Deck 9: Alkynes
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Deck 9: Alkynes
1
What is the hybridization of the carbon atoms numbered 1 and 2 respectively in the following structure? 
A) sp3, sp2
B) sp2, sp2
C) sp, sp
D) sp2, sp
E) sp, sp2

A) sp3, sp2
B) sp2, sp2
C) sp, sp
D) sp2, sp
E) sp, sp2
sp2, sp
2
What is the IUPAC name for the molecule shown below? 
A) 5,6,6-trimethyl-1-heptyne
B) 5-tert-butyl-1-hexyne
C) 2,2,3-trimethyl-6-heptyne
D) 2,2,3-(3-butynyl)butane
E) sec-butyl-tert-butylacetylene

A) 5,6,6-trimethyl-1-heptyne
B) 5-tert-butyl-1-hexyne
C) 2,2,3-trimethyl-6-heptyne
D) 2,2,3-(3-butynyl)butane
E) sec-butyl-tert-butylacetylene
5,6,6-trimethyl-1-heptyne
3
The sigma bond of an alkyne is formed from the overlap of which two orbitals?
A) sp3-sp3
B) p-p
C) sp2-sp2
D) s-s
E) sp-sp
A) sp3-sp3
B) p-p
C) sp2-sp2
D) s-s
E) sp-sp
sp-sp
4
What is the IUPAC name for the molecule shown below? 
A) 1,1,1-trichloro-4-hexyne
B) 4,4,4-trichloro-1-butyne
C) 1,1,1-trichloro-2-butyne
D) 5,5,5-trichloro-2-pentyne
E) 6,6,6-trichloro-2-hexyne

A) 1,1,1-trichloro-4-hexyne
B) 4,4,4-trichloro-1-butyne
C) 1,1,1-trichloro-2-butyne
D) 5,5,5-trichloro-2-pentyne
E) 6,6,6-trichloro-2-hexyne
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5
The C≡C bond of an alkyne is composed of which bond types?
A) three anti-bonds
B) three σ bonds
C) two σ bonds and one π bond
D) one σ bond and two π bonds
E) three π bonds
A) three anti-bonds
B) three σ bonds
C) two σ bonds and one π bond
D) one σ bond and two π bonds
E) three π bonds
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6
Which of the following statements best describes the general reactivity of alkynes?
A) An alkyne reacts as a nucleophile and is therefore electron rich.
B) An alkyne reacts as a nucleophile and is therefore electron poor.
C) Alkynes fail to undergo electrophilic addition reactions, unlike alkenes.
D) An alkyne reacts as an electrophile and is therefore electron rich.
E) An alkyne reacts as an electrophile and is therefore electron poor.
A) An alkyne reacts as a nucleophile and is therefore electron rich.
B) An alkyne reacts as a nucleophile and is therefore electron poor.
C) Alkynes fail to undergo electrophilic addition reactions, unlike alkenes.
D) An alkyne reacts as an electrophile and is therefore electron rich.
E) An alkyne reacts as an electrophile and is therefore electron poor.
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7
For 2,4-hexadiyne, which of the following describes the orbital overlap of the C3-C4 sigma bond? 
A) sp-sp
B) sp2-sp2
C) sp3-sp3
D) p-p
E) sp3-sp

A) sp-sp
B) sp2-sp2
C) sp3-sp3
D) p-p
E) sp3-sp
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8
Provide the IUPAC name for BrCH2CH2C≡CCH2CH3.
A) 1-bromo-3-hexyne
B) 6-bromo-3-hexyne
C) 1-bromo-2-hexyne
D) 6-bromo-4-hexyne
E) 1-bromo-4-hexyne
A) 1-bromo-3-hexyne
B) 6-bromo-3-hexyne
C) 1-bromo-2-hexyne
D) 6-bromo-4-hexyne
E) 1-bromo-4-hexyne
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9
What is the IUPAC name for the molecule shown below? 
A) 6-bromo-3-octyne
B) 6-bromo-6-methyl-3-heptyne
C) 2-bromo-2-methyl-4-heptyne
D) 6-bromo-6,6-dimethyl-3-hexyne
E) 2-bromo-4-octyne

