1. According to the collision theory, taking a = 0.25 nm as the molecular radius of buta-1,3-diene, the value of the collision frequency factor, Z, for this reaction at 591.1 K is (in m³ mol's¹); a) 5.09 x 10° b) 1.61 x 10⁰ c) 2.27 x 10* d) 5.09 x 10°

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B. Collision theory
I. According to the collision theory, taking a = 0.25 nm as the molecular radius of buta-1,3-diene,
the value of the collision frequency factor, Z, for this reaction at 591.1 K is (in m³ mol's¹);
a) 5.09 x 10%
b) 1.61 × 10%
c) 2.27 x 10%
d) 5.09 x 10°
II. The relation between the experimental activation energy, Ea, and the energy barrier, Ee, of the
Transcribed Image Text:B. Collision theory I. According to the collision theory, taking a = 0.25 nm as the molecular radius of buta-1,3-diene, the value of the collision frequency factor, Z, for this reaction at 591.1 K is (in m³ mol's¹); a) 5.09 x 10% b) 1.61 × 10% c) 2.27 x 10% d) 5.09 x 10° II. The relation between the experimental activation energy, Ea, and the energy barrier, Ee, of the
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