Chemistry Unit 6 Worksheet 4 Answer Key: Mastering Equilibrium Constants
Welcome to the comprehensive answer key for Chemistry Unit 6 Worksheet 4, focusing on equilibrium constants. This resource is designed to help you understand and master the concepts of equilibrium, Kc and Kp, and their applications. Let's dive into the answers, explanations, and tips to enhance your learning experience.
Understanding Equilibrium Constants
Before we proceed with the answers, let's briefly recap equilibrium constants. Equilibrium constants (Kc or Kp) measure the extent to which a chemical reaction proceeds at equilibrium. Kc is used for reactions in aqueous solutions, while Kp is used for reactions in the gas phase or when gases are involved.
Worksheet 4: Answer Key
Question 1: Calculate Kc for the reaction at equilibrium: 2 CH3OH(l) ⇌ 2 CH3CHO(l) + 2 H2O(l)
At equilibrium, [CH3OH] = 0.30 M, [CH3CHO] = 0.20 M, and [H2O] = 1.00 M.

| Reactants | Products |
|---|---|
| 2 CH3OH | 2 CH3CHO |
Kc = ([CH3CHO]² * [H2O]²) / ([CH3OH]²) = (0.20² * 1.00²) / (0.30²) = 0.133
Question 2: Calculate Kp for the reaction at equilibrium: 2 SO2(g) + O2(g) ⇌ 2 SO3(g)
At equilibrium, P_SO2 = 0.50 atm, P_O2 = 0.25 atm, and P_SO3 = 0.30 atm.
Kp = P_SO3² / (P_SO2² * P_O2) = 0.30² / (0.50² * 0.25) = 0.24

Question 3: Predict the effect on Kc when the concentration of a reactant is increased.
- Increase: Kc increases because more reactant is available to produce more products.
- Decrease: Kc decreases because the reaction favors the reactants, trying to reach a new equilibrium.
Question 4: Explain Le Chatelier's Principle in your own words and provide an example.
Le Chatelier's Principle states that if a change in conditions is imposed on a system at equilibrium, the position of equilibrium will shift in a way that tends to reduce the effect of that change. For example, if the concentration of a reactant is increased, the equilibrium shifts to produce more products, increasing Kc.
Question 5: Calculate the equilibrium constant (Kc or Kp) for the given reaction and conditions.
For the reaction: 2 A(g) + B(g) ⇌ 2 AB(g), at equilibrium, P_A = 0.40 atm, P_B = 0.30 atm, and P_AB = 0.35 atm.
Kp = P_AB / (P_A * P_B) = 0.35 / (0.40 * 0.30) = 0.617

Congratulations! You've reached the end of the answer key. By working through these problems and understanding the concepts, you've taken a significant step towards mastering equilibrium constants. Keep practicing and exploring related topics to solidify your understanding.





















