When determining the equilibrium concentrations for the reaction [A][B] [AB] a simplifying assumption can be used under certain conditions to avoid solving a quadratic equation. AB(g) A(g) + B(g) K₁ = Ks R [AB] -X [AB] Classify each situation by whether the simplifying assumption can be used or whether the quadratic formula is require Simplifying assumption can be used [AB] 0.383 M, K, 3.19 x 10-3 Answer Bank [AB] = 0.365 M. K. = 5.96 x 10- Quadratic formula required [AB] 0.00392 M. K. = 3.39 x 10-6

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Chapter12: Chemical Equilibrium
Section: Chapter Questions
Problem 12.22PAE
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When determining the equilibrium concentrations for the reaction
[A][B]
[AB]
a simplifying assumption can be used under certain conditions to avoid solving a quadratic equation.
x²
x²
[AB] - x
[AB]
Classify each situation by whether the simplifying assumption can be used or whether the quadratic formula is required.
AB(g) A(g) + B(g) K₁ =
Ke =
2
Simplifying assumption can be used
[AB] = 0.383 M, K = 3.19 x 10-³
[AB] = 0.0466 M, K = 0.000168
Answer Bank
[AB] = 0.365 M, K₂ = 5.96 x 10-
[AB] = 0.0208 M, K. = 4.62 x 10-6
Quadratic formula required
[AB] = 0.00392 M, K. = 3.39 x 10-6
Transcribed Image Text:When determining the equilibrium concentrations for the reaction [A][B] [AB] a simplifying assumption can be used under certain conditions to avoid solving a quadratic equation. x² x² [AB] - x [AB] Classify each situation by whether the simplifying assumption can be used or whether the quadratic formula is required. AB(g) A(g) + B(g) K₁ = Ke = 2 Simplifying assumption can be used [AB] = 0.383 M, K = 3.19 x 10-³ [AB] = 0.0466 M, K = 0.000168 Answer Bank [AB] = 0.365 M, K₂ = 5.96 x 10- [AB] = 0.0208 M, K. = 4.62 x 10-6 Quadratic formula required [AB] = 0.00392 M, K. = 3.39 x 10-6
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