(a)
Interpretation:
The reagent for the given transformation should be identified.
Concept introduction:
The
The
9-BBN (9-Borabicyclo [3.3.1] nonane) or diborane is used for the hydroboration of
The role of dilute sulfuric acid is used for the hydration of alkene in
Reduction:
The oxymercuration reaction is an electrophilic addition reaction, an alkene undergoes oxymercuration and forms neutral alcohol.
Anti-Markovnikov’s rule: unsymmetrical alkene reacts with hydrogen halide, halide ions (negative part) goes to the less substitution position of carbon-carbon double bond which provides
Markovnikov addition: unsymmetrical alkene reacts with hydrogen halide, halide ions (negative part) goes to the more substitution position of carbon-carbon double bond which provides alkyl halides.
(b)
Interpretation:
The reagent for the given transformation should be identified.
Concept introduction:
The
The
9-BBN (9-Borabicyclo [3.3.1] nonane) or diborane is used for the hydroboration of alkene. Boron addition to the double bond and subsequent oxidation of the new formed borane yields anti-Markovnikov alcohols.
The role of dilute sulfuric acid is used for the hydration of alkene in organic synthesis.
Reduction: Aldehydes or ketones undergoing reduction by using reducing agent like LAH or NaBH4 which provides alcohol.
The oxymercuration reaction is an electrophilic addition reaction, an alkene undergoes oxymercuration and forms neutral alcohol.
Anti-Markovnikov’s rule: unsymmetrical alkene reacts with hydrogen halide, halide ions (negative part) goes to the less substitution position of carbon-carbon double bond which provides alkyl halides.
Markovnikov addition: unsymmetrical alkene reacts with hydrogen halide, halide ions (negative part) goes to the more substitution position of carbon-carbon double bond which provides alkyl halides.
(c)
Interpretation:
The reagent for the given transformation should be identified.
Concept introduction:
The
The
9-BBN (9-Borabicyclo [3.3.1] nonane) or diborane is used for the hydroboration of alkene. Boron addition to the double bond and subsequent oxidation of the new formed borane yields anti-Markovnikov alcohols.
The role of dilute sulfuric acid is used for the hydration of alkene in organic synthesis.
Reduction: Aldehydes or ketones undergoing reduction by using reducing agent like LAH or NaBH4 which provides alcohol.
The oxymercuration reaction is an electrophilic addition reaction, an alkene undergoes oxymercuration and forms neutral alcohol.
Anti-Markovnikov’s rule: unsymmetrical alkene reacts with hydrogen halide, halide ions (negative part) goes to the less substitution position of carbon-carbon double bond which provides alkyl halides.
Markovnikov addition: unsymmetrical alkene reacts with hydrogen halide, halide ions (negative part) goes to the more substitution position of carbon-carbon double bond which provides alkyl halides.
(d)
Interpretation:
The reagent for the given transformation should be identified.
Concept introduction:
The
The
9-BBN (9-Borabicyclo [3.3.1] nonane) or diborane is used for the hydroboration of alkene. Boron addition to the double bond and subsequent oxidation of the new formed borane yields anti-Markovnikov alcohols.
The role of dilute sulfuric acid is used for the hydration of alkene in organic synthesis.
Reduction: Aldehydes or ketones undergoing reduction by using reducing agent like LAH or NaBH4 which provides alcohol.
The oxymercuration reaction is an electrophilic addition reaction, an alkene undergoes oxymercuration and forms neutral alcohol.
Anti-Markovnikov’s rule: unsymmetrical alkene reacts with hydrogen halide, halide ions (negative part) goes to the less substitution position of carbon-carbon double bond which provides alkyl halides.
Markovnikov addition: unsymmetrical alkene reacts with hydrogen halide, halide ions (negative part) goes to the more substitution position of carbon-carbon double bond which provides alkyl halides.
(e)
Interpretation:
The reagent for the given transformation should be identified.
Concept introduction:
The
The
9-BBN (9-Borabicyclo [3.3.1] nonane) or diborane is used for the hydroboration of alkene. Boron addition to the double bond and subsequent oxidation of the new formed borane yields anti-Markovnikov alcohols.
The role of dilute sulfuric acid is used for the hydration of alkene in organic synthesis.
Reduction: Aldehydes or ketones undergoing reduction by using reducing agent like LAH or NaBH4 which provides alcohol.
The oxymercuration reaction is an electrophilic addition reaction, an alkene undergoes oxymercuration and forms neutral alcohol.
Anti-Markovnikov’s rule: unsymmetrical alkene reacts with hydrogen halide, halide ions (negative part) goes to the less substitution position of carbon-carbon double bond which provides alkyl halides.
Markovnikov addition: unsymmetrical alkene reacts with hydrogen halide, halide ions (negative part) goes to the more substitution position of carbon-carbon double bond which provides alkyl halides.
(f)
Interpretation:
The reagent for the given transformation should be identified.
Concept introduction:
The
The
9-BBN (9-Borabicyclo [3.3.1] nonane) or diborane is used for the hydroboration of alkene. Boron addition to the double bond and subsequent oxidation of the new formed borane yields anti-Markovnikov alcohols.
The role of dilute sulfuric acid is used for the hydration of alkene in organic synthesis.
Reduction: Aldehydes or ketones undergoing reduction by using reducing agent like LAH or NaBH4 which provides alcohol.
The oxymercuration reaction is an electrophilic addition reaction, an alkene undergoes oxymercuration and forms neutral alcohol.
Anti-Markovnikov’s rule: unsymmetrical alkene reacts with hydrogen halide, halide ions (negative part) goes to the less substitution position of carbon-carbon double bond which provides alkyl halides.
Markovnikov addition: unsymmetrical alkene reacts with hydrogen halide, halide ions (negative part) goes to the more substitution position of carbon-carbon double bond which provides alkyl halides.
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Chapter 12 Solutions
ORGANIC CHEMISTRY 3E WPNGC LL SET 1S
- Identify the missing organic reactants in the following reaction: X + Y H+ two steps Note: This chemical equation only focuses on the important organic molecules in the reaction. Additional inorganic or small-molecule reactants or products (like H2O) are not shown. In the drawing area below, draw the skeletal ("line") structures of the missing organic reactants X and Y. You may draw the structures in any arrangement that you like, so long as they aren't touching. Click and drag to start drawing a structure. Х :arrow_forwardDraw the mechanism of friedel-crafts acylation using acetyl chloride of m-Xylenearrow_forwardI need help naming these in IUPACarrow_forward
- H R Part: 1/2 :CI: is a/an electrophile Part 2 of 2 Draw the skeletal structure of the product(s) for the Lewis acid-base reaction. Include lone pairs and formal charges (if applicable) on the structures. 4-7: H ö- H Skip Part Check X :C1: $ % L Fi Click and drag to start drawing a structure. MacBook Pro & ㅁ x G 0: P Add or increase positive formal cha Save For Later Submit ©2025 McGraw Hill LLC. All Rights Reserved. Terms of Use | Privacy Centearrow_forwardDraw the friedel-crafts acylation mechanism of m-Xylenearrow_forwardDon't used hand raiting and don't used Ai solutionarrow_forward
- 1. Base on this experimental results, how do you know that the product which you are turning in is methyl 3-nitrobenzoate(meta substituted product ) rather than either of the other two products? 2. What observation suggests that at least a small amount of one or both of the other two isomers are in the mother liquor?arrow_forwardExplain Huckel's rule.arrow_forwardhere is my question can u help me please!arrow_forward
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