Which of the following compounds does not exhibit hydrogen bonding?

1.  \(\mathrm{CH}_3 \mathrm{CH}_2 \mathrm{OH}\)  2.      
3.     4.    
Subtopic:  van der Waal Force & Hydrogen Bonding |
 73%
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Which of the following molecules exhibits H-bonding?

1. CH4 2. H2Se
3. N2H4 4. H2S
Subtopic:  van der Waal Force & Hydrogen Bonding |
 72%
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The correct order of H-bond strength in the following compounds is:

1. H2O > H2O2 > HF > H2S

2. HF >  H2O2 > H2O > H2S

3. HF > H2O > H2S > H2O2

4. HF > H2O > H2O2 > H2S

Subtopic:  van der Waal Force & Hydrogen Bonding |
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In which of the following compounds is an intramolecular hydrogen bond present?

1. H2O2 2. HCN
3. Cellulose 4. Concentrated acetic acid
Subtopic:  van der Waal Force & Hydrogen Bonding |
From NCERT
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The incorrect order of the force of attraction among the given species is :

1. HI > HBr> Cl2

2. CCl4>CH2Cl2>CH3Cl>CH4

3. n- Pentane > iso-Pentane > neo-Pentane

4. OH2>OCH32>OBr2

Subtopic:  Polarity | van der Waal Force & Hydrogen Bonding |
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The compound that has the lowest boiling point is:

1. HF 2. HCl
3. HBr  4. HI 
Subtopic:  Octate, Isoelectronic Species, Lewis Structure & Formal Charge | van der Waal Force & Hydrogen Bonding |
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The incorrect order of boiling point is-

1. H2O > CH3OH             

2. NCH33< NHCH32

3. H3PO4> Me3PO4         

4. CH3N3> HN3

Subtopic:  Polarity | van der Waal Force & Hydrogen Bonding |
 55%
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Iodine molecules are held in the solid lattice by............

(1) London forces                     (2) dipole-dipole interactions

(3) Covalent bonds                   (4) coulombic force

Subtopic:  van der Waal Force & Hydrogen Bonding |
 60%
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Out of the two compounds shown below, the vapour pressure of B at a particular temperature is expected to be :

(A)  and (B) 

(1) Higher than that of A

(2) Lower than that of A

(3) same as that of A 

(4) can be higher or lower depending upon the size of the vessel 

Subtopic:  van der Waal Force & Hydrogen Bonding |
 65%
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The type of molecular forces of attraction present in the following compound is:

1. Intermolecular H-bonding. 2. Intramolecular H-bonding.
3. Van der Waal's force. 4. All of the above.
 

Subtopic:  van der Waal Force & Hydrogen Bonding |
 66%
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