Question

In: Chemistry

Each of the following reactions is allowed to come to equilibrium and then the volume is...

Each of the following reactions is allowed to come to equilibrium and then the volume is changed as indicated. Predict the effect (shift right, shift left, or no effect) of the indicated volume change.

Part A

I2(g)⇌2I(g) (volume is increased)

(volume is increased)
-no effect
-shifts left
-shifts right

Part B

2H2S(g)⇌2H2(g)+S2(g) (volume is decreased)

(volume is decreased)

-shifts left

-no effect
-shifts right

Part C

I2(g)+Cl2(g)⇌2ICl(g) (volume is decreased)

(volume is decreased)

-shifts left
-shifts right
-no effect

Solutions

Expert Solution


Related Solutions

Estimate the value of the equilibrium constant at 505 K for each of the following reactions....
Estimate the value of the equilibrium constant at 505 K for each of the following reactions. 2CO(g)+O2(g)⇌2CO2(g) 2H2S(g)⇌2H2(g)+S2(g)
Estimate the value of the equilibrium constant at 675 K for each of the following reactions....
Estimate the value of the equilibrium constant at 675 K for each of the following reactions. ΔG∘f for BrCl(g) is −1.0 kJ/mol. The standard molar entropy, S∘, for BrCl(g) is 240.0 J/mol⋅K. 3 significant figures in answer. A. 2NO2(g)⇌N2O4(g) ΔH∘f for N2O4(g) is 9.16 kJ/mol. B. Br2(g)+Cl2(g)⇌2BrCl(g) ΔH∘f for BrCl(g) is 14.6 kJ/mol.
Estimate the value of the equilibrium constant at 640 K for each of the following reactions....
Estimate the value of the equilibrium constant at 640 K for each of the following reactions. ΔH∘f and S∘ for BrCl(g) is 14.6 kJ/mol and 240.0 Jmol⋅K, respectively. for the following 1. 2NO2(g)⇌N2O4(g) 2.Br2(g)+Cl2(g)⇌2BrCl(g)
What is the conjugate acid of each of the following bases? Write the equilibrium reactions in...
What is the conjugate acid of each of the following bases? Write the equilibrium reactions in aqueous solution for each base. 1) Se2-. 2) HPO42-. 3) ClO3-. 4) [Co(NH3)5(OH)]2+. 5) SeO4-.
1) The volume of the system is increased for each of the following reactions below. Explain...
1) The volume of the system is increased for each of the following reactions below. Explain whether each system would shift forward, in reverse, or stay the same (no effect) and give brief explanation for your answer. (a) 2 SO2 (g) + O2 (g) <-- --> 2 SO3 (g) (b) H2 (g) + I2 (g) <-- --> 2HI (g) (c) CaCO3 (g) <-- --> CaO (s) + CO2 (g) (d) Ag+ (aq) + Cl- (aq) <-- --> AgCl (s) 2)...
Use the standard reduction potentials to calculate the equilibrium constant for each of the following reactions:...
Use the standard reduction potentials to calculate the equilibrium constant for each of the following reactions: Note if deltaG° for each reaction would be greater than or less than zero. Co2+(aq) + Sn(s) = Co(s) + Sn2+(aq) Ag+(aq) + Cr2+(aq) = Ag(s) + Cr3+(aq)
Compare and contrast limiting reagant reactions and equilibrium reactions?
Compare and contrast limiting reagant reactions and equilibrium reactions?
Compare and contrast limiting reagent reactions and equilibrium reactions
Compare and contrast limiting reagent reactions and equilibrium reactions
Determine whether the equilibrium for each acid-base reaction in the set of reactions above will lie...
Determine whether the equilibrium for each acid-base reaction in the set of reactions above will lie toward the left or the right. What does this mean about K for the reactions? CN-(aq) + H2O(l) ? OH-(aq) + HCN(aq) NH4+(aq) + CN-(aq) ? HCN(aq) + NH3(aq) H2PO4-(aq) + H2O(l) ? H3O+(aq) + HPO42-(aq) H2PO4- (aq) + CO32- (aq) ? HCO3- (aq) + HPO42- (aq)
Calculate the equilibrium constant for each of the reactions at 25∘C. Standard Electrode Potentials at 25...
Calculate the equilibrium constant for each of the reactions at 25∘C. Standard Electrode Potentials at 25 ∘C Reduction Half-Reaction E∘(V) Fe3+(aq)+3e− →Fe(s) -0.036 Sn2+(aq)+2e− →Sn(s) -0.14 Ni2+(aq)+2e− →Ni(s) -0.23 O2(g)+2H2O(l)+4e− →4OH−(aq) 0.40 Br2(l)+2e− →2Br− 1.09 I2(s)+2e− →2I− 0.54 Part A 2Fe3+(aq)+3Sn(s)→2Fe(s)+3Sn2+(aq) Express your answer using two significant figures. Part B O2(g)+2H2O(l)+2Ni(s)→4OH−(aq)+2Ni2+(aq) Express your answer using two significant figures. Part C Br2(l)+2I−(aq)→2Br−(aq)+I2(s) Express your answer using two significant figures.
ADVERTISEMENT
ADVERTISEMENT
ADVERTISEMENT