The reaction 20F₂(g) 2F₂(g) + O₂(g) has an equilibrium constant K, (in terms of pressures) at 25 °C of 6.19×10-4. Calculate the concentration of F2 that will be present at 25 °C in equilibrium with OF₂ (at a concentration of 3.22x10-2 mol L-1) and O₂ (at a concentration of 1.87×10-³ mol L-¹). [F₂] = mol L-1
The reaction 20F₂(g) 2F₂(g) + O₂(g) has an equilibrium constant K, (in terms of pressures) at 25 °C of 6.19×10-4. Calculate the concentration of F2 that will be present at 25 °C in equilibrium with OF₂ (at a concentration of 3.22x10-2 mol L-1) and O₂ (at a concentration of 1.87×10-³ mol L-¹). [F₂] = mol L-1
Chapter13: Chemical Equilibrium
Section: Chapter Questions
Problem 13Q: Suppose a reaction has the equilibrium constant K = 1.3 108. What does the magnitude of this...
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![The reaction
20F2(g) 2F₂(g) + O₂(g)
has an equilibrium constant Kp (in terms of pressures) at 25 °C of 6.19x10-4. Calculate the concentration of F₂ that will be present
at 25 °C in equilibrium with OF₂ (at a concentration of 3.22x10-2 mol L-1) and O₂ (at a concentration of 1.87×10-3 mol L-¹).
[F₂] =|
mol L-1](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F3bb49a17-038c-42a0-803c-94fa3ef6a0af%2F563d01a6-9376-4350-b98f-9ca0aa697dc7%2Fjqlcco6_processed.jpeg&w=3840&q=75)
Transcribed Image Text:The reaction
20F2(g) 2F₂(g) + O₂(g)
has an equilibrium constant Kp (in terms of pressures) at 25 °C of 6.19x10-4. Calculate the concentration of F₂ that will be present
at 25 °C in equilibrium with OF₂ (at a concentration of 3.22x10-2 mol L-1) and O₂ (at a concentration of 1.87×10-3 mol L-¹).
[F₂] =|
mol L-1
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