(aq)+2Cl(aq)+2Na+(aq)+S2(aq)FeS(s)+2Na+(aq)+2Cl(aq)

Thus net ionic equation can be written as follows:

    Fe2+(aq)+S2(aq)FeS(s)

(b)

Interpretation Introduction

Interpretation:

Net ionic equation has to be written for the formation of precipitate and the spectator ions has to be identified in the reaction between Pb(NO3)2 and KI.

(b)

Expert Solution
Check Mark

Explanation of Solution

The reaction given is between aqueous solutions of Pb(NO3)2 and KI.  The reaction can be given as follows:

    Pb(NO3)2(aq)+2KI(aq)PbI2(s)+2KNO3(aq)

Aqueous solution of Pb(NO3)2 reacts with KI resulting in formation of PbI2 and KNO3.  The precipitate that is formed is PbI2.  This is because the iodide salts of Ag+, Hg22+, and Pb2+ are alone insoluble.

The balanced chemical equation for the reaction is given as follows:

    Pb(NO3)2(aq)+2KI(aq)PbI2(s)+2KNO3(aq)

Complete ionic equation is written by showing the ions present in aqueous solution.  This is given as follows:

    Pb2+(aq)+2NO3(aq)+2K+(aq)+2I(aq)PbI2(s)+2K+(aq)+2NO3(aq)

In the complete ionic equation, the common ions that are present on both sides of the equation is known as spectator ions.  Thus in this case, the spectator ions are K+ and NO3.  Net ionic equation can be obtained from the complete ionic equation by removing the spectator ions.

    Pb2+(aq)+2NO3(aq)+2K+(aq)+2I(aq)PbI2(s)+2K+(aq)+2NO3(aq)

Thus net ionic equation can be written as follows:

    Pb2+(aq)+2I(aq)PbI2(s)

(c)

Interpretation Introduction

Interpretation:

Net ionic equation has to be written for the formation of precipitate and the spectator ions has to be identified in the reaction between Ca(NO3)2 and K2SO4.

(c)

Expert Solution
Check Mark

Explanation of Solution

The reaction given is between aqueous solutions of Ca(NO3)2 and K2SO4.  The reaction can be given as follows:

    Ca(NO3)2(aq)+K2SO4(aq)CaSO4(s)+2KNO3(aq)

Aqueous solution of Ca(NO3)2 reacts with K2SO4 resulting in formation of CaSO4 and KNO3.  The precipitate that is formed is CaSO4.  This is because the sulfate salts of Ca2+, Sr2+, Ba2+, Pb2+, Hg22+, and Ag+ are alone insoluble.

The balanced chemical equation for the reaction is given as follows:

    Ca(NO3)2(aq)+K2SO4(aq)CaSO4(s)+2KNO3(aq)

Complete ionic equation is written by showing the ions present in aqueous solution.  This is given as follows:

    Ca2+(aq)+2NO3(aq)+2K+(aq)+SO42(aq)CaSO4(s)+2K+(aq)+2NO3(aq)

In the complete ionic equation, the common ions that are present on both sides of the equation is known as spectator ions.  Thus in this case, the spectator ions are K+ and NO3.  Net ionic equation can be obtained from the complete ionic equation by removing the spectator ions.

Ca2+(aq)+2NO3(aq)+2K+(aq)+SO42(aq)CaSO4(s)+2K+(aq)+2NO3(aq)

Thus net ionic equation can be written as follows:

    Ca2+(aq)+SO42(aq)CaSO4(s)

(d)

Interpretation Introduction

Interpretation:

Net ionic equation has to be written for the formation of precipitate and the spectator ions has to be identified in the reaction between Na2CrO4 and Pb(NO3)2.

(d)

Expert Solution
Check Mark

Explanation of Solution

The reaction given is between aqueous solutions of Na2CrO4 and Pb(NO3)2.  The reaction can be given as follows:

    Na2CrO4(aq)+Pb(NO3)2(aq)PbCrO4(s)+2NaNO3(aq)

Aqueous solution of Na2CrO4 reacts with Pb(NO3)2 resulting in formation of PbCrO4 and NaNO3.  The precipitate that is formed is PbCrO4.  This is because the chromate salts of cations except that is from Group-1 elements and ammonium ion are insoluble.

