164026 \(A B\) dissociates as \(2 A B(g) \rightleftharpoons 2 A(g)+B_2(g)\) When the initial pressure of \(A B\) is \(500 \mathrm{~mm}\), the total pressure becomes \(625 \mathrm{~mm}\) when the equilibrium is attained. Calculate \(K_P\) for the reaction assuming volume remains constant.
164028 Two systems \(\mathrm{PCl}_5(\mathrm{~g}) \rightleftharpoons \mathrm{PCl}_3(\mathrm{~g})+\mathrm{Cl}_2(\mathrm{~g})\) and \(\mathrm{COCl}_2(\mathrm{~g}) \rightleftharpoons \mathrm{CO}(\mathrm{g})+\mathrm{Cl}_2(\mathrm{~g})\) are simultaneously in equilibrium in a vessel at constant volume. If some \(\mathrm{CO}(\mathrm{g})\) is introduced in the vessel at constant volume, then at new equilibrium the concentration of:
164026 \(A B\) dissociates as \(2 A B(g) \rightleftharpoons 2 A(g)+B_2(g)\) When the initial pressure of \(A B\) is \(500 \mathrm{~mm}\), the total pressure becomes \(625 \mathrm{~mm}\) when the equilibrium is attained. Calculate \(K_P\) for the reaction assuming volume remains constant.
164028 Two systems \(\mathrm{PCl}_5(\mathrm{~g}) \rightleftharpoons \mathrm{PCl}_3(\mathrm{~g})+\mathrm{Cl}_2(\mathrm{~g})\) and \(\mathrm{COCl}_2(\mathrm{~g}) \rightleftharpoons \mathrm{CO}(\mathrm{g})+\mathrm{Cl}_2(\mathrm{~g})\) are simultaneously in equilibrium in a vessel at constant volume. If some \(\mathrm{CO}(\mathrm{g})\) is introduced in the vessel at constant volume, then at new equilibrium the concentration of:
164026 \(A B\) dissociates as \(2 A B(g) \rightleftharpoons 2 A(g)+B_2(g)\) When the initial pressure of \(A B\) is \(500 \mathrm{~mm}\), the total pressure becomes \(625 \mathrm{~mm}\) when the equilibrium is attained. Calculate \(K_P\) for the reaction assuming volume remains constant.
164028 Two systems \(\mathrm{PCl}_5(\mathrm{~g}) \rightleftharpoons \mathrm{PCl}_3(\mathrm{~g})+\mathrm{Cl}_2(\mathrm{~g})\) and \(\mathrm{COCl}_2(\mathrm{~g}) \rightleftharpoons \mathrm{CO}(\mathrm{g})+\mathrm{Cl}_2(\mathrm{~g})\) are simultaneously in equilibrium in a vessel at constant volume. If some \(\mathrm{CO}(\mathrm{g})\) is introduced in the vessel at constant volume, then at new equilibrium the concentration of:
164026 \(A B\) dissociates as \(2 A B(g) \rightleftharpoons 2 A(g)+B_2(g)\) When the initial pressure of \(A B\) is \(500 \mathrm{~mm}\), the total pressure becomes \(625 \mathrm{~mm}\) when the equilibrium is attained. Calculate \(K_P\) for the reaction assuming volume remains constant.
164028 Two systems \(\mathrm{PCl}_5(\mathrm{~g}) \rightleftharpoons \mathrm{PCl}_3(\mathrm{~g})+\mathrm{Cl}_2(\mathrm{~g})\) and \(\mathrm{COCl}_2(\mathrm{~g}) \rightleftharpoons \mathrm{CO}(\mathrm{g})+\mathrm{Cl}_2(\mathrm{~g})\) are simultaneously in equilibrium in a vessel at constant volume. If some \(\mathrm{CO}(\mathrm{g})\) is introduced in the vessel at constant volume, then at new equilibrium the concentration of:
164026 \(A B\) dissociates as \(2 A B(g) \rightleftharpoons 2 A(g)+B_2(g)\) When the initial pressure of \(A B\) is \(500 \mathrm{~mm}\), the total pressure becomes \(625 \mathrm{~mm}\) when the equilibrium is attained. Calculate \(K_P\) for the reaction assuming volume remains constant.
164028 Two systems \(\mathrm{PCl}_5(\mathrm{~g}) \rightleftharpoons \mathrm{PCl}_3(\mathrm{~g})+\mathrm{Cl}_2(\mathrm{~g})\) and \(\mathrm{COCl}_2(\mathrm{~g}) \rightleftharpoons \mathrm{CO}(\mathrm{g})+\mathrm{Cl}_2(\mathrm{~g})\) are simultaneously in equilibrium in a vessel at constant volume. If some \(\mathrm{CO}(\mathrm{g})\) is introduced in the vessel at constant volume, then at new equilibrium the concentration of: