a certain temperature, the equilibrium constant K for the following reaction is 8.80 x 10 H,(g) + Cl,(g) = 2 HC1(g) e this information to complete the following table. uppose a 30. L reaction vessel is filled with 1.0 mol of HCI. hat can you say about the composition of the mixture in the essel at equilibrium? There will be very little H2 and Cl2. x10 There will be very little HCI. Neither of the above is true. hat is the equilibrium constant for the following reaction? Be re your answer has the correct number of significant digits. K =

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- 10.
At a certain temperature, the equilibrium constant K for the following reaction is 8.80 x 10
H,(g) + Cl,(g) =2HCI(g)
Use this information to complete the following table.
Suppose a 30. L reaction vessel is filled with 1.0 mol of HCI.
What can you say about the composition of the mixture in the
vessel at equilibrium?
O There will be very little H, and Cl).
O There will be very little HCI.
O Neither of the above is true.
What is the equilibrium constant for the following reaction? Be
sure your answer has the correct number of significant digits.
K =
2 HCl(g)
H,(9)+Cl,(9)
What is the equilibrium constant for the following reaction? Be
sure your answer has the correct number of significant digits.
K =||
3 H2(9)+3Cl,(9)
6 HCl(g)
Transcribed Image Text:- 10. At a certain temperature, the equilibrium constant K for the following reaction is 8.80 x 10 H,(g) + Cl,(g) =2HCI(g) Use this information to complete the following table. Suppose a 30. L reaction vessel is filled with 1.0 mol of HCI. What can you say about the composition of the mixture in the vessel at equilibrium? O There will be very little H, and Cl). O There will be very little HCI. O Neither of the above is true. What is the equilibrium constant for the following reaction? Be sure your answer has the correct number of significant digits. K = 2 HCl(g) H,(9)+Cl,(9) What is the equilibrium constant for the following reaction? Be sure your answer has the correct number of significant digits. K =|| 3 H2(9)+3Cl,(9) 6 HCl(g)
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The reactions for which equilibrium constant is very small hardly form any product of sizeable quantity.

 

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