Activation energy of any chemical reaction can be calculated if one knows the value of

  • A
    probability of collision
  • B
    orientation of reactant molecules during collision
  • C
    rate constant at two different temperatures
  • D
    rate constant at standard temperature

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Similar Questions

For the decomposition of $N_2O_5,$ the reaction is $2N_2O_{5(g)} \rightarrow 4NO_{2(g)} + O_{2(g)}$ with activation energy $E_a.$ If the reaction is written as $N_2O_{5(g)} \rightarrow 2NO_{2(g)} + 1/2 O_{2(g)}$ with activation energy $E_a',$ what is the relationship between $E_a$ and $E_a'$?

Half life of a first order reaction is $900 \ \text{min}$ at $400 \ K$. Find its half life at $300 \ K$. Given: $\frac{E_a}{2.303 \ R} = 1.3056 \times 10^3 \ K$. (in $\text{min}$)

Assertion : According to transition state theory for the formation of an activated complex,one of the vibrational degrees of freedom is converted into a translational degree of freedom.
Reason : Energy of the activated complex is higher than the energy of reactant molecules.

Identify the intermediate formed in the reaction $H_2 + I_2 \rightarrow 2 HI$.

For a reversible chemical reaction where the forward process is exothermic,which of the following statements is correct?

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