Chemical Kinetics and Reaction Rates - Applications

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Q. For a reaction at equilibrium, what happens if the concentration of a reactant is increased?
  • A. The equilibrium shifts to the right
  • B. The equilibrium shifts to the left
  • C. The equilibrium remains unchanged
  • D. The reaction stops
Q. For a reaction with a rate constant of 0.1 s^-1, what is the half-life for a first-order reaction?
  • A. 0.693 s
  • B. 6.93 s
  • C. 10 s
  • D. 0.1 s
Q. In a reaction mechanism, what is an intermediate?
  • A. A reactant that is consumed in the final product
  • B. A product that is formed and then consumed
  • C. A catalyst that speeds up the reaction
  • D. A transition state of the reaction
Q. What is the effect of increasing the surface area of a solid reactant on the reaction rate?
  • A. No effect on the rate
  • B. Decreases the rate
  • C. Increases the rate
  • D. Only affects gas-phase reactions
Q. What is the effect of temperature on the rate constant of a reaction according to the Arrhenius equation?
  • A. Rate constant decreases with temperature
  • B. Rate constant increases with temperature
  • C. Rate constant is unaffected by temperature
  • D. Rate constant is only affected by activation energy
Q. What is the primary role of a catalyst in a chemical reaction?
  • A. Increase the concentration of reactants
  • B. Lower the activation energy
  • C. Change the equilibrium position
  • D. Increase the temperature of the reaction
Q. What is the term for the minimum energy required for a reaction to occur?
  • A. Enthalpy
  • B. Entropy
  • C. Activation energy
  • D. Gibbs free energy
Q. Which of the following statements about reaction rates is true?
  • A. Reaction rates are always constant
  • B. Reaction rates can change with time
  • C. Reaction rates are independent of temperature
  • D. Reaction rates are only affected by concentration
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