10. The equilibrium constant Kp for the reaction (CH3),CCI (g) = (CH3),C=CH2 (g) + HCl (g) is 3.45 at 500. K. (5.00 x 10² K) Calculate the value of Kc at 500. K. For the same reaction, calculate the molar concentration of reactants and products at equilibrium if initially 1.00 mol of (CH):CCl was placed in a 5.00 L vessel.
10. The equilibrium constant Kp for the reaction (CH3),CCI (g) = (CH3),C=CH2 (g) + HCl (g) is 3.45 at 500. K. (5.00 x 10² K) Calculate the value of Kc at 500. K. For the same reaction, calculate the molar concentration of reactants and products at equilibrium if initially 1.00 mol of (CH):CCl was placed in a 5.00 L vessel.
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please show the work by substituting in the quadratic equation x^2+0.0840-0.0168=0 am stuck at this thank you
![10. The equilibrium constant Kp for the reaction (CH3);CCI (g) = (CH;),C=CH2 (g) + HC1 (g) is 3.45 at 500.
K. (5.00 x 10° K)
Calculate the value of Kc at 500. K.
For the same reaction, calculate the molar concentration of reactants and products at equilibrium if initially
1.00 mol of (CH:):CCl was placed in a 5.00 L vessel.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fa6ecc947-ff90-4893-8cf1-1ed20ff242ac%2F5297e697-ce4c-4c93-854c-ada4f85b2f73%2F7s28by1q_processed.png&w=3840&q=75)
Transcribed Image Text:10. The equilibrium constant Kp for the reaction (CH3);CCI (g) = (CH;),C=CH2 (g) + HC1 (g) is 3.45 at 500.
K. (5.00 x 10° K)
Calculate the value of Kc at 500. K.
For the same reaction, calculate the molar concentration of reactants and products at equilibrium if initially
1.00 mol of (CH:):CCl was placed in a 5.00 L vessel.
Expert Solution
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Step 1
Given :
Kp= 3.45
Temperature= 500 K
Initial moles of (CH3)3CCl = 1.00 moles
Volume of solution = 5.0 L
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