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(a)
Interpretation:
From the given
Concept Introduction:
An E2 reaction is a concerted, one-step reaction in which the proton and the halide ion are removed in the same step.
A strong base favours an E2 reaction. A high concentration of a base favours an E2 reaction. If one of the reactants is charged, an E2 reaction will be favoured by the least polar solvent that will dissolve the reactant. If neither of the reactant is charged an E2 reaction is favoured by the protic polar solvent. The major product is a stable
(b)
Interpretation:
From the given alkyl halides undergoes E2 reaction has to be identified.
Concept Introduction:
An E2 reaction is a concerted, one-step reaction in which the proton and the halide ion are removed in the same step. A strong base favours an E2 reaction. A high concentration of a base favours an E2 reaction. If one of the reactants is charged, an E2 reaction will be favoured by the least polar solvent that will dissolve the reactant. If neither of the reactant is charged an E2 reaction is favoured by the protic polar solvent.
The major product is a stable alkene, unless the reactants are sterically hindered.
(c)
Interpretation:
From the given alkyl halides undergoes E2 reaction has to be identified.
Concept Introduction:
An E2 reaction is a concerted, one-step reaction in which the proton and the halide ion are removed in the same step. A strong base favours an E2 reaction. A high concentration of a base favours an E2 reaction. If one of the reactants is charged, an E2 reaction will be favoured by the least polar solvent that will dissolve the reactant. If neither of the reactant is charged an E2 reaction is favoured by the protic polar solvent.
The major product is a stable alkene, unless the reactants are sterically hindered.
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Chapter 8 Solutions
Essential Organic Chemistry Study Guide & Solution Manual, Books a la Carte Edition
- Nonearrow_forwardWhich one? Ca2^- Na2^+ Si2^+ Mg2^- AI2^-arrow_forwardIn general, which is more polar, the stationary phase or the mobile phase? The stationary phase is always more polar The mobile phase is always more polar It depends on our choices for both stationary and mobile phase Their polarity doesn't really matter so we never consider itarrow_forward
- Organic ChemistryChemistryISBN:9781305580350Author:William H. Brown, Brent L. Iverson, Eric Anslyn, Christopher S. FootePublisher:Cengage Learning
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