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2H(2)(g)+O(2)(g)to2H(2)O(l)+xkJ In the a...

`2H_(2)(g)+O_(2)(g)to2H_(2)O(l)+xkJ` In the above reaction

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2H_(2)(g)+O_(2)(g)rarr2H_(2)O(g) , In this reaction, if the rate of formation of 2H_(2)O(g) " is xmol.L"^(-1).s^(-1) , what will be the of disappearance of H_(2)(g) and O_(2)(g) ?

For 2H_(2)O_(2)to2H_(2)O+O_(2) What type of Redox reaction is it?

At 1 atm and 298K DeltaH^(0) value of the reaction 2H_(2)(g)+O_(2)(g)to2H_(2)O(l) is -572 kJ. Calculate the change in entropy of the system and surroundings for this reaction. Is this reaction spontaneous at that temperature and pressure? Given: Standard molar entropies of H_(2)(g),O_(2)(g)&H_(2)O(l) at 298K are 130.6, 205.0 and 69.90 J*K^(-1)*mol^(-1) respectively.

The reaction 2H_(2)(g)+O_(2)(g)to2H_(2)O(g) is feasible. How is that hydrogen and oxygen mixture allowed to stand at room temperature shows no formation of water at all ?

The heat change accompanying the reaction 2H_(2)(g)+O_(2)(g) to 2H_(2)O(l) : DeltaH= -136kcal is called

The heat change accompanying the reaction 2H_(2)(g)+O_(2)(g) to 2H_(2)O(l) : DeltaH= -136kcal is called