N₂(g) + 3H₂(g) = 2NH3(g) K₂ = 4.51 x 10-5 @ 723 K Use the initial conditions below to calculate the reaction quotient, Q. [NH3] = 98 atm; [N₂] = 45 atm; [H₂] = 55 atm Q = [?] x 10?] Coefficient (green) Exponent (yellow) Enter

Chemistry & Chemical Reactivity
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Chapter15: Principles Of Chemical Reactivity: Equilibria
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Problem 3PS: Kc = 5.6 1012 at 500 K for the dissociation of iodine molecules to iodine atoms. I2(g) 2 I(g) A...
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N₂(g) + 3H₂(g) = 2NH3(g)
Kp = 4.51 x 10-5 @ 723 K
Use the initial conditions below to
calculate the reaction quotient, Q.
[NH3] = 98 atm; [N₂] = 45 atm; [H₂] = 55 atm
Q = [?] x 10¹?]
Coefficient (green)
Enter
Exponent (yellow)
Transcribed Image Text:N₂(g) + 3H₂(g) = 2NH3(g) Kp = 4.51 x 10-5 @ 723 K Use the initial conditions below to calculate the reaction quotient, Q. [NH3] = 98 atm; [N₂] = 45 atm; [H₂] = 55 atm Q = [?] x 10¹?] Coefficient (green) Enter Exponent (yellow)
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