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The molecularity of a complex reaction g...

The molecularity of a complex reaction given below is:
`2N_(2)O_(5)(g) to 4NO_(2)(g) + O_(2)(g)`

A

1

B

2

C

3

D

Has no meaning

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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,

For the first-order decomposition reaction of N_(2)O_(5) written as: 2N_(2)O_(5)(g) to 4NO_(2)(g) + O_(2)(g) , rate =k[N_(2)O_(5)] N_(2)O_(5)(g) to 2NO_(2)(g) + 1/2O_(2)(g) , rate =k'[N_(2)O_(5)] which of the following facts is true?

The decomposition of N_(2)O_(5) according to the equation, 2N_(2)O_(5) (g) rarr 4NO_(2) (g) + O_(2) (g) is a first order reaction, After 30 minutes from the start of the decomposition in a closed vessel, the total pressure developed is found to be 284.5 mm Hg and on completion, the total pressure is 584.5 mm Hg. Calculate the rate constant of the reaction.

The balanced chemical equation of a reaction (at STP) is given below. 2H_(2((g))+O_(2(g))rarr2H_2O_((g)) : Calculate the mass of water formed as a result of the reaction (a).

The balanced chemical equation of a reaction (at STP) is given below. 2H_(2((g))+O_(2(g))rarr2H_2O_((g)) : Calculation the volume of oxygen required to combine completely with 224L of the hydrogen at STP.

BRILLIANT PUBLICATION-CHEMICAL KINETICS -LEVEL II
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  7. According to the collision theory of chemical reactions

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  8. The activation energy for a simple chemical reaction A rarr B is E(a) ...

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  9. The reaction 2NO(g)+O(2)(g)rarr2NO(2)(g) is of first order. Ifvolume ...

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  10. For the equilibrium, A(g)rarrB(g), triangleH is - 40 kJ mol^(-1) . If ...

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