Chlorination of methane takes place by:

1. Elimination

2. SN1

3. Free radical

4. SN2

Subtopic:  Alkanes, Alkenes and Alkynes - Chemical Properties |
 83%
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The products formed after ozonolysis of Pent-2-ene are:

1. Ethanal and Methanal

2. Ethanal and Propanal

3. Ethanal and Butanal

4. Ethanal and  Ethanal

Subtopic:  Alkanes, Alkenes and Alkynes - Chemical Properties |
 89%
From NCERT
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Decreasing order of acidic behavior of benzene, n-hexane, and ethyne is:

1. Hexane > Ethyne > Benzene

2. Benzene > Hexane > Ethyne

3. Ethyne > Benzene > Hexane

4. Benzene > Ethyne > Hexene

Subtopic:  Alkanes, Alkenes and Alkynes - Chemical Properties |
 84%
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Out of the above alkenes, the ones that can give 2-methyl butane on hydrogenation are:

1. a, b 2. b, c
3. a, c 4. a, b, c
Subtopic:  Alkanes, Alkenes and Alkynes - Chemical Properties |
 76%
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The correct order of decreasing reactivity of the following compounds:

Chlorobenzene, 2,4-Dinitrochlorobenzene, and p-Nitrochlorobenzene

with an electrophile (E+)  is :

1. Chlorobenzene > p–Nitrochlorobenzene > 2,4-Dinitrochlorobenzene
2. p – Nitro chlorobenzene > 2, 4-Dinitrochlorobenzene > Chlorobenzene 
3. Chlorobenzene  > 2, 4-Dinitrochlorobenzene > p-Nitrochlorobenzene
4. 2, 4-Dinitrochlorobenzene > Chlorobenzene > p-Nitrochlorobenzene 

Subtopic:  Alkanes, Alkenes and Alkynes - Chemical Properties |
 69%
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 An alkene ‘A’ on ozonolysis gives a mixture of ethanal and pentan-3-one.
The IUPAC name of ‘A’ is :

1. 3-Ethylpent-2-ene

2. 3-Ethylpent-2- yne

3. 2-Ethylpent-3-ene

4. 3-Ethylpent-4-yne

Subtopic:  Alkanes, Alkenes and Alkynes - Chemical Properties |
 81%
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An alkene ‘A’ contains 3 C – Cσ bonds, 8 C – H σ bonds, and 1 C – C π bond,

 ‘A’ on ozonolysis gives two moles of an aldehyde of molar mass 44 u. The IUPAC name of ‘A’ is:

1. Prop-2-yne 2. But-2-ene
3. But-2-yne 4. Prop-2-ene
Subtopic:  Alkanes, Alkenes and Alkynes - Chemical Properties |
 80%
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Propanal and pentane-3-one are the products of ozonolysis of an alkene. The structural formula of the alkene is  :

1. 2.  , 
3. 4.

Subtopic:  Alkanes, Alkenes and Alkynes - Chemical Properties |
 83%
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The balanced chemical equation for the combustion reaction of Butane is :

1. \(\mathrm{2 {C}_4 {H}_{10({g})}+13 {O}_{2({g})} \rightarrow 8 {CO}_{2({g})}+10 {H}_2 {O}}+\) Heat Butane
2. \(\mathrm{2 {C}_4 {H}_{10({g})}+13 {O}_{2({g})} \rightarrow 9 {CO}_{2({g})}+10 {H}_2 {O}+}\) Heat Butane
3. \(\mathrm{2 {C}_4 {H}_{10({g})}+14 {O}_{2({g})} \rightarrow 8 {CO}_{({g})}+10 {H}_2 {O}}+\) Heat Butane
4. \( \mathrm{{C}_4 {H}_{10({g})}+13 {O}_{2({g})} \rightarrow 8 {CO}_{({g})}+10 {H}_2 {O}}+\) Heat Butane
Subtopic:  Alkanes, Alkenes and Alkynes - Chemical Properties |
 83%
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