Final answer:
To calculate the value of Kp, we need to use the equation Kp = Kc * (RT)^Δn. In this case, the equation is Kp = Kc * (RT)^Δn. Since no information is given about the change in the number of moles of gas, we can assume that Δn = 0. Therefore, the value of Kp is equal to the value of Kc.
Step-by-step explanation:
To calculate the value of Kp, we need to use the equation:
Kp = Kc * (RT)^Δn
In this equation, Kp is the equilibrium constant in terms of partial pressures, Kc is the equilibrium constant in terms of concentrations, R is the gas constant, T is the temperature in Kelvin, and Δn is the change in the number of moles of gas.
In this case, the equation is:
Kp = Kc * (RT)^Δn
Since no information is given about the change in the number of moles of gas, we can assume that Δn = 0. Therefore, the value of Kp is equal to the value of Kc.