he rate constant of a chemical reaction increased from 0.100 s−1s−1 to 3.30 s−1s−1 upon raising the temperature from 25.0 ∘C∘C to 43.0 ∘C∘C . Calculate the value of (1T2−1T1)(1�2−1�1) where T1�1 is the initial temperature and T2�2 is the final temperature.

Chemistry
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Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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Chapter1: Chemical Foundations
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he rate constant of a chemical reaction increased from 0.100 s−1s−1 to 3.30 s−1s−1 upon raising the temperature from 25.0 ∘C∘C to 43.0 ∘C∘C .
Calculate the value of (1T2−1T1)(1�2−1�1) where T1�1 is the initial temperature and T2�2 is the final temperature.
Express your answer numerically.
View Available Hint(s)for Part ACalculate the value of  ln(k2k1)
  where  k1
  and  k2
  correspond to the rate constants at the initial and the final temperatures as defined in part A.
Express your answer numerically.
View Available Hint(s)for Part What is the activation energy of the reaction?
Express your answer numerically in kilojoules per mole.
View Available Hint(s) 
 
 
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