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(a)
Interpretation:
The selective reagents used to accomplish the given transformation should be draw and identified.
Concept Introduction:
Role of sodium amide: The strong base of
Anti-Markovnikov addition: These rules describe the regioselectivity (particular place in functional group) where the substituent is bonded to a less substituted carbon, rather than the more substituted carbon. This placed is quite unusual as carbon cations which are commonly formed during
Reduction property of 9-BBN: This reagent selectively reduced for carbon-carbon triple bond converted into bouble bond. The hydrogen ends up bond to the most substituted carbon and the stereo chemistry of the reaction is syn both new bonds are formed on the same face of the alkene.
(b)
Interpretation:
The selective reagents used to accomplish the given transformation should be draw and identified.
Concept Introduction:
Role of sodium amide: The strong base of
Anti-Markovnikov addition: These rules describe the regioselectivity (particular place in functional group) where the substituent is bonded to a less substituted carbon, rather than the more substituted carbon. This placed is quite unusual as carbon cations which are commonly formed during alkene or alkyne reactions tend to favor the more substituted carbon.
Reduction property of 9-BBN: This reagent selectively reduced for carbon-carbon triple bond converted into bouble bond. The hydrogen ends up bond to the most substituted carbon and the stereo chemistry of the reaction is syn both new bonds are formed on the same face of the alkene.
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Chapter 10 Solutions
Organic Chemistry, Binder Ready Version
- Nonearrow_forwardTransmitance 3. Which one of the following compounds corresponds to this IR spectrum? Point out the absorption band(s) that helped you decide. OH H3C OH H₂C CH3 H3C CH3 H3C INFRARED SPECTRUM 0.8- 0.6 0.4- 0.2 3000 2000 1000 Wavenumber (cm-1) 4. Consider this compound: H3C On the structure above, label the different types of H's as A, B, C, etc. In table form, list the labeled signals, and for each one state the number of hydrogens, their shifts, and the splitting you would observe for these hydrogens in the ¹H NMR spectrum. Label # of hydrogens splitting Shift (2)arrow_forwardNonearrow_forward
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