A) 6-bromo-3-octyne
B) 6-bromo-6-methyl-3-heptyne
C) 2-bromo-2-methyl-4-heptyne
D) 6-bromo-6,6-dimethyl-3-hexyne
E) 2-bromo-4-octyne
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10
Which of the following is the structure for 3-sec-butyl-1-heptyne? 
A) I
B) II
C) III
D) IV
E) V

A) I
B) II
C) III
D) IV
E) V
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11
What is the IUPAC name for the molecule shown below? 
A) 4-ethyl-2-pentyne
B) 2-ethyl-3-pentyne
C) 3-methyl-4-hexyne
D) 4-methyl-2-hexyne
E) sec-Butylpropyne

A) 4-ethyl-2-pentyne
B) 2-ethyl-3-pentyne
C) 3-methyl-4-hexyne
D) 4-methyl-2-hexyne
E) sec-Butylpropyne
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12
For 2-pentyne, which of the following describes the orbital overlap of the C2-C3 sigma bond? 
A) sp-sp
B) sp2-sp2
C) sp3-sp3
D) p-p
E) sp3-sp

A) sp-sp
B) sp2-sp2
C) sp3-sp3
D) p-p
E) sp3-sp
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13
What is the IUPAC name for the molecule shown below? 
A) 2-methyl-5-propyl-3-heptyne
B) 5-ethyl-2-methyl-3-octyne
C) 1-isopropyl-3-ethyl-1-hexyne
D) 6-methyl-3-propyl-4-heptyne
E) 4-ethyl-7-methyl-5-octyne

A) 2-methyl-5-propyl-3-heptyne
B) 5-ethyl-2-methyl-3-octyne
C) 1-isopropyl-3-ethyl-1-hexyne
D) 6-methyl-3-propyl-4-heptyne
E) 4-ethyl-7-methyl-5-octyne
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14
Which of the following statements is true about propyne, H-C≡C-CH3?
A) It contains a total of three sigma bonds.
B) It contains a total of three pi bonds.
C) The H-C≡C bond angle is about 109.5°.
D) The C≡C-C bond angle is 180°.
E) All carbon-carbon bonds are of equal length.
A) It contains a total of three sigma bonds.
B) It contains a total of three pi bonds.
C) The H-C≡C bond angle is about 109.5°.
D) The C≡C-C bond angle is 180°.
E) All carbon-carbon bonds are of equal length.
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15
What is the IUPAC name for the molecule shown below? 
A) 4,4-dimethyl-2-pentyne
B) 2,2-dimethyl-4-heptyne
C) 1-tert-butyl-3-heptyne
D) 6,6-dimethyl-3-heptyne
E) 6,6,6-trimethyl-3-hexyne

A) 4,4-dimethyl-2-pentyne
B) 2,2-dimethyl-4-heptyne
C) 1-tert-butyl-3-heptyne
D) 6,6-dimethyl-3-heptyne
E) 6,6,6-trimethyl-3-hexyne
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16
What is the IUPAC name for the molecule shown below? 
A) 1,1-diethyl-2-pentyne
B) 3-(1-butynyl)pentane
C) 5-ethyl-3-octyne
D) 3-ethyl-4-heptyne
E) 5-ethyl-3-heptyne

A) 1,1-diethyl-2-pentyne
B) 3-(1-butynyl)pentane
C) 5-ethyl-3-octyne
D) 3-ethyl-4-heptyne
E) 5-ethyl-3-heptyne
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17
Which of the following is the structure for 2-hexyne? 
A) I
B) II
C) III
D) IV

A) I
B) II
C) III
D) IV
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18
Describe the shape for acetylene.
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19
Which of the following is a structure for hepta-3,6-dien-1-yne? 
A) I
B) II
C) III
D) IV
E) V

