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[" Standard entropy of "X_(2),Y_(2)" and "XY_(3)" are "60,40" and "50JK^(-1)mol^(-1)" ,respectively.For the "],[" reaction,"(1)/(2)X_(2)+(3)/(2)Y_(2)longrightarrow XY_(3),Delta H=-30kJ," to be at equilibrium,the temperature will "],[" be : "]

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Standard entropy of X_(2) , Y_(2) and XY_(3) are 60, 40 and 50JK^(-1)mol^(-1) , respectively. For the reaction, (1)/(2)X_(2)+(3)/(2)Y_(2)rarrXY_(3),DeltaH=-30kJ mol^(-1) , to be at equilibrium, the temperature will be:

Standard entropy of X_(2) , Y_(2) and XY_(3) are 60, 40 and 50JK^(-1)mol^(-1) , respectively. For the reaction, (1)/(2)X_(2)+(3)/(2)Y_(2)rarrXY_(3),DeltaH=-30KJ , to be at equilibrium, the temperature will be:

Standard entropt of X_(2) , Y_(2) and XY_(3) are 60, 40 and 50JK^(-1)mol^(-1) , respectively. For the reaction, (1)/(2)X_(2)+(3)/(2)Y_(2)rarrXY_(3),DeltaH=-30KJ , to be at equilibrium, the temperature will be:

Standrad entropies of X_(2), Y_(2) and XY_(3) are 60, 40 and "50 JK"^(-1)" mol"^(-1) resepectively. For the reaction (1)/(2)X_(2)+(3)/(2)Y_(2)harr XY_(3), DeltaH=-"30 kJ" to be at equilibrium, the temperature shold be

Standrad entropies of X_(2), Y_(2) and XY_(3) are 60, 40 and "50 JK"^(-1)" mol"^(-1) resepectively. For the reaction (1)/(2)X_(2)+(3)/(2)Y_(2)harr XY_(3), DeltaH=-"30 kJ" to be at equilibrium, the temperature shold be