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[" Consider the following processes:- "],[(1)/(2)A rarr B],[3B rarr B],[E+A rarr2D],[E+A rarr2D],[" For "B+D rarr E+2C,quad " AH will be : "],[(1)525kJ/mol],[(3)-175kJ/mol],[(4)-325kJ/mol]

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Consider the following processes :- {:(,DeltaH(kJ//mol)),((1)/(2)A rarr B,+150),(3B rarr2C+D,-125),(E+A rarr 2D,+350),("For "B+D rarr E+2C",",Delta H" will be"):}

Consider the following processes :- {:(,DeltaH(kJ//mol)),((1)/(2)A rarr B,+150),(3B rarr2C+D,-125),(E+A rarr 2D,+350),("For "B+D rarr E+2C",",Delta H" will be"):}

Consider the following process : {:((1)/(2)A to B , Delta H =+ 150(kJ //mol)), (3 B to 2 C +D, Delta H= -125 (kJ//mol)), (E +A to 2 D, Delta H = + 350 (kJ//mol)):} For B + D to E + 2C, Delta H will be

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The enthalpy change for the following process are listed below : (a) Cl_(2(g)) rarr 2Cl_((g)), DeltaH=242.3kJ mol^(-1) (b) I_(2(g))rarr 2I_((g)), DeltaH=151.0kJ mol^(-1) (c) ICl_((g)) rarr I_((g))+Cl_((g)), DeltaH=211.3kJ mol^(-1) (d) I_(2(s)) rarr I_(2(g)), DeltaH=62.76kJ mol^(-1) If standard state of iodine and chloride are I_(2(s)) and Cl_(2(g)) , the standard enthalpy of formation for ICl_((g)) is :