A) I
B) II
C) III
D) IV
E) V
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20
What is the IUPAC name for the molecule shown below? 
A) 2,2,3-trimethyl-4-hexyne
B) 4-tert-butyl-2-pentyne
C) 4,5,5-trimethyl-2-hexyne
D) 4,5,5,5-tetramethyl-2-pentyne
E) 2,2-dimethyl-3-(1-propynyl)butane

A) 2,2,3-trimethyl-4-hexyne
B) 4-tert-butyl-2-pentyne
C) 4,5,5-trimethyl-2-hexyne
D) 4,5,5,5-tetramethyl-2-pentyne
E) 2,2-dimethyl-3-(1-propynyl)butane
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21
Provide the IUPAC name for HC≡CCH2CH2CH3.
A) pentyne
B) 1-pentyne
C) butyne
D) 1-butyne
E) 2-butyne
A) pentyne
B) 1-pentyne
C) butyne
D) 1-butyne
E) 2-butyne
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22
What is the IUPAC name for diisobutylacetylene?
A) diisopropylbutyne
B) 2,7-dimethyl-4-octyne
C) 3,6-dimethyl-4-octyne
D) 2,5-diethyl-3-hexyne
E) 2,2,5,5-tetramethyl-3-hexyne
A) diisopropylbutyne
B) 2,7-dimethyl-4-octyne
C) 3,6-dimethyl-4-octyne
D) 2,5-diethyl-3-hexyne
E) 2,2,5,5-tetramethyl-3-hexyne
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23
What is the IUPAC name for the molecule shown below? 
A) (4R,5Z)-4-chlorohept-5-en-2-yne
B) (4S,5E)-4-chlorohept-5-en-2-yne
C) (2E,4S)-4-chlorohept-2-en-5-yne
D) (2E,4R)-4-chlorohept-2-en-5-yne

A) (4R,5Z)-4-chlorohept-5-en-2-yne
B) (4S,5E)-4-chlorohept-5-en-2-yne
C) (2E,4S)-4-chlorohept-2-en-5-yne
D) (2E,4R)-4-chlorohept-2-en-5-yne
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24
What is the IUPAC name for di-sec-butylacetylene?
A) 2-ethyl-5-methyl-3-heptyne
B) 2,7-dimethyl-4-octyne
C) 3,6-dimethyl-4-octyne
D) 2,5-diethyl-3-hexyne
E) 2,2,5,5-tetramethyl-3-hexyne
A) 2-ethyl-5-methyl-3-heptyne
B) 2,7-dimethyl-4-octyne
C) 3,6-dimethyl-4-octyne
D) 2,5-diethyl-3-hexyne
E) 2,2,5,5-tetramethyl-3-hexyne
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25
Which structure shown below represents (Z)-3,5-dichloro-3-hexen-1-yne? 
A) I
B) II
C) III
D) IV
E) I and II are both correct

A) I
B) II
C) III
D) IV
E) I and II are both correct
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26
Provide the IUPAC name for CH3CHBrC≡C(CH2)3CH3.
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27
Draw all of the constitutionally isomeric alkynes with molecular formula C5H8.
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28
Provide the IUPAC name for CH3C≡CC(CH3)2CH(CH2CH3)2.
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29
Which of the following is the structure for (2E,4E)-octa-2,4-dien-6-yne? 
A) I
B) II
C) III
D) IV
E) V

A) I
B) II
C) III
D) IV
E) V
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30
Which of the following is a structure for octa-3,6-dien-1-yne?
A) HC≡CCH=CHCH=CHCH2CH3
B) CH3CH=CHCH2C≡CC≡CH
C) CH3CH=CHCH2CH=CHC≡CH
D) CH3C≡CCH=CHCH=CHCH3
E) H2C=CHC≡CCH2CH=CHCH3
A) HC≡CCH=CHCH=CHCH2CH3
B) CH3CH=CHCH2C≡CC≡CH
C) CH3CH=CHCH2CH=CHC≡CH
D) CH3C≡CCH=CHCH=CHCH3
E) H2C=CHC≡CCH2CH=CHCH3
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31
What is the IUPAC name for the molecule shown below? 
A) (E)-4-isopropyloct-3-en-5-yne
B) (Z)-4-isopropyloct-3-en-5-yne
C) (E)-5-isopropyloct-5-en-3-yne
D) (Z)-5-isopropyloct-5-en-3-yne
E) (E)-4-(2-methylethyl)oct-3-en-5-yne

