Answer:
The value of activation barrier for the reaction is, 43.374 kJ/mol.
Step-by-step explanation:
According to the Arrhenius equation,

or,
![\log ((K_2)/(K_1))=(Ea)/(2.303* R)[(1)/(T_1)-(1)/(T_2)]](https://img.qammunity.org/2021/formulas/chemistry/high-school/x29hmr496eckje089dimzyhsspavwcfh8n.png)
where,
= rate constant at
= k
= rate constant at
= 3k
= activation energy for the reaction = ?
R = gas constant = 8.314 J/mol.K
= initial temperature =

= final temperature =

Now put all the given values in this formula, we get
![\log ((3k)/(k))=(Ea)/(2.303* 8.314 J/mol K)[(1)/(291 K)-(1)/(310 K)]](https://img.qammunity.org/2021/formulas/chemistry/college/nmh1gdrxr7eaa1af7n6vc2rj3l0180c3xh.png)

Therefore, the activation energy for the reaction is, 43.374 kJ/mol.