The balanced chemical equation for the reaction is given as follows:

    Na2CrO4(aq)+Pb(NO3)2(aq)PbCrO4(s)+2NaNO3(aq)

Complete ionic equation is written by showing the ions present in aqueous solution.  This is given as follows:

2Na+(aq)+CrO42(aq)+Pb2+(aq)+2NO3(aq)PbCrO4(s)+2Na+(aq)+2NO3(aq)

In the complete ionic equation, the common ions that are present on both sides of the equation is known as spectator ions.  Thus in this case, the spectator ions are Na+ and NO3.  Net ionic equation can be obtained from the complete ionic equation by removing the spectator ions.

2Na+(aq)+CrO42(aq)+Pb2+(aq)+2NO3(aq)PbCrO4(s)+2Na+(aq)+2NO3(aq)

Thus net ionic equation can be written as follows:

    CrO42(aq)+Pb2+(aq)PbCrO4(s)

(e)

Interpretation Introduction

Interpretation:

Net ionic equation has to be written for the formation of precipitate and the spectator ions has to be identified in the reaction between Hg2(NO3)2 and K2SO4.

(e)

Expert Solution
Check Mark

Explanation of Solution

The reaction given is between aqueous solutions of Hg2(NO3)2 and K2SO4.  The reaction can be given as follows:

    Hg2(NO3)2(aq)+K2SO4(aq)Hg2SO4(s)+2KNO3(aq)

Aqueous solution of Hg2(NO3)2 reacts with K2SO4 resulting in formation of Hg2SO4 and KNO3.  The precipitate that is formed is Hg2SO4.  This is because the sulfate salts of Ca2+, Sr2+, Ba2+, Pb2+, Hg22+, and Ag+ are alone insoluble.

The balanced chemical equation for the reaction is given as follows:

    Hg2(NO3)2(aq)+K2SO4(aq)Hg2SO4(s)+2KNO3(aq)

Complete ionic equation is written by showing the ions present in aqueous solution.  This is given as follows:

    Hg22+(aq)+2NO3(aq)+2K+(aq)+SO42(aq)Hg2SO4(s)+2K+(aq)+2NO3(aq)

In the complete ionic equation, the common ions that are present on both sides of the equation is known as spectator ions.  Thus in this case, the spectator ions are K+ and NO3.  Net ionic equation can be obtained from the complete ionic equation by removing the spectator ions.

Hg22+(aq)+2NO3(aq)+2K+(aq)+SO42(aq)Hg2SO4(s)+2K+(aq)+2NO3(aq)

Thus net ionic equation can be written as follows:

    Hg22+(aq)+SO42(aq)Hg2SO4(s)