A) (E)-4-isopropyloct-3-en-5-yne
B) (Z)-4-isopropyloct-3-en-5-yne
C) (E)-5-isopropyloct-5-en-3-yne
D) (Z)-5-isopropyloct-5-en-3-yne
E) (E)-4-(2-methylethyl)oct-3-en-5-yne
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32
Provide the IUPAC name for CH3CH(CH3)C(CH3)2C≡CCH(CH3)2.
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33
Provide the IUPAC name for (CH3)2CHC≡CCH2C(CH3)3.
A) 1,1,5,5,5-pentamethyl-2-pentyne
B) 1,1,1,5,5-pentamethyl-3-pentyne
C) 2,2,6-trimethyl-4-heptyne
D) 2,6,6-trimethyl-3-heptyne
E) tert-butylisopropylacetylene
A) 1,1,5,5,5-pentamethyl-2-pentyne
B) 1,1,1,5,5-pentamethyl-3-pentyne
C) 2,2,6-trimethyl-4-heptyne
D) 2,6,6-trimethyl-3-heptyne
E) tert-butylisopropylacetylene
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34
What is the IUPAC name for the molecule shown below? 
A) 3-bromo-4-acetylenylheptane
B) 3-(1-bromopropyl)-1-hexyne
C) 3-bromo-4-propyl-5-hexyne
D) 4-bromo-3-propyl-1-hexyne
E) 4-ethynyl-5-bromo-heptane

A) 3-bromo-4-acetylenylheptane
B) 3-(1-bromopropyl)-1-hexyne
C) 3-bromo-4-propyl-5-hexyne
D) 4-bromo-3-propyl-1-hexyne
E) 4-ethynyl-5-bromo-heptane
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35
Provide the IUPAC name for Cl3CCH2CH2CH2C≡CH.
A) 6,6,6-trichloro-1-hexyne
B) 1,1,1-trichloro-5-hexyne
C) 5,5,5-trichloro-1-pentyne
D) 1-heptyne
E) trichlorobutylacetylene
A) 6,6,6-trichloro-1-hexyne
B) 1,1,1-trichloro-5-hexyne
C) 5,5,5-trichloro-1-pentyne
D) 1-heptyne
E) trichlorobutylacetylene
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36
Which of the following is the structure for 2,5,5?trimethylhept?3?yne?
A) CH3CH2CH(CH3)C≡CCH2CH(CH3)2
B) CH3CH2C(CH3)2C≡CCH(CH3)2
C) (CH3CH2)2C(CH3)C≡CCH2CH3
D) CH3CH2C(CH3)2C≡CC(CH3)3
E) CH3CH2CH2CH(CH3)C≡CC(CH3)3
A) CH3CH2CH(CH3)C≡CCH2CH(CH3)2
B) CH3CH2C(CH3)2C≡CCH(CH3)2
C) (CH3CH2)2C(CH3)C≡CCH2CH3
D) CH3CH2C(CH3)2C≡CC(CH3)3
E) CH3CH2CH2CH(CH3)C≡CC(CH3)3
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37
Provide the systematic IUPAC name for the molecule below: (CH3)3CCH2C≡CCH2CH(CH3)CH2CH3
A) 2,7,7-trimethyl-5-nonyne
B) 2-ethyl-7,7-dimethyl-4-octyne
C) 2,2,7-trimethyl-4-nonyne
D) 7-ethyl-2,2-trimethyl-4-octyne
E) 6-undecyne
A) 2,7,7-trimethyl-5-nonyne
B) 2-ethyl-7,7-dimethyl-4-octyne
C) 2,2,7-trimethyl-4-nonyne
D) 7-ethyl-2,2-trimethyl-4-octyne
E) 6-undecyne
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38
What is the IUPAC name for the molecule shown below? 
A) (E)-5-methyl-5-hepten-1-yne
B) (Z)-5-methyl-5-hepten-1-yne
C) (E)-3-methyl-2-hepten-6-yne
D) (Z)-3-methyl-2-hepten-6-yne
E) (E)-2-butynyl-2-butene

