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[" (4) Temperature "],[" 6.For the decom...

[" (4) Temperature "],[" 6.For the decomposition of "N_(2)O_(5)(g)" it is given that- "],[2N_(2)O_(5)(g)rarr4NO_(2)(g)+O_(2)(g)" activation energy "=Ea],[N_(2)O_(5)(g)rarr2NO_(2)(g)+(1)/(2)O_(2)(g)" activation energy "=Ea'],[" then "],[[" (1) Ea "=2Ea'," (2) Ea ">Ea'],[" (3) Ea "<" Ea' "," (4) Ea = Ea' "]]

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For the decomposition of N_(2)O_(5) it is given that: 2N_(2)O_(5)(g) to 4NO_(2)(g) + O_(2)(g) , activation energy E_(a) N_(2)O_(5) (g) to 2NO_(2)(g) + 1/2 O_(2)(g) activation energy E_(a)^(') then,

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For the decomposition of N_2O_5(g) , it is given that : 2N_2O_5(g)rarr4NO_2(g)+O_2(g) ,Activation energy E_aN_2O_5(g)rarr2NO_2(g)+(1/2)O_2(g) ,Activation energy E_a then:

For the first order reaction 2N_(2)O_(5)(g) rarr 4NO_(2)(g) + O_(2)(g)

For the first order reaction 2N_(2)O_(5)(g) rarr 4NO_(2)(g) + O_(2)(g)

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Write the rate law of 2N_(2)O_(5(g))rarr 4NO_(2(g))+O_(2(g)) reaction.