3. Which experimental conditions would maximize the yield of choloroethane and minimize the production of polychlorinated products during the free radical chlorination of ethane? B. use an excess of chlorine A. equimolar amounts of chlorine & ethane C. excess of ethane D. excess of chlorine & long reaction time E. equimolar amounts of chlorine & ethane and high reaction temperature

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3. Which experimental conditions would maximize the yield of choloroethane and
minimize the production of polychlorinated products during the free radical chlorination of
ethane?
A. equimolar amounts of chlorine & ethane
C. excess of ethane
B. use an excess of chlorine
D. excess of chlorine & long reaction time
E. equimolar amounts of chlorine & ethane and high reaction temperature
4. How many different dichlorinated propane constitutional isomers are possible ?
A. 3
B. 4
C. 5
D. 6
E. 7
5. Which of these steps is most responsible for the tertiary selectivity of free radical
bromination of alkanes?
A. initiation
B. termination
C. ionization
D. hydrogen abstraction
E. halogen abstraction
6. Which radical is most stable?
A. CH₂CH₂CH₂CH3
C. CH₂CHCHCH3
D. CH₂CH₂CHCH₂
B. CHCHCH₂CH3
E. CH₂CH₂CH(CH3)2
Transcribed Image Text:3. Which experimental conditions would maximize the yield of choloroethane and minimize the production of polychlorinated products during the free radical chlorination of ethane? A. equimolar amounts of chlorine & ethane C. excess of ethane B. use an excess of chlorine D. excess of chlorine & long reaction time E. equimolar amounts of chlorine & ethane and high reaction temperature 4. How many different dichlorinated propane constitutional isomers are possible ? A. 3 B. 4 C. 5 D. 6 E. 7 5. Which of these steps is most responsible for the tertiary selectivity of free radical bromination of alkanes? A. initiation B. termination C. ionization D. hydrogen abstraction E. halogen abstraction 6. Which radical is most stable? A. CH₂CH₂CH₂CH3 C. CH₂CHCHCH3 D. CH₂CH₂CHCH₂ B. CHCHCH₂CH3 E. CH₂CH₂CH(CH3)2
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