A) (E)-5-methyl-5-hepten-1-yne
B) (Z)-5-methyl-5-hepten-1-yne
C) (E)-3-methyl-2-hepten-6-yne
D) (Z)-3-methyl-2-hepten-6-yne
E) (E)-2-butynyl-2-butene
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39
Provide the IUPAC name for Cl3C(CH2)4C≡CH.
A) 4,4,4-trichloro-1-butyne
B) 1,1,1-trichloro-6-heptyne
C) 1,1,1-trichloro-5-heptyne
D) 6,6,6-trichloro-1-hexyne
E) 7,7,7-trichloro-1-heptyne
A) 4,4,4-trichloro-1-butyne
B) 1,1,1-trichloro-6-heptyne
C) 1,1,1-trichloro-5-heptyne
D) 6,6,6-trichloro-1-hexyne
E) 7,7,7-trichloro-1-heptyne
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40
Which of the following is the acceptable structure for (R)-5-bromohept-2-yne? 
A) I
B) II
C) III
D) IV
E) V

A) I
B) II
C) III
D) IV
E) V
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41
Which of the bases below would result in the most complete deprotonation of the alkyne, shown in the reaction below? 
A) NaOCH2CH3 (sodium ethoxide)
B) t-BuONa (sodium tert-butoxide)
C) NaH (sodium hydride)
D) NaHCO3 (sodium bicarbonate)
E) NaOH (sodium hydroxide)

A) NaOCH2CH3 (sodium ethoxide)
B) t-BuONa (sodium tert-butoxide)
C) NaH (sodium hydride)
D) NaHCO3 (sodium bicarbonate)
E) NaOH (sodium hydroxide)
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42
The major result of treating 1-butyne with 6M aqueous NaOH would be:
A) the production of the sodium alkynide.
B) the production of an alkene.
C) the production of an alkane.
D) the production of an enol.
E) nothing, as the alkyne would not react to an appreciable extent.
A) the production of the sodium alkynide.
B) the production of an alkene.
C) the production of an alkane.
D) the production of an enol.
E) nothing, as the alkyne would not react to an appreciable extent.
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43
Rank the following bases in order of decreasing basicity. 
A) III > I > V > II > IV
B) III > V > IV > I> II
C) V > I > III > II > IV
D) III > IV > II > V > I
E) IV > II > I > III > V

A) III > I > V > II > IV
B) III > V > IV > I> II
C) V > I > III > II > IV
D) III > IV > II > V > I
E) IV > II > I > III > V
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44
Which of the circled hydrogen atoms is the least acidic? 
A) I
B) II
C) III
D) IV
E) V

A) I
B) II
C) III
D) IV
E) V
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45
Rank the following carbanions in order of increasing base strength. 
A) I < II < III
B) II < III < I
C) III < II < I
D) III < I < II
E) II < I < III

A) I < II < III
B) II < III < I
C) III < II < I
D) III < I < II
E) II < I < III
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46
Provide the IUPAC name for the following compound. 

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47
Rank the following acids in order of decreasing acidity. 
A) V > I > IV > II > III
B) III > IV > II > I > V
C) V > I > III > II > IV
D) I > IV > V > II > III
E) IV > I > V > II > III

A) V > I > IV > II > III
B) III > IV > II > I > V
C) V > I > III > II > IV
D) I > IV > V > II > III
E) IV > I > V > II > III
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48
Provide the IUPAC name for the following compound. 

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49
Provide the IUPAC name for the following compound: 

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50
Provide the IUPAC name for the following compound. 

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51
Provide the IUPAC name for the following compound. 

