This model explains the effect of concentrat on on reacton rate by stating that an increase in the con centation of a reacttant leads to a larger number of collisi on s, which increases the reaction rate. 16.48 Arrhenius proposed that each reaction has an energy threshold that must be reached for the particles to react. The kinetic theory of gases proposes that the average kinetic energy of the particles is proportional to the absolute temperature. How do these concepts relate to the effect of temperature on rate? 16.49 Use the exponential term in the Arrhenius equation to explain how

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Please answer 16.48.  

This model explains the effect of concentrat on on reacton
rate by stating that an increase in the con centation
of a reacttant leads to a larger number of collisi on s,
which increases the reaction rate.
16.48 Arrhenius proposed that each reaction has an energy threshold that must
be reached for the particles to react. The kinetic theory of gases proposes that the
average kinetic energy of the particles is proportional to the absolute
temperature. How do these concepts relate to the effect of temperature on rate?
16.49 Use the exponential term in the Arrhenius equation to explain how
Transcribed Image Text:This model explains the effect of concentrat on on reacton rate by stating that an increase in the con centation of a reacttant leads to a larger number of collisi on s, which increases the reaction rate. 16.48 Arrhenius proposed that each reaction has an energy threshold that must be reached for the particles to react. The kinetic theory of gases proposes that the average kinetic energy of the particles is proportional to the absolute temperature. How do these concepts relate to the effect of temperature on rate? 16.49 Use the exponential term in the Arrhenius equation to explain how
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