The equilibrium constant for the chemical equation N₂(g) + 3H₂(g)2NH₂(g) is Kp = 0.249 at 253 °C. Calculate the value of Ke for the reaction at 253 °C. Kc =

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Chapter12: Gaseous Chemical Equilibrium
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General Chemistry 4th Edition
The equilibrium constant for the chemical equation
N₂(g) + 3H₂(g)2NH₂(g)
is Kp = 0.249 at 253 °C. Calculate the value of Ke for the reaction at 253 °C.
Kc =
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Transcribed Image Text:General Chemistry 4th Edition The equilibrium constant for the chemical equation N₂(g) + 3H₂(g)2NH₂(g) is Kp = 0.249 at 253 °C. Calculate the value of Ke for the reaction at 253 °C. Kc = O Search University presente
Macmillan Learning
At a certain temperature, 0.980 mol SO, is placed in a 2.00 L container.
2 SO₂(g) 2 SO₂(g) + O₂(g)
At equilibrium, 0.130 mol O₂ is present. Calculate Kc.
Kc =
O Search
Transcribed Image Text:Macmillan Learning At a certain temperature, 0.980 mol SO, is placed in a 2.00 L container. 2 SO₂(g) 2 SO₂(g) + O₂(g) At equilibrium, 0.130 mol O₂ is present. Calculate Kc. Kc = O Search
Expert Solution
Question -1

Given ->

N2(g) + 3H2(g) -----> 2NH3(g)   Kp= 0.249 

T = 253°C = 253 + 273 = 526 K 

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