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52
What are the products of the reaction shown below? CH3OH + CH3C≡C-Na+ → ?
A) CH3C≡CCH3 + Na+OH-
B) CH3C≡CH + CH3O-Na+
C) CH3C≡COCH3 + Na+OH-
D) CH3OC≡CH + Na+CH3-
E) no reaction
A) CH3C≡CCH3 + Na+OH-
B) CH3C≡CH + CH3O-Na+
C) CH3C≡COCH3 + Na+OH-
D) CH3OC≡CH + Na+CH3-
E) no reaction
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53
Which statement below best explains why the Ka of acetylene is greater than that of ethylene?
A) Acetylide anions are resonance stabilized.
B) The 4 electrons of the acetylide anion better stabilize a negative charge.
C) The electronegativity of sp carbons is greater than that of sp2 carbons.
D) The electronegativity of sp carbons is less than that of sp2 carbons.
E) Acetylene has only two hydrogen atoms while ethylene has four.
A) Acetylide anions are resonance stabilized.
B) The 4 electrons of the acetylide anion better stabilize a negative charge.
C) The electronegativity of sp carbons is greater than that of sp2 carbons.
D) The electronegativity of sp carbons is less than that of sp2 carbons.
E) Acetylene has only two hydrogen atoms while ethylene has four.
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54
Which of the bases below would quantitatively deprotonate a terminal alkyne?
A) BuLi
B) NH3
C) NaOH
D) NaOCH2CH3
E) t-BuOK
A) BuLi
B) NH3
C) NaOH
D) NaOCH2CH3
E) t-BuOK
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55
Rank the following carbanions in order of increasing pKa. 
A) I < II < III
B) II < III < I
C) III < II < I
D) III < I < II
E) II < I < III

A) I < II < III
B) II < III < I
C) III < II < I
D) III < I < II
E) II < I < III
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56
Which of the circled hydrogen atoms is the most acidic? 
A) I
B) II
C) III
D) IV
E) V

A) I
B) II
C) III
D) IV
E) V
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57
Select the best explanation for why methanol, CH3OH, cannot be used as a solvent for the deprotonation of a terminal alkyne by sodium amide, NaNH2.
A) Sodium amide is not a strong enough base to deprotonate the alkyne.
B) Sodium amide in methanol reduces alkynes to alkenes.
C) Methanol is a poor solvent for dissolving alkynes.
D) Methanol is more acidic than the alkyne and will be deprotonated instead.
E) Methanol is toxic, and should be avoided when possible.
A) Sodium amide is not a strong enough base to deprotonate the alkyne.
B) Sodium amide in methanol reduces alkynes to alkenes.
C) Methanol is a poor solvent for dissolving alkynes.
D) Methanol is more acidic than the alkyne and will be deprotonated instead.
E) Methanol is toxic, and should be avoided when possible.
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58
Draw the line-bond structure for the compound with the IUPAC name 2,5,9-trimethyl-2-decen-7-yne.
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59
Sodium amide (NaNH2, sodamide) reacts with terminal alkynes as a ____.
A) Brønsted acid
B) Brønsted base
C) reducing agent
D) catalyst
E) electrophile
A) Brønsted acid
B) Brønsted base
C) reducing agent
D) catalyst
E) electrophile
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60
Give the hybridization for the carbanion in the acetylide ion.
A) sp
B) sp2
C) sp3
D) s2p
E) s2p2
A) sp
B) sp2
C) sp3
D) s2p
E) s2p2
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61
When preparing terminal alkynes by an elimination reaction, sodium amide (NaNH2) dissolved in liquid ammonia (NH3) is used most frequently. Which of the following statements offers the best explanation for the above statement?
A) The above statement is false; terminal alkynes are not produced under the given conditions.
B) Sodium amide deprotonates the terminal alkyne, driving formation of the alkynide ion.
C) Only sodium amide is a strong enough base to deprotonate a carbon.
D) Terminal alkynes are more stable than the internal alkynes, and are always the favored product.
E) Steric hindrance favors preparation of the less substituted terminal alkyne.
A) The above statement is false; terminal alkynes are not produced under the given conditions.
B) Sodium amide deprotonates the terminal alkyne, driving formation of the alkynide ion.
C) Only sodium amide is a strong enough base to deprotonate a carbon.
D) Terminal alkynes are more stable than the internal alkynes, and are always the favored product.
E) Steric hindrance favors preparation of the less substituted terminal alkyne.
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62
For the reaction shown, select the expected major organic product.

