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Gammexane (a γ-isomer) is:

1. BHC
2. Benzene hexachloride
3. Lindane
4. All of the above

Subtopic:  Aromatic Hydrocarbons - Benzene - Structure, Preparation & Chemical Reactions |
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In the following reaction the catalyst used is:

 

         \(\rightarrow\)\(C_{6} H_{6}\) + 3\(H_{2}\)

1. \(\left(Cr\right)_{2} O_{3}\)                                      2. \(A l_{2} O_{3}\)

3. Zn dust                                    4. \(Cr_{2} O_{3}\) and \(A l_{2} O_{3}\)

Subtopic:  Alkanes, Alkenes and Alkynes - Chemical Properties |
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Silver acetylide when heated with HCl gives:

1. C2H2

2. H2

3. C2H4 

4. C6H6

Subtopic:  Aliphatic Hydrocarbon - Methods of Preparation |
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R-CH2-CCl2-RReagentR-CC-R.
The reagent is: 

1. Na                                     
2. HCl in H2O
3. NaNH2               
4. Zn in alcohol 

Subtopic:  Alkanes, Alkenes and Alkynes - Chemical Properties |
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Which of these will not react with acetylene?

1. NaOH                                       
2. Amm. AgNO3
3. Na                                           
4. HCl

Subtopic:  Alkanes, Alkenes and Alkynes - Chemical Properties |
Level 3: 35%-60%
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Alkene-1 on hydroboration followed with action of H2O2 gives:

1. alkanol-2 

2. alkanol-1

3. alkanal 

4. alkanone

Subtopic:  Alkanes, Alkenes and Alkynes - Chemical Properties |
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The reaction,

H2SO4 is the example of:

1. sulphonation 

2. dehydration

3. alkylation

4. decomposition

Subtopic:  Alkanes, Alkenes and Alkynes - Chemical Properties |
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2-bromopentane is heated with potassium ethoxide in ethanol. The major product obtained is  

1. 2-ethoxypentane               
2. pent-1-ene
3. trans-pent-2-ene               
4. cis-pent-2-ene

Subtopic:  Alkanes, Alkenes and Alkynes - Chemical Properties |
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RCOCl and AlCl3 are used in the Friedel-Crafts reaction.
The electrophile among the following is:

1. Cl+                                       

2. RCOCl

3. RC+O                                     

4. R+

Subtopic:  Aromatic Hydrocarbons - Reactions & Mechanism |
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An alkene, obtained by the dehydration of an alcohol (A), on ozonolysis gives two molecules of acetaldehyde for every molecule of alkene. The alcohol (A) is:

1. \(\mathrm{CH}_3 \mathrm{CH}_2 \mathrm{CH}_2 \mathrm{OH}\)
2. \(\mathrm{CH}_3 \mathrm{CH}_2 \mathrm{OH}\)
3. \(\mathrm{CH}_3 \mathrm{CH}=\mathrm{CHCH}_2 \mathrm{OH}\)
4. \(\mathrm{CH}_3 \mathrm{CH_2}\mathrm{CH(OH)}\mathrm{CH_3}\)

Subtopic:  Alkanes, Alkenes and Alkynes - Chemical Properties |
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