Use the information in Table 4-2 (p. 167) to rank the following radicals in decreasing order of stability.
For each alkane, which monobrominated derivatives could you form in good yield by free-radical bromination?
a. Cyclopentane
b. Methylcyclopentnae
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Key Concepts
Free-Radical Bromination
Alkane Structure and Reactivity
Monobrominated Derivatives
For each alkane,
3. which monobrominated derivatives could you form in good yield by free-radical bromination?
c. 2-methylpentane
d. 2,2,3,3-tetramethylbutane
For each alkane,
1. draw all the possible monochlorinated derivatives.
a. Cyclopentane
b. Methylcyclopentane
For each alkane,
1. draw all the possible monochlorinated derivatives.
c. 2-methylpentane
d. 2,2,3,3-tetramethyl butane
Write a mechanism for the light-initiated reaction of cyclohexane with chlorine to give chlorocyclohexane. Label the initiation and propagation steps.
For each alkane,
2. determine whether free-radical chlorination would be a good way to make any of these monochlorinated derivatives. Will the reaction give mostly one major product?
a. Cyclopentane
b. Methylcyclopentane