A) I
B) II
C) III
D) IV
E) V


A) I
B) II
C) III
D) IV
E) V
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63
For the reaction shown, select the expected major organic product.

A) I
B) II
C) III
D) IV
E) V


A) I
B) II
C) III
D) IV
E) V
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64
For the reaction shown, select the expected major organic product.

A) I
B) II
C) III
D) IV
E) V


A) I
B) II
C) III
D) IV
E) V
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65
For the reaction shown, select the expected major organic product.

A) I
B) II
C) III
D) IV
E) V


A) I
B) II
C) III
D) IV
E) V
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66
A dihalide in which the halogens are attached on adjacent carbons is called a _______________ dihalide.
A) vicinal
B) geminal
C) vinylic
D) allylic
E) cis
A) vicinal
B) geminal
C) vinylic
D) allylic
E) cis
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67
Of the species listed below, select those less basic than acetylide.
A) BuLi
B) NaNH2
C) NaOCH3
D) both A and C
E) both B and C
A) BuLi
B) NaNH2
C) NaOCH3
D) both A and C
E) both B and C
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68
Identify the major product.

A) I
B) II
C) III
D) IV
E) V


A) I
B) II
C) III
D) IV
E) V
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69
For the reaction shown, select the expected major organic product.

A) I
B) II
C) III
D) IV
E) V


A) I
B) II
C) III
D) IV
E) V
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70
Identify the major product.

A) I
B) II
C) III
D) IV
E) V


A) I
B) II
C) III
D) IV
E) V
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71
For the reaction shown, select the expected major organic product.

A) I
B) II
C) III
D) IV
E) V


A) I
B) II
C) III
D) IV
E) V
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72
For the reaction shown below, select the expected major product.

A) I
B) II
C) III
D) IV
E) V


A) I
B) II
C) III
D) IV
E) V
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73
Identify the product of the reaction of an alkyne with hydrogen and a metal catalyst.
A) cis alkene
B) trans alkene
C) diene
D) alkyne
E) alkane
A) cis alkene
B) trans alkene
C) diene
D) alkyne
E) alkane
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74
For the reaction shown, select the expected major organic product.

A) I
B) II
C) III
D) IV
E) V


A) I
B) II
C) III
D) IV
E) V
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75
Identify the product of the reaction of an alkyne with sodium and ammonia.
A) cis alkene
B) trans alkene
C) diene
D) alkyne
E) alkane
A) cis alkene
B) trans alkene
C) diene
D) alkyne
E) alkane
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76
A dihalide in which the halogens are attached on the same carbon is called a _______________ dihalide.
A) vicinal
B) geminal
C) vinylic
D) allylic
E) cis
A) vicinal
B) geminal
C) vinylic
D) allylic
E) cis
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77
Identify the product of the reaction of an alkyne with hydrogen and Lindlar's catalyst.
A) cis alkene
B) trans alkene
C) diene
D) alkyne
E) alkane
A) cis alkene
B) trans alkene
C) diene
D) alkyne
E) alkane
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78
For the reaction shown, select the expected major organic product.

A) I
B) II
C) III
D) IV
E) V


A) I
B) II
C) III
D) IV
E) V
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79
For the reaction sequence below, select the expected major product. 
A) 3-methylhexane
B) 1-bromo-3-methylhexene
C) 2-bromo-3-methylhexene
D) 3-methyl-1-hexyne
E) 3-methyl-2-hexyne

A) 3-methylhexane
B) 1-bromo-3-methylhexene
C) 2-bromo-3-methylhexene
D) 3-methyl-1-hexyne
E) 3-methyl-2-hexyne
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80
For the reaction shown, select the expected major organic product.

A) I
B) II
C) III
D) IV
E) V


A) I
B) II
C) III
D) IV
E) V
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