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Which of the following statements is(are) true? Correct the false statement(s). a. When a reactant is added to a system at equilibrium at a given temperature, the reaction will shift right to reestablish equilibrium. b. When a product is added to a system at equilibrium at a given temperature, the value of \(K\) for the reaction will increase when equilibrium is reestablished. c. When temperature is increased for a reaction at equilibrium, the value of \(K\) for the reaction will increase. d. When the volume of a reaction container is increased for a system at equilibrium at a given temperature, the reaction will shift left to reestablish equilibrium. e. Addition of a catalyst (a substance that increases the speed of the reaction) has no effect on the equilibrium position.

Short Answer

Expert verified
The correct statements are: a. True - When a reactant is added, the reaction will shift right to reestablish equilibrium. b. False - The value of equilibrium constant K remains constant at a given temperature. c. Cannot classify - The effect on K depends on the nature of the reaction (exothermic or endothermic). d. False - The system will shift its position to the side with more moles of gas, not necessarily left. e. True - Addition of a catalyst has no effect on the equilibrium position.

Step by step solution

01

Statement a

When a reactant is added to a system at equilibrium, according to Le Châtelier's principle, the equilibrium will shift in the direction that consumes the added reactant. In this case, the equilibrium will shift to the right since the reaction moves forward consuming reactants and producing products. So, the statement is true.
02

Statement b

Adding a product to a system at equilibrium will cause the system to respond according to Le Châtelier's principle. The system will shift its position in the direction where the product is consumed, in this case, by moving the reaction to the left (a reverse reaction). However, the value of the equilibrium constant K remains constant at a given temperature, so the statement is false.
03

Statement c

The effect of temperature change on the equilibrium constant depends on the nature of the reaction (exothermic or endothermic). For an endothermic reaction, increasing the temperature will favor the forward reaction and hence increase the value of K. For an exothermic reaction, increasing the temperature will favor the reverse reaction and hence decrease the value of K. Since the statement does not specify the type of reaction, it is not possible to classify it as either true or false.
04

Statement d

When the volume of the reaction container is increased, the system will respond by shifting the equilibrium position to the side with more moles of gas. It does not specify if more moles are on the left or right side of the reaction. So, we can't say whether the reaction necessarily shifts left or right. Thus, the statement is false.
05

Statement e

The addition of a catalyst speeds up the reaction rate for both the forward and reverse reactions. A catalyst lowers the activation energy for the reaction, but it doesn't change the equilibrium constant or the equilibrium position for the reaction. Therefore, the statement is true.

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Most popular questions from this chapter

Suppose the reaction system $$\mathrm{UO}_{2}(s)+4 \mathrm{HF}(g) \rightleftharpoons \mathrm{UF}_{4}(g)+2 \mathrm{H}_{2} \mathrm{O}(g)$$,has already reached equilibrium. Predict the effect that each of the following changes will have on the equilibrium position. Tell whether the equilibrium will shift to the right, will shift to the left, or will not be affected. a. Additional UO \(_{2}(s)\) is added to the system. b. The reaction is performed in a glass reaction vessel; \(\mathrm{HF}(g)\) attacks and reacts with glass. c. Water vapor is removed.

A sample of \(S_{8}(g)\) is placed in an otherwise empty rigid container at \(1325 \mathrm{K}\) at an initial pressure of 1.00 atm, where it decomposes to \(\mathrm{S}_{2}(g)\) by the reaction $$\mathrm{S}_{8}(g) \rightleftharpoons 4 \mathrm{S}_{2}(g)$$. At equilibrium, the partial pressure of \(S_{8}\) is 0.25 atm. Calculate \(K_{\mathrm{p}}\) for this reaction at \(1325 \mathrm{K}\)

Nitrogen gas \(\left(\mathrm{N}_{2}\right)\) reacts with hydrogen gas \(\left(\mathrm{H}_{2}\right)\) to form ammonia \(\left(\mathrm{NH}_{3}\right) .\) At \(200^{\circ} \mathrm{C}\) in a closed container, 1.00 atm of nitrogen gas is mixed with 2.00 atm of hydrogen gas. At equilibrium,the total pressure is 2.00 atm. Calculate the partial pressure of hydrogen gas at equilibrium, and calculate the \(K_{\mathrm{p}}\) value for this reaction.

At a particular temperature, 8.1 moles of \(\mathrm{NO}_{2}\) gas is placed in a 3.0 -L container. Over time the \(\mathrm{NO}_{2}\) decomposes to NO and \(\mathrm{O}_{2}:\) $$2 \mathrm{NO}_{2}(g) \rightleftharpoons 2 \mathrm{NO}(g)+\mathrm{O}_{2}(g)$$ At equilibrium the concentration of \(\mathrm{NO}(g)\) was found to be 1.4 mol/L. Calculate the value of \(K\) for this reaction.

Calculate a value for the equilibrium constant for the reaction $$\mathbf{O}_{2}(g)+\mathbf{O}(g) \rightleftharpoons \mathbf{O}_{3}(g)$$.given $$\begin{aligned}& \mathrm{NO}_{2}(g) \stackrel{h v}{\rightleftharpoons} \mathrm{NO}(g)+\mathrm{O}(g) & & K=6.8 \times 10^{-49} \\\\\mathrm{O}_{3}(g)+\mathrm{NO}(g) & \rightleftharpoons \mathrm{NO}_{2}(g)+\mathrm{O}_{2}(g) & & K=5.8 \times 10^{-34}\end{aligned}$$.(Hint: When reactions are added together, the equilibrium expressions are multiplied.) (Hint: When reactions are added together, the equilibrium expressions are multiplied.)

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