For the equilibrium -3 2IBr(g) = I₂(g) + Br₂ (g) K₂ = 8.5 x 107 at 150 °C. If 2.2x10-2 atm of IBr is placed in a 2.0-L container, what is the partial pressure of I2 after equilibrium is reached? Express your answer to two significant figures and include the appropriate units. μA Value Units Value If 2.2x10-2 atm of IBr is placed in a 2.0-L container, what is the partial pressure of Br2 after equilibrium is reached? Express your answer to two significant figures and include the appropriate units. www. ? Units ?

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For the equilibrium
2IBr(g) = I₂(g) + Br₂ (9) Kp = 8.5 × 10-³ at 150 °C.
If 2.2x10-² atm of IBr is placed in a 2.0-L container, what is the partial pressure of I2 after equilibrium is reached?
Express your answer to two significant figures and include the appropriate units.
Value
Units
If 2.2x10-2 atm of IBr is placed in a 2.0-L container, what is the partial pressure of Br2 after equilibrium is reached?
Express your answer to two significant figures and include the appropriate units.
Value
Units
?
Transcribed Image Text:For the equilibrium 2IBr(g) = I₂(g) + Br₂ (9) Kp = 8.5 × 10-³ at 150 °C. If 2.2x10-² atm of IBr is placed in a 2.0-L container, what is the partial pressure of I2 after equilibrium is reached? Express your answer to two significant figures and include the appropriate units. Value Units If 2.2x10-2 atm of IBr is placed in a 2.0-L container, what is the partial pressure of Br2 after equilibrium is reached? Express your answer to two significant figures and include the appropriate units. Value Units ?
Expert Solution
Step 1

Given : 

K= 8.5 x 10-3 atm 

Initial pressure of IBr(g) = 2.2 x 10-2 atm 

Volume of vessel = 2.0 L 

Temperature = 150 ° C 

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