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Chapter F Solutions

CHEMICAL PRINCIPLES (LL) W/ACCESS

Ch. F - Prob. A.1ECh. F - Prob. A.2ECh. F - Prob. A.3ECh. F - Prob. A.4ECh. F - Prob. A.5ECh. F - Prob. A.6ECh. F - Prob. A.7ECh. F - Prob. A.8ECh. F - Prob. A.9ECh. F - Prob. A.10ECh. F - Prob. A.11ECh. F - Prob. A.12ECh. F - Prob. A.13ECh. F - Prob. A.14ECh. F - Prob. A.15ECh. F - Prob. A.16ECh. F - Prob. A.17ECh. F - Prob. A.18ECh. F - Prob. A.19ECh. F - Prob. A.20ECh. F - Prob. A.21ECh. F - Prob. A.22ECh. F - Prob. A.23ECh. F - Prob. A.24ECh. F - Prob. A.25ECh. F - Prob. A.26ECh. F - Prob. A.27ECh. F - Prob. A.28ECh. F - Prob. A.29ECh. F - Prob. A.30ECh. F - Prob. A.31ECh. F - Prob. A.32ECh. F - Prob. A.33ECh. F - Prob. A.34ECh. F - Prob. A.35ECh. F - Prob. A.36ECh. F - Prob. A.37ECh. F - Prob. A.38ECh. F - Prob. A.39ECh. F - Prob. A.40ECh. F - Prob. A.41ECh. F - Prob. A.42ECh. F - Prob. B.1ASTCh. F - Prob. B.1BSTCh. F - Prob. B.2ASTCh. F - Prob. B.2BSTCh. F - Prob. B.3ASTCh. F - Prob. B.3BSTCh. F - Prob. B.1ECh. F - Prob. B.2ECh. F - Prob. B.3ECh. F - Prob. B.4ECh. F - Prob. B.5ECh. F - Prob. B.6ECh. F - Prob. B.7ECh. F - Prob. B.8ECh. F - Prob. B.9ECh. F - Prob. B.10ECh. F - Prob. B.11ECh. F - Prob. B.12ECh. F - Prob. B.13ECh. F - Prob. B.14ECh. F - Prob. B.15ECh. F - Prob. B.16ECh. F - Prob. B.17ECh. F - Prob. B.18ECh. F - Prob. B.19ECh. F - Prob. B.20ECh. F - Prob. B.21ECh. F - Prob. B.22ECh. F - Prob. C.1ASTCh. F - Prob. C.1BSTCh. F - Prob. C.2ASTCh. F - Prob. C.2BSTCh. F - Prob. C.1ECh. F - Prob. C.2ECh. F - Prob. C.3ECh. F - Prob. C.4ECh. F - Prob. C.5ECh. F - Prob. C.6ECh. F - Prob. C.7ECh. F - Prob. C.8ECh. F - Prob. C.9ECh. F - Prob. C.10ECh. F - Prob. C.11ECh. F - Prob. C.12ECh. F - Prob. C.13ECh. F - Prob. C.14ECh. F - Prob. C.15ECh. F - Prob. C.16ECh. F - Prob. C.17ECh. F - Prob. C.18ECh. F - Prob. C.19ECh. F - Prob. C.20ECh. F - Prob. C.21ECh. F - Prob. C.22ECh. F - Prob. D.1ASTCh. F - Prob. D.1BSTCh. F - Prob. D.2ASTCh. F - Prob. D.2BSTCh. F - Prob. D.3ASTCh. F - Prob. D.3BSTCh. F - Prob. D.4ASTCh. F - Prob. D.4BSTCh. F - Prob. D.5ASTCh. F - Prob. D.5BSTCh. F - Prob. D.1ECh. F - Prob. D.2ECh. F - Prob. D.3ECh. F - Prob. D.4ECh. F - Prob. D.5ECh. F - Prob. D.6ECh. F - Prob. D.7ECh. F - Prob. D.8ECh. F - Prob. D.9ECh. F - Prob. D.10ECh. F - Prob. D.11ECh. F - Prob. D.12ECh. F - Prob. D.13ECh. F - Prob. D.14ECh. F - Prob. D.15ECh. F - Prob. D.16ECh. F - Prob. D.17ECh. F - Prob. D.18ECh. F - Prob. D.19ECh. F - Prob. D.20ECh. F - Prob. D.21ECh. F - Prob. D.22ECh. F - Prob. D.23ECh. F - Prob. D.24ECh. F - Prob. D.25ECh. F - Prob. D.26ECh. F - Prob. D.27ECh. F - Prob. D.28ECh. F - Prob. D.29ECh. F - Prob. D.30ECh. F - Prob. D.31ECh. F - Prob. D.32ECh. F - Prob. D.33ECh. F - Prob. D.34ECh. F - Prob. D.35ECh. F - Prob. D.36ECh. F - Prob. E.1ASTCh. F - Prob. E.1BSTCh. F - Prob. E.2ASTCh. F - Prob. E.2BSTCh. F - Prob. E.3ASTCh. F - Prob. E.3BSTCh. F - Prob. E.4ASTCh. F - Prob. E.4BSTCh. F - Prob. E.5ASTCh. F - Prob. E.5BSTCh. F - Prob. E.6ASTCh. F - Prob. E.6BSTCh. F - Prob. E.1ECh. F - Prob. E.2ECh. F - Prob. E.3ECh. F - Prob. E.4ECh. F - Prob. E.5ECh. F - Prob. E.6ECh. F - Prob. E.7ECh. F - Prob. E.8ECh. F - Prob. E.9ECh. F - Prob. E.10ECh. F - Prob. E.11ECh. F - Prob. E.12ECh. F - Prob. E.13ECh. F - Prob. E.14ECh. F - Prob. E.15ECh. F - Prob. E.16ECh. F - Prob. E.17ECh. F - Prob. E.18ECh. F - Prob. E.19ECh. F - Prob. E.20ECh. F - Prob. E.21ECh. F - Prob. E.22ECh. F - Prob. E.23ECh. F - Prob. E.24ECh. F - Prob. E.25ECh. F - Prob. E.26ECh. F - Prob. E.27ECh. F - Prob. E.28ECh. F - Prob. E.29ECh. F - Prob. E.30ECh. F - Prob. E.31ECh. F - Prob. E.32ECh. F - Prob. E.33ECh. F - Prob. E.34ECh. F - Prob. F.1ASTCh. F - Prob. F.1BSTCh. F - Prob. F.2ASTCh. F - Prob. F.2BSTCh. F - Prob. F.3ASTCh. F - Prob. F.3BSTCh. F - Prob. F.4ASTCh. F - Prob. F.4BSTCh. F - Prob. F.1ECh. F - Prob. F.2ECh. F - Prob. F.3ECh. F - Prob. F.4ECh. F - Prob. F.5ECh. F - Prob. F.6ECh. F - Prob. F.7ECh. F - Prob. F.8ECh. F - Prob. F.9ECh. F - Prob. F.10ECh. F - Prob. F.11ECh. F - Prob. F.12ECh. F - Prob. F.13ECh. F - Prob. F.14ECh. F - Prob. F.15ECh. F - Prob. F.16ECh. F - Prob. F.17ECh. F - Prob. F.18ECh. F - Prob. F.19ECh. F - Prob. F.20ECh. F - Prob. F.21ECh. F - Prob. F.22ECh. F - Prob. F.23ECh. F - Prob. F.24ECh. F - Prob. F.25ECh. F - Prob. F.26ECh. F - Prob. F.27ECh. F - Prob. F.28ECh. F - Prob. G.1ASTCh. F - Prob. G.1BSTCh. F - Prob. G.2ASTCh. F - Prob. G.2BSTCh. F - Prob. G.3ASTCh. F - Prob. G.3BSTCh. F - Prob. G.4ASTCh. F - Prob. G.4BSTCh. F - Prob. G.1ECh. F - Prob. G.2ECh. F - Prob. G.3ECh. F - Prob. G.4ECh. F - Prob. G.5ECh. F - Prob. G.6ECh. F - Prob. G.7ECh. F - Prob. G.8ECh. F - Prob. G.9ECh. F - Prob. G.10ECh. F - Prob. G.11ECh. F - Prob. G.12ECh. F - Prob. G.13ECh. F - Prob. G.14ECh. F - Prob. G.15ECh. F - Prob. G.16ECh. F - Prob. G.17ECh. F - Prob. G.18ECh. F - Prob. G.19ECh. F - Prob. G.20ECh. F - Prob. G.21ECh. F - Prob. G.22ECh. F - Prob. G.23ECh. F - Prob. G.24ECh. F - Prob. G.25ECh. F - Prob. G.27ECh. F - Prob. G.28ECh. F - Prob. G.30ECh. F - Prob. H.1ASTCh. F - Prob. H.1BSTCh. F - Prob. H.1ECh. F - Prob. H.2ECh. F - Prob. H.3ECh. F - Prob. H.4ECh. F - Prob. H.5ECh. F - Prob. H.6ECh. F - Prob. H.7ECh. F - Prob. H.8ECh. F - Prob. H.9ECh. F - Prob. H.10ECh. F - Prob. H.11ECh. F - Prob. H.12ECh. F - Prob. H.13ECh. F - Prob. H.14ECh. F - Prob. H.15ECh. F - Prob. H.16ECh. F - Prob. H.17ECh. F - Prob. H.18ECh. F - Prob. H.19ECh. F - Prob. H.20ECh. F - Prob. H.21ECh. F - Prob. H.22ECh. F - Prob. H.23ECh. F - Prob. H.24ECh. F - Prob. H.25ECh. F - Prob. H.26ECh. F - Prob. I.1ASTCh. F - Prob. I.1BSTCh. F - Prob. I.2ASTCh. F - Prob. I.2BSTCh. F - Prob. I.3ASTCh. F - Prob. I.3BSTCh. F - Prob. I.1ECh. F - Prob. I.2ECh. F - Prob. I.3ECh. F - Prob. I.4ECh. F - Prob. I.5ECh. F - Prob. I.6ECh. F - Prob. I.7ECh. F - Prob. I.8ECh. F - Prob. I.9ECh. F - Prob. I.10ECh. F - Prob. I.11ECh. F - Prob. I.12ECh. F - Prob. I.13ECh. F - Prob. I.14ECh. F - Prob. I.15ECh. F - Prob. I.16ECh. F - Prob. I.17ECh. F - Prob. I.18ECh. F - Prob. I.19ECh. F - Prob. I.20ECh. F - Prob. I.21ECh. F - Prob. I.22ECh. F - Prob. I.23ECh. F - Prob. I.24ECh. F - Prob. I.25ECh. F - Prob. I.26ECh. F - Prob. J.1ASTCh. F - Prob. J.1BSTCh. F - Prob. J.2ASTCh. F - Prob. J.2BSTCh. F - Prob. J.1ECh. F - Prob. J.2ECh. F - Prob. J.3ECh. F - Prob. J.4ECh. F - Prob. J.5ECh. F - Prob. J.6ECh. F - Prob. J.7ECh. F - Prob. J.8ECh. F - Prob. J.9ECh. F - Prob. J.10ECh. F - Prob. J.11ECh. F - Prob. J.12ECh. F - Prob. J.13ECh. F - Prob. J.14ECh. F - Prob. J.15ECh. F - Prob. J.16ECh. F - Prob. J.17ECh. F - Prob. J.18ECh. F - Prob. J.19ECh. F - Prob. J.20ECh. F - Prob. J.21ECh. F - Prob. J.22ECh. F - Prob. J.23ECh. F - Prob. J.24ECh. F - Prob. K.1ASTCh. F - Prob. K.1BSTCh. F - Prob. K.2ASTCh. F - Prob. K.2BSTCh. F - Prob. K.3ASTCh. F - Prob. K.3BSTCh. F - Prob. K.4ASTCh. F - Prob. K.4BSTCh. F - Prob. K.5ASTCh. F - Prob. K.5BSTCh. F - Prob. K.1ECh. F - Prob. K.2ECh. F - Prob. K.3ECh. F - Prob. K.4ECh. F - Prob. K.5ECh. F - Prob. K.6ECh. F - Prob. K.7ECh. F - Prob. K.8ECh. F - Prob. K.9ECh. F - Prob. K.10ECh. F - Prob. K.11ECh. F - Prob. K.12ECh. F - Prob. K.13ECh. F - Prob. K.14ECh. F - Prob. K.15ECh. F - Prob. K.16ECh. F - Prob. K.17ECh. F - Prob. K.18ECh. F - Prob. K.19ECh. F - Prob. K.20ECh. F - Prob. K.21ECh. F - Prob. K.22ECh. F - Prob. K.23ECh. F - Prob. K.24ECh. F - Prob. K.25ECh. F - Prob. K.26ECh. F - Prob. L.1ASTCh. F - Prob. L.1BSTCh. F - Prob. L.2ASTCh. F - Prob. L.2BSTCh. F - Prob. L.3ASTCh. F - Prob. L.3BSTCh. F - Prob. L.1ECh. F - Prob. L.2ECh. F - Prob. L.3ECh. F - Prob. L.4ECh. F - Prob. L.5ECh. F - Prob. L.6ECh. F - Prob. L.7ECh. F - Prob. L.8ECh. F - Prob. L.9ECh. F - Prob. L.10ECh. F - Prob. L.11ECh. F - Prob. L.12ECh. F - Prob. L.13ECh. F - Prob. L.14ECh. F - Prob. L.15ECh. F - Prob. L.16ECh. F - Prob. L.17ECh. F - Prob. L.18ECh. F - Prob. L.19ECh. F - Prob. L.20ECh. F - Prob. L.21ECh. F - Prob. L.22ECh. F - Prob. L.23ECh. F - Prob. L.24ECh. F - Prob. L.25ECh. F - Prob. L.29ECh. F - Prob. L.30ECh. F - Prob. L.31ECh. F - Prob. L.32ECh. F - Prob. L.33ECh. F - Prob. L.34ECh. F - Prob. L.35ECh. F - Prob. L.37ECh. F - Prob. L.38ECh. F - Prob. L.39ECh. F - Prob. L.40ECh. F - Prob. L.41ECh. F - Prob. L.42ECh. F - Prob. M.1ASTCh. F - Prob. M.1BSTCh. F - Prob. M.2ASTCh. F - Prob. M.2BSTCh. F - Prob. M.3ASTCh. F - Prob. M.3BSTCh. F - Prob. M.4ASTCh. F - Prob. M.4BSTCh. F - Prob. M.1ECh. F - Prob. M.2ECh. F - Prob. M.3ECh. F - Prob. M.4ECh. F - Prob. M.5ECh. F - Prob. M.6ECh. F - Prob. M.7ECh. F - Prob. M.8ECh. F - Prob. M.9ECh. F - Prob. M.10ECh. F - Prob. M.11ECh. F - Prob. M.12ECh. F - Prob. M.13ECh. F - Prob. M.14ECh. F - Prob. M.15ECh. F - Prob. M.16ECh. F - Prob. M.17ECh. F - Prob. M.18ECh. F - Prob. M.19ECh. F - Prob. M.20ECh. F - Prob. M.21ECh. F - Prob. M.22ECh. F - Prob. M.23ECh. F - Prob. M.25ECh. F - Prob. M.26ECh. F - Prob. M.27ECh. F - Prob. M.28E
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