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The reaction 2NO(2)(g)hArrN(2)O(4)(g) is...

The reaction `2NO_(2)(g)hArrN_(2)O_(4)(g)` is an exothermic equilibrioum . This means that:

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The reaction 2NO_(2)(g) hArr N_(2)O_(4)(g) is an exothermic equilibrium . This means that:

The concentration of 2NO_(2)(g)hArrN_(2)O_(4)(g) is an exothermic equilibrioum . This means that:

The gas phase reaction 2NO_(2)(g) rarr N_(2)O_(4)(g) is an exothermic reaction. The decomposition of N_(2)O_(4) in equilibrium mixture of NO_(2)(g) and N_(2)O_(4) can be increased by :

The gas phase reaction 2NO_(2)(g) rarr N_(2)O_(4)(g) is an exothermic reaction. The decomposition of N_(2)O_(4) in equilibrium mixture of NO_(2)(g) and N_(2)O_(4) can be increased by :

For the reaction 2NO_(2)(g)+(1)/(2)O_(2)(g)hArrN_(2)O_(5)(g) if the equilibrium constant is K_(p) , then the equilibrium constant for the reaction 2N_(2)O_(5)(g)hArr4NO_(2)(g)+O_(2)(g) would be :

For the reaction 2NO_(2)(g)+(1)/(2)O_(2)(g)hArrN_(2)O_(5)(g) if the equilibrium constant is K_(p) , then the equilibrium constant for the reaction 2N_(2)O_(5)(g)hArr4NO_(2)(g)+O_(2)(g) would be :

For the reaction 2NO_(2)(g)+(1)/(2)O_(2)(g)hArrN_(2)O_(5)(g) if the equilibrium constant is K_(p) , then the equilibrium constant for the reaction 2N_(2)O_(5)(g)hArr4NO_(2)(g)+O_(2)(g) would be :

For the reaction 2NO_(2(g))+(1)/(2)O_(2)hArrN_(2)O_(5(g)) if the equilibrium constant is K_(P) ,then the equilibrium constant for the reaction 2N_(2)O_(5(g))hArr4NO_(2(g))+O_(2(g)) would be :-