Question

1) Consider the following reaction at equilibrium. What effect will decreasing the pressure of the reaction...

1) Consider the following reaction at equilibrium. What effect will decreasing the pressure of the reaction mixture have on the system?

2 H2S(g) + 3 O2(g) ⇌ 2 H2O(g) + 2 SO2(g)

A) The reaction will shift to the right in the direction of products.

B) No effect will be observed.

C) The reaction will shift to the left in the direction of reactants.

D) The equilibrium constant will decrease.

E) The equilibrium constant will increase.

Homework Answers

Know the answer?
Your Answer:

Post as a guest

Your Name:

What's your source?

Earn Coins

Coins can be redeemed for fabulous gifts.

Not the answer you're looking for?
Ask your own homework help question
Similar Questions
Consider the following reaction at equilibrium. What effect will reducing the volume have on the system?...
Consider the following reaction at equilibrium. What effect will reducing the volume have on the system? C3H8(g) + 5 O2(g) ⇌ 3 CO2(g) + 4 H2O(l) ΔH° = -2220 kJ The reaction will shift to the left in the direction of reactants. The equilibrium constant will increase. No effect will be observed. The equilibrium constant will decrease. The reaction will shift to the right in the direction of products.
Part I A) The solubility of silver bromide can be increased by dissolving it in a...
Part I A) The solubility of silver bromide can be increased by dissolving it in a solution containing the thiosulfate anion. AgBr(s) Ag+ (aq) + Br- (aq)    K1 = 7.7 x 10-13 Ag+(aq) + 2S2O32- (aq) Ag(S2O3)23- (aq)     K2 = 4.7 x 1013 What is the value of the equilibrium constant for the overall reaction? AgBr(s) + 2S2O32-(aq) Ag(S2O3)23-(aq) + Br-(aq)    a) 12.4x1013 b) 3.6x10-9    c) 4.7x10-9   d) 4.7x1013    e) 36 B) Consider the following reaction at...
Consider the following equilibrium in a sealed reactor: C2H4(g)+ 5O2 --> 4CO2(g)+ 2H2O(g) Predict the effect...
Consider the following equilibrium in a sealed reactor: C2H4(g)+ 5O2 --> 4CO2(g)+ 2H2O(g) Predict the effect of each of the following changes on the equilibrium position of the reaction. The reaction will either shift to the left (forming more reactants), stay the same, or shift to the right (forming more products). a) the partial pressure of O2(g) b) The volume of the reactor is double c) A total of 10.0 bar of Ar gas is added to the reactor.
11) Consider the reaction 2 SO2(g) + O2(g) <=> 2 SO3(g), which is exothermic as written....
11) Consider the reaction 2 SO2(g) + O2(g) <=> 2 SO3(g), which is exothermic as written. What would be the effect on the equilibrium position of adding a suitable catalyst? A. Reaction would go to the right, making more "reactants" B. No change on the equilibrium position C. Reaction would go to the left, making more "products" D. Reaction would go to the right, making more "products" E. Reaction would go to the left, making more "reactants" 12) Consider the...
15.   Consider the following reaction: 2 2 eqH O (g)   + Cl O (g)      2 HClO...
15.   Consider the following reaction: 2 2 eqH O (g)   + Cl O (g)      2 HClO (g)        ÄH = 3.00 kcal    K = 0.0900 at 25°C a. Does the equilibrium favor products or reactants at 25°C? The equilibrium favors reactants (K < 1) b. Would the equilibrium shift in the favor of reactants (left) or products (right) if: a. The temperature was lowered? b. H2O was added to the reaction mixture? c. The volume was increased? d. HClO was removed...
1) Predict the effect on the equilibrium system if the reaction temperature is decreased. 2CO2(g) +...
1) Predict the effect on the equilibrium system if the reaction temperature is decreased. 2CO2(g) + heat = 2CO(g) +O2(g) a) Will shift to the side that the light side of the force is on b) it will shift to the left favoring the reactants c) there will be no effect 4) Predict the color of the reation mixture at -15 degrees Celsius 2NO2= Brown and N2O4= Colorless 2NO2(g) <------------> N2O4(g) a) Purple b)Aqua c)colorless
Question 110 pts Determine the effect on the following equilibrium if the partial pressure of oxygen...
Question 110 pts Determine the effect on the following equilibrium if the partial pressure of oxygen is decreased. 2H2S(g) + O2(g) ⟷ 2S(s) + 2H2O(g) Group of answer choices Increase in the partial pressure of water and hydrogen sulfide gas would result. The equilibrium will shift right. A decrease in the partial pressure of water and hydrogen sulfide gas would result. The equilibrium will shift left. No effect on the equilibrium.
please answear each question 1)At equilibrium, ________. a)the rates of the forward and reverse reactions are...
please answear each question 1)At equilibrium, ________. a)the rates of the forward and reverse reactions are equal b)the value of the equilibrium constant is 1 c)all chemical reactions have ceased d)the rate constants of the forward and reverse reactions are equal e)the limiting reagent has been consumed 2)The equilibrium-constant expression depends on the ________ of the reaction. a) stoichiometry b) mechanism c) the quantities of reactants and products initially present d) temperature e) stoichiometry and mechanism 3)Given the following reaction...
5) (10 pts) For the endothermic reaction below initially at equilibrium, predict the shift in the...
5) (10 pts) For the endothermic reaction below initially at equilibrium, predict the shift in the reaction for each of the following scenarios. C(s) + H2O (g) ⇌ CO (g) + H2 (g) Disturbance Shift (left/right) a. Increase the amount of Water b. Decrease the pressure by half c. Remove C from the reaction d. Add hydrogen to the mixture e. Increase the temperature
The reaction below is at equilibrium. Use Le Chatelier's principle to predict the effect of adding...
The reaction below is at equilibrium. Use Le Chatelier's principle to predict the effect of adding ammonia gas to the equilibrium reaction mixture. N2(g) + 3H2(g) 2NH3(g) A. The equilibrium position will remain unchanged. B. The equilibrium position will shift to the right. C. The equilibrium position will shift to the left. D. The equilibrium constant will increase. E. All of the nitrogen gas will be used up.
ADVERTISEMENT
Need Online Homework Help?

Get Answers For Free
Most questions answered within 1 hours.

Ask a Question
ADVERTISEMENT