Deck 7: The Reactions of Alkynes an Introduction Tomultistep Synthesis
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Deck 7: The Reactions of Alkynes an Introduction Tomultistep Synthesis
1
What is the systematic name for the following compound? ? 
A) 3-ethynyl-1-hexene
B) 3-ethenyl-1-hexyne
C) 3-propyl-4-penten-1-yne
D) 3-propyl-1-penten-4-yne
E) 3-propyl-1,4-pentenyne

A) 3-ethynyl-1-hexene
B) 3-ethenyl-1-hexyne
C) 3-propyl-4-penten-1-yne
D) 3-propyl-1-penten-4-yne
E) 3-propyl-1,4-pentenyne
3-propyl-1-penten-4-yne
2
What is the systematic name for the following compound? 
A) 1,1-diethynylethane
B) 3-ethynylbutyne
C) 3-butynylethyne
D) 3-ethynyl-1-butyne
E) 3-methyl-1,4-pentadiyne

A) 1,1-diethynylethane
B) 3-ethynylbutyne
C) 3-butynylethyne
D) 3-ethynyl-1-butyne
E) 3-methyl-1,4-pentadiyne
3-methyl-1,4-pentadiyne
3
Why are alkynes less reactive toward electrophilic addition?
A) Triple bonds are stronger than double bonds.
B) Only one ? bond must be broken in the addition of an electrophile to an alkene.
C) The ?-complex that is formed from an alkyne is less stable than the alkyl cation intermediate that is formed from an alkene.
D) Alkynes are less stable than alkenes.
E) Hyperconjugation stabilizes the intermediate from an alkyne more than the intermediate from an alkene.
A) Triple bonds are stronger than double bonds.
B) Only one ? bond must be broken in the addition of an electrophile to an alkene.
C) The ?-complex that is formed from an alkyne is less stable than the alkyl cation intermediate that is formed from an alkene.
D) Alkynes are less stable than alkenes.
E) Hyperconjugation stabilizes the intermediate from an alkyne more than the intermediate from an alkene.
The ?-complex that is formed from an alkyne is less stable than the alkyl cation intermediate that is formed from an alkene.
4
Which product is expected from the reaction shown here?

A)
B)
C)
D)
E)

A)

B)

C)

D)

E)

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5
Which product would be isolated from the reaction shown?

A)
B)
C)
D)
E)

A)

B)

C)

D)

E)

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6
Which reagent is the best choice to complete the following transformation?

A) Na, NH3(liq)
B) NaNH2
C) 1. NaBH4, 2. H3O+
D) 1 mole H2/Pd/C
E) H2, Lindlar catalyst

A) Na, NH3(liq)
B) NaNH2
C) 1. NaBH4, 2. H3O+
D) 1 mole H2/Pd/C
E) H2, Lindlar catalyst
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7
Which of the following statements is not true?
A) Alkynes undergo electrophilic addition reactions.
B) Alkynes are less reactive than alkenes in electrophilic addition reactions.
C) Sodium in liquid ammonia is used to form cis alkenes.
D) Catalytic hydrogenation of an alkyne in the presence of Pd/C gives complete reduction.
E) Reaction of an alkyne with water under acidic conditions gives an enol.
A) Alkynes undergo electrophilic addition reactions.
B) Alkynes are less reactive than alkenes in electrophilic addition reactions.
C) Sodium in liquid ammonia is used to form cis alkenes.
D) Catalytic hydrogenation of an alkyne in the presence of Pd/C gives complete reduction.
E) Reaction of an alkyne with water under acidic conditions gives an enol.
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8
Which base is strong enough to deprotonate 1-octyne completely?
A) NaF
B) NaOH
C) NH3
D) NaOCH3
E) NaNH2
A) NaF
B) NaOH
C) NH3
D) NaOCH3
E) NaNH2
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9
Which of the following methods would give the product in reasonable yield? 
A) 1. NaNH2 2. CH2=CHCH2Br 3. H2O, H2SO4
B) 1. NaNH2 2. CH2=CHCH2Br 3. HCl
C) 1. NaNH2 2. CH2=CHCH2Br 3. R2BH/THF 4. HO?,H2O2, H2O
D) 1. NaNH2 2. HOCH2CHCH2Br 3. R2BH/THF 4. HO?, H2O2, H2O
E) all of the above

A) 1. NaNH2 2. CH2=CHCH2Br 3. H2O, H2SO4
B) 1. NaNH2 2. CH2=CHCH2Br 3. HCl
C) 1. NaNH2 2. CH2=CHCH2Br 3. R2BH/THF 4. HO?,H2O2, H2O
D) 1. NaNH2 2. HOCH2CHCH2Br 3. R2BH/THF 4. HO?, H2O2, H2O
E) all of the above
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10
Which of the following sets of reactions accomplish the synthesis shown below? 
A) 1. NaNH2 2. CH3CH2CH2Br 3. Na/NH3(liq) 4. HBr
B) 1. NaOH 2. CH3CH2Br 3. H2, Lindlar cat 4. Br2/H2O
C) 1. NaNH2 2. CH3CH2I 3. H2, Lindlar cat 4. Br2
D) 1. H2, Lindlar cat 2. NaNH2 3. CH3CH2Br 4. Br2
E) 1. Na/NH3(liq) 2. NaNH2 3. CH3CH2I 4. HBr

A) 1. NaNH2 2. CH3CH2CH2Br 3. Na/NH3(liq) 4. HBr
B) 1. NaOH 2. CH3CH2Br 3. H2, Lindlar cat 4. Br2/H2O
C) 1. NaNH2 2. CH3CH2I 3. H2, Lindlar cat 4. Br2
D) 1. H2, Lindlar cat 2. NaNH2 3. CH3CH2Br 4. Br2
E) 1. Na/NH3(liq) 2. NaNH2 3. CH3CH2I 4. HBr
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11
Which of the following sets of reactions accomplishes the synthesis shown below? 
A) 1. NaNH2 2. CH2=CHCH2Br 3. H2, Lindlar 4. BH3/THF 5. HO?,H2O2, H2O
B) 1. NaNH2 2. CH2=CHCH2Br 3. MCPBA
C) 1. NaNH2 2. CH3CH2CH2Br 3. BH3/THF 4. HO?,H2O2, H2O
D) 1. NaNH2 2. CH2=CHCH2Br 3. Na/NH3(liq) 4. MCPBA
E) 1. NaNH2 2. CH3CH2CH2Br 4. 9-BBN-THF 5. HO-,H2O2, H2O

A) 1. NaNH2 2. CH2=CHCH2Br 3. H2, Lindlar 4. BH3/THF 5. HO?,H2O2, H2O
B) 1. NaNH2 2. CH2=CHCH2Br 3. MCPBA
C) 1. NaNH2 2. CH3CH2CH2Br 3. BH3/THF 4. HO?,H2O2, H2O
D) 1. NaNH2 2. CH2=CHCH2Br 3. Na/NH3(liq) 4. MCPBA
E) 1. NaNH2 2. CH3CH2CH2Br 4. 9-BBN-THF 5. HO-,H2O2, H2O
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12
Rank the following carbocations in order of decreasing stability.

A) 2 > 1 > 4 > 3
B) 2>1>3>4
C) 4>3>2>1
D) 3>4>2>1
E) 2>4>3>1

A) 2 > 1 > 4 > 3
B) 2>1>3>4
C) 4>3>2>1
D) 3>4>2>1
E) 2>4>3>1
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