For interactions between single atoms, the orientation probability factor (p) is close to 1. The answer is true
The energy of the collision must be higher than the energy of the reaction. The appropriate orientation for the collision must be used. The frequency of the collision must be higher than the frequency of the response. The reactants must run into each other.
A chemical reaction's rate and activation energy are tightly correlated. Particularly, the chemical reaction will occur more slowly the greater the activation energy. This is due to the fact that atoms can only finish the action after overcoming the barrier of activation energy.
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