(a)
Interpretation: For the given set of transformations the synthetic route should be determined.
Concept Introduction:
Addition Reaction: It is defined as
Elimination Reaction: It is just reverse reaction of addition where substituent from the given molecule is removed via E1 (the reaction depends only on the substrate involved in the reaction) or E2 (the reaction depends on both of the substituents in the reaction) mechanism.
Oxidation Reaction: It involves loss of electrons, addition of oxygen atoms or removal of hydrogen atoms.
Reduction Reaction: It is just opposite to oxidation reaction that is in involves addition of hydrogens or removal of oxygen atom from a molecule.
Anti-Markovnikov’s Addition Rule: The unsymmetrical
Hydroboration reaction: The reaction involves addition of
To identify: The synthetic route to accomplish the given transformations. Draw the structure for given substrate and product.
(b)
Interpretation: For the given set of transformations the synthetic route should be determined.
Concept Introduction:
Addition Reaction: It is defined as chemical reaction in which two given molecules combines and forms product. The types of addition reactions are electrophilic addition, nucleophilic addition, free radical additions and cycloadditions. Generally, compounds with carbon-hetero atom bonds favors addition reaction.
Elimination Reaction: It is just reverse reaction of addition where substituent from the given molecule is removed via E1 (the reaction depends only on the substrate involved in the reaction) or E2 (the reaction depends on both of the substituents in the reaction) mechanism.
Oxidation Reaction: It involves loss of electrons, addition of oxygen atoms or removal of hydrogen atoms.
Reduction Reaction: It is just opposite to oxidation reaction that is in involves addition of hydrogens or removal of oxygen atom from a molecule.
Anti-Markovnikov’s Addition Rule: The unsymmetrical alkene in a chemical compound reacts with hydrogen halide in a way, where halide ions attacks and bond to the less substitution position of carbon-carbon double bond.
Hydroboration reaction: The reaction involves addition of
To identify: The synthetic route to accomplish the given transformations. Draw the structure for given substrate and product.

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Chapter 11 Solutions
Organic Chemistry
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- Rank each of the following substituted benzene molecules in order of which will react fastest (1) to slowest (4) by electrophilic aromatic substitution. Explanation Check Х (Choose one) OH (Choose one) OCH3 (Choose one) OH (Choose one) © 2025 McGraw Hill LLC. All Rights Reserved. Terms of Use | Privacy Centerarrow_forwardAssign R or S to all the chiral centers in each compound drawn below porat bg 9 Br Brarrow_forwarddescrive the energy levels of an atom and howan electron moces between themarrow_forward
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