If K_1 and K_2 are the respective equilibrium constants for the two reactions, XeF_(6(g)) + H_2O_((g)) to XeOF_(4(g)) + 2HF_((g)) XeO_(4(g)) + XeF_(6(g)) to XeOF_(4(g)) + XeO_3F_(2(g)) The equilibrium constant for the reaction, XeO_(4(g)) + 2HF_((g)) to XeO_(3)F_(2(g)) + H_2O_((g)) is
If K_1 and K_2 are the respective equilibrium constants for the two reactions, XeF_(6(g)) + H_2O_((g)) to XeOF_(4(g)) + 2HF_((g)) XeO_(4(g)) + XeF_(6(g)) to XeOF_(4(g)) + XeO_3F_(2(g)) The equilibrium constant for the reaction, XeO_(4(g)) + 2HF_((g)) to XeO_(3)F_(2(g)) + H_2O_((g)) is