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9 At a certain temperature, the Ko for the decomposition of H2S is 0 876. Initially,...
At a certain temperature, the Kp for the decomposition of H2S is 0.775 Initially, only H2S is present at a pressure of 0.262 atm in a closed container. What is the total pressure in the container at equilibrium? Number atm
At a certain temperature, the Kp for the decomposition of H2S is 0.754. Initially, only H2S is present at a pressure of 0.139 atm in a closed container. What is the total pressure in the container at equilibrium?
at a certain temperature, the Kp for the decomposition of
H2S is 0.866 atm. Initially, only H2S is
present at a pressure of 0.277 atm in a closed container. What is
the total pressure in the container at equilibrium?
H2S(g)
H2(g) + S(g)
P.S. it said .647 was incorrect
At a certain temperature, the Kp for the decomposition of H2S is 0.900 . H2S(g)↽−−⇀H2(g)+S(g) Initially, only H2S is present at a pressure of 0.294 atm in a closed container. What is the total pressure in the container at equilibrium?
At a certain temperature, the Kp for the decomposition of H2S is 0.861. H2S (g) <----> H2(g) + S(g) Initially, only H2S is present at a pressure of 0.179 atm in a closed container. What is the total pressure in the container at equilibrium?
At a certain temperature, the ?p for the decomposition of H2S is 0.813. H2S(g)↽−−⇀H2(g)+S(g) Initially, only H2S is present at a pressure of 0.201 atm in a closed container. What is the total pressure in the container at equilibrium?
At a certain temperature, the Kp for the decomposition of H2S is 0.719. H2S(g)=H2(g)+S(g) Initially, only H2S is present at a pressure of 0.277 atm in a closed container. What is the total pressure in the container at equilibrium?
At a certain temperature, the Kp for the decomposition of H2S is 0.782. H2S(g)−⇀↽−H2(g)+S(g) Initially, only H2S is present at a pressure of 0.289 atm in a closed container. What is the total pressure in the container at equilibrium?
At a certain temperature, the ?p for the decomposition of H2S is 0.709. H2S(g)↽−−⇀H2(g)+S(g) Initially, only H2S is present at a pressure of 0.131 atm in a closed container. What is the total pressure in the container at equilibrium?
At a certain temperature, the Kp for the decomposition of H2S is
0.828.
At a certain temperature, the K_p for the decomposition of H_2S is 0.828. H_2(g) H_2(g) + S(g) Initially, only H_2S is present at a pressure of 0.269 atm in a closed container. What is the total pressure in the container at equilibrium?