(a)
Interpretation:
Concept Introduction:
Thus,
Increasing the height of the energy barrier decreases the magnitude of the rate constant, thus causes the reaction to be slower.
The rate of the
Steric hindrance decreases the rate of the reaction by increasing the energy of the transition state.
Higher the height of the energy barrier lowers the rate constant.
(b)
Interpretation:
Rate of the reaction of methyl iodide with quinuclidine and methyl iodide with trimethylamine is measured in nitrobenzene, based on it answer the following questions.
Concept Introduction:
Thus,
Increasing the height of the energy barrier decreases the magnitude of the rate constant, thus causes the reaction to be slower.
The rate of the
Steric hindrance decreases the rate of the reaction by increasing the energy of the transition state.
Higher the height of the energy barrier lowers the rate constant.
(c)
Interpretation:
Rate of the reaction of methyl iodide with quinuclidine and methyl iodide with trimethylamine is measured in nitrobenzene, based on it answer the following questions.
Concept Introduction:
Thus,
Increasing the height of the energy barrier decreases the magnitude of the rate constant, thus causes the reaction to be slower.
The rate of the SN2 reaction depends not only on the number of alkyl group but also on the size.
Steric hindrance decreases the rate of the reaction by increasing the energy of the transition state.
Higher the height of the energy barrier lowers the rate constant.
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Organic Chemistry (8th Edition)
- The Ksp for lead iodide ( Pbl₂) is 1.4 × 10-8. Calculate the solubility of lead iodide in each of the following. a. water Solubility = mol/L b. 0.17 M Pb(NO3)2 Solubility = c. 0.017 M NaI mol/L Solubility = mol/Larrow_forwardPleasssssseeee solve this question in cheeemsirty, thankss sirarrow_forwardPleasssssseeee solve this question in cheeemsirty, thankss sirarrow_forward
- Organic Chemistry: A Guided InquiryChemistryISBN:9780618974122Author:Andrei StraumanisPublisher:Cengage Learning