15. The solubility of silver chloride can be increased by dissolving it in a solution containing ammonia. AgCI (s) -> Ag* (aq) + Cl (aq) K1 = 1.6 x 10-10 Ag* (aq) + 2NH3 (aq) -> Ag(NH3)2* (aq) K2 = 1.5 x 107 What is the value of the equilibrium constant for the overall reaction? AgCI (s) + 2NH3 (aq) -> Ag(NH3)2* (aq) + Cl (aq) Knet = ? А. 1.5 х 107 B. 2.4 x 10-3 %3D С. 3.1 x 10-3 D. 2.3 x 1014 E. 2.4 x 107po 1oitA 16 Todmao nouo 102 C beoly wDO/o 2alom 2 Inn mundliapo odi olusl bontom 00/to 2olum 01 1 lo

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ally all products
15. The solubility of silver chloride can be increased by dissolving it in a solution containing
ammonia.
AGCI (s) -> Ag* (aq) + Cl (aq) K1 = 1.6 x 10-10
Ag* (aq) + 2NH3 (aq) -> Ag(NH3)2* (aq) K2 = 1.5 x 107
1200/
What is the value of the equilibrium constant for the overall reaction?
AGCI (s) + 2NH3 (aq) -> Ag(NH3)2* (aq) + Cl· (aq) Knet = ?
A. 1.5 x 107
B. 2.4 x 10-3
С. 3.1 x 10-3
D. 2.3 x 1014
E. 24 x 107po oitA 10 Todmado nouoe1102Co boocln o 100o2alom 2105
o o. A sn mundiliupo orli oelualc bontomsD0 1o 25lomm 011 does
16. Carbon tetrachloride reacts at high temperatures with oxygen to produce two toxic gases,
phosgene and chlorine.
CCl((g) + '/½O2(g)-> COCI2(g) + Cl2(g), Ke = 4.4 x 10° at 1,000 K
Calculate Ke for the reaction 2CCI4(g) + O2(g) –> 2COC12(g) + 2C12(g).
A. 4.4 x 10°
01 x
B. 8.8 x 109
С. 1.9х 1010
D. 1.9 x 1019
E. 2.3 x 10-10
LS LON OC
ELSLON
INING:
Transcribed Image Text:ally all products 15. The solubility of silver chloride can be increased by dissolving it in a solution containing ammonia. AGCI (s) -> Ag* (aq) + Cl (aq) K1 = 1.6 x 10-10 Ag* (aq) + 2NH3 (aq) -> Ag(NH3)2* (aq) K2 = 1.5 x 107 1200/ What is the value of the equilibrium constant for the overall reaction? AGCI (s) + 2NH3 (aq) -> Ag(NH3)2* (aq) + Cl· (aq) Knet = ? A. 1.5 x 107 B. 2.4 x 10-3 С. 3.1 x 10-3 D. 2.3 x 1014 E. 24 x 107po oitA 10 Todmado nouoe1102Co boocln o 100o2alom 2105 o o. A sn mundiliupo orli oelualc bontomsD0 1o 25lomm 011 does 16. Carbon tetrachloride reacts at high temperatures with oxygen to produce two toxic gases, phosgene and chlorine. CCl((g) + '/½O2(g)-> COCI2(g) + Cl2(g), Ke = 4.4 x 10° at 1,000 K Calculate Ke for the reaction 2CCI4(g) + O2(g) –> 2COC12(g) + 2C12(g). A. 4.4 x 10° 01 x B. 8.8 x 109 С. 1.9х 1010 D. 1.9 x 1019 E. 2.3 x 10-10 LS LON OC ELSLON INING:
GrouP1:3'
Group2:5
GrouP3
CrrouP
PEI
%volume = yollll
volume solutill
TA no122 0 inio
Sut B
- x100
17. Calculate Kp for the reaction 2NOCI(g)–> 2NO(g) + Cl2(g) at 400C if Ke at 400C for
this reaction is 2.1 x 10-2.
A. 2.1 x 10-2
(2)0g
B. 1.7 x 10-3
C. 0.70
D. 1.2
Е. 3.8 x 104
18. On analysis, an equilibrium mixture for the reaction 2H2S(g)-> 2H2(g) + S2(g) was
found to contain 1.0 mol H2S, 4.0 mol H2, and 0.80 mol S2 in a 4.0 L vessel. Calculate the
equilibrium constant, Kc, for this reaction.
А. 1.6
В. 3.2
С. 12.8
botoval yarlgile elncton hw
botowl gila etbubong d a
D. 0.64
E. 0.8
ild bo
00 noo obioldo19
ibrium was
Transcribed Image Text:GrouP1:3' Group2:5 GrouP3 CrrouP PEI %volume = yollll volume solutill TA no122 0 inio Sut B - x100 17. Calculate Kp for the reaction 2NOCI(g)–> 2NO(g) + Cl2(g) at 400C if Ke at 400C for this reaction is 2.1 x 10-2. A. 2.1 x 10-2 (2)0g B. 1.7 x 10-3 C. 0.70 D. 1.2 Е. 3.8 x 104 18. On analysis, an equilibrium mixture for the reaction 2H2S(g)-> 2H2(g) + S2(g) was found to contain 1.0 mol H2S, 4.0 mol H2, and 0.80 mol S2 in a 4.0 L vessel. Calculate the equilibrium constant, Kc, for this reaction. А. 1.6 В. 3.2 С. 12.8 botoval yarlgile elncton hw botowl gila etbubong d a D. 0.64 E. 0.8 ild bo 00 noo obioldo19 ibrium was
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