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The prepation of SO(3)(g) by reaction SO...

The prepation of `SO_(3)(g)` by reaction `SO_(2)(g)+(1)/(2)O_(2)(g)hArrSO_(3)(g)` is an exothermic reaction .If the preparation follows the following temperature -pressure relationship for % yield , then for temperatures `T_(1),T_(2)andT_(3)` the correct option is:

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In Haber's process, ammonia is manufactured according to the following reaction N_(2(g)) + 3H_(2(g)) hArr 2NH_(3(g)) , Delta H^(@) = -2.4 kJ The pressure inside the chamber is maintained at 200 atm and temperature at 500^(@)C . Generally this reaction is carried out in presence of Fe catalyst. The preparation of ammonia by Haber's process is an exothermic reaction. If the preparation follows the following temperature pressure relationship for its % yield. Then for temperature T_(1), T_(2) and T_(3) , the correct option is :

N_(2)(g)+3H_(2)(g) hArr 2NH_(3)(g), DeltaH^(ɵ)=-22.4 kJ The pressure inside the chamber is 100 atm and temperature at 300 K The preparation of ammonia by Haber's process is an exothermic reaction. If the preparation follows the following temperature-pressure relationship for its % yield. Then for temperature T_(1), T_(2) and T_(3) the correct option is:

N_(2)(g)+3H_(2)(g) hArr 2NH_(3)(g), DeltaH^(ɵ)=-22.4 kJ The pressure inside the chamber is 100 atm and temperature at 300 K The preparation of ammonia by Haber's process is an exothermic reaction. If the preparation follows the following temperature-pressure relationship for its % yield. Then for temperature T_(1), T_(2) and T_(3) the correct option is:

The reaction SO_(2)(g) +1//2O_(2)(g) rarr SO_(3)(g) should be

The reaction SO_(2)(g) +1//2O_(2)(g) rarr SO_(3)(g) should be

For the reaction SO_(2(g))+(1)/(2)O_(2(g))hArrSO_(3(g)) , if K_(c)=K_(p)(RT)^(X) then the value of X is

For the elementary reaction 2SO_(2)(g)+O_(2)(g)to2SO_(3)(g) , identify the correct among the following relations

Average rate of reaction for the following reaction, 2SO_(2)(g)+O_(2)(g)rarr2SO_(3)(g) is written as