5. Consider the following reaction: 2NOCI (g) = 2NO (g) + Cl2 (g) a. Write the reaction quotient and the equilibrium constant expression for this reaction. b. What items go into the numerator in the reaction quotient and equilibrium constant expression? c. What items go into the denominator in the reaction quotient and equilibrium constant expression? d. What determines the exponent for each item in the reaction quotient and equilibrium constant expressions? e. What is the difference between the items used in the reaction quotient and the items used in the equilibrium constant expression? f. For reactions in solution, molar concentrations are usually used in equilibrium constant expressions (designated K or Kc). In gases, partial pressures can also be used (designated Kp). Equilibrium partial
5. Consider the following reaction: 2NOCI (g) = 2NO (g) + Cl2 (g) a. Write the reaction quotient and the equilibrium constant expression for this reaction. b. What items go into the numerator in the reaction quotient and equilibrium constant expression? c. What items go into the denominator in the reaction quotient and equilibrium constant expression? d. What determines the exponent for each item in the reaction quotient and equilibrium constant expressions? e. What is the difference between the items used in the reaction quotient and the items used in the equilibrium constant expression? f. For reactions in solution, molar concentrations are usually used in equilibrium constant expressions (designated K or Kc). In gases, partial pressures can also be used (designated Kp). Equilibrium partial
Chemistry
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ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Chapter1: Chemical Foundations
Section: Chapter Questions
Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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I only need help with D E and F please

Transcribed Image Text:5. Consider the following reaction:
2NOCI (g) = 2N0 (g) + Cl2 (g)
a. Write the reaction quotient and the equilibrium constant expression for this reaction.
b. What items go into the numerator in the reaction quotient and equilibrium constant expression?
c. What items go into the denominator in the reaction quotient and equilibrium constant expression?
d. What determines the exponent for each item in the reaction quotient and equilibrium constant
expressions?
e. What is the difference between the items used in the reaction quotient and the items used in the
equilibrium constant expression?
f. For reactions in solution, molar concentrations are usually used in equilibrium constant expressions
(designated K or Kc). In gases, partial pressures can also be used (designated Kp). Equilibrium partial
pressures of NOCI, NO, and Clz in a container at 300 K are 1.2 atm, 0.050 atm, and 0.30 atm,
respectively. Calculate a value for the equilibrium constant Kp at 300 K.
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