The IUPAC name of the following compound is:
 p-ClC6H4CH2CH(CH3)2

1. 1−Chloro−4−(2−methylpropyl) benzene

2. 4−Chloro−1−(2−methylpropyl) benzene

3. 1−Chloro−4−(3−methylpropyl) benzene

4. 4−Chloro−4−(3−methylpropyl) benzene

Subtopic:  Introduction and Physical Properties |
 53%
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What is the IUPAC name for CH3C(p-ClC6H4)2CH(Br)CH3?

1. 2−Bromo−3,3−bis(4−chlorophenyl) butane

2. 4−Bromo−3,3−bis(2−chlorophenyl) butane

3. 2−Bromo−1,1−bis(4−chlorophenyl) butane

4. 4−Bromo−1,1−bis(2−chlorophenyl) butane

Subtopic:  Introduction and Physical Properties |
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What is the correct IUPAC name of the below mentioned compound?



 

1. 1−Chloro−4−(1−iodophenyl)−3, 3−dimethylbut−1−ene
2. 1−Chloro−1−(4−iodophenyl)−3, 3−dimethylbut−1−ene
3. 1−Chloro−2−(3−iodophenyl)−3, 3−dimethylbut−1−en
4. 4−Chloro−1−(1−iodophenyl)−1, 1−dimethylbut−3−ene

 
Subtopic:  Introduction and Physical Properties |
 79%
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The correct sequence for increasing dipole moment is:

1. CCl4 < CHCl3 < CH2Cl2
2. CHCl3 < CH2Cl2 < CCl4
3. CCl4 < CH2Cl2 < CHCl3
4. CH2Cl2 < CCl4 < CHCl3

Subtopic:  Introduction and Physical Properties |
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p-Dichlorobenzene has a higher melting point than those of o- and m-isomers because :

1. More energy is required to break the crystal lattice of m-dichlorobenzene
2. More energy is required to break the crystal lattice of p-dichlorobenzene
3. More energy is required to break the crystal lattice of o-dichlorobenzene
4. None of the above
Subtopic:  Introduction and Physical Properties |
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The correct IUPAC name for the following structure is:

1. 2-Chloro-3-methylbutane

2. 3-Chloro-2-methylbutane

3. 2-Chloro-1-methylbutane

4. 3-Chloro-1-methylbutane

Subtopic:  Introduction and Physical Properties |
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(CH3)3CCH2CH(Br)C6His: 

1. Secondary benzyl halide

2. Secondary alkyl halide

3. Primary alkyl halide

4. Secondary allyl halide

Subtopic:  Introduction and Physical Properties | Isomerism & Chirality |
 64%
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CH3CH2CH(CH3)CH(C2H5)Cl is:

1. Secondary benzyl halide

2. Secondary alkyl halide

3. Primary alkyl halide

4. Secondary allyl halide

Subtopic:  Introduction and Physical Properties | Isomerism & Chirality |
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CH3CH2C(CH3)2CH2I  is:

1. Secondary benzyl halide

2. Secondary alkyl halide

3. Primary alkyl halide

4. Secondary allyl halide

Subtopic:  Introduction and Physical Properties | Isomerism & Chirality |
 80%
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(CH3)2CHCH(Cl)CH3 can be classified as:

1. Secondary benzyl halide

2. Secondary alkyl halide

3. Primary alkyl halide

4. Secondary allyl halide

Subtopic:  Introduction and Physical Properties | Isomerism & Chirality |
 87%
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