General Organic Chemistry MCQ Questions & Answers in Organic Chemistry | Chemistry
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301.
Which of the following intermediates contains three pairs of electrons in its valence shell?
A
Carbocations
B
Carbanions
C
Free radicals
D
Both (A) and (B)
Answer :
Carbocations
No explanation is given for this question. Let's discuss the answer together.
302.
Which of the following is least reactive in a nucleophilic substitution reaction?
A
$${\left( {C{H_3}} \right)_3}C - Cl$$
B
$$C{H_2} = CHCl$$
C
$$C{H_3}C{H_2}Cl$$
D
$$C{H_2} = CHC{H_2}Cl$$
Answer :
$$C{H_2} = CHCl$$
Chlorine of vinyl chloride $$\left( {C{H_2} = CHCl} \right)$$ is non-reactive ( less reactive ) towards nucleophile ( in nucleophilic substitution reaction ) because it shows the following resonating structure due to $$+M$$ - effect of $$-Cl$$ - $$atom.$$
In structure II, $$Cl$$ - $$atom$$ have positive charge and partial double bond character with $$C$$ of vinyl group, so it is more tightly attracted towards the nucleus and does not get replaced by nucleophile in $${S_N}$$ reaction.
303.
Which one of the following conformations of cyclohexane is chiral ?
A
Boat
B
Twist boat
C
Rigid
D
Chair
Answer :
Twist boat
Chiral conformation will not have plane of symmetry. Since twist boat does not have plane of symmetry it is chiral.
304.
In which of the following species is the underlined carbon having $$s{p^3}$$ hybridisation?
A
$$C{H_3}\underline C OOH$$
B
$$C{H_3}\underline C {H_2}OH$$
C
$$C{H_3}\underline C OC{H_3}$$
D
$$C{H_2} = \underline C H - C{H_3}$$
Answer :
$$C{H_3}\underline C {H_2}OH$$
In molecules (A), (C) and (D), the carbon atom has a multiple bond, only (B) has $$s{p^3}$$ hybridization.
305.
Stability of $$iso$$ - butylene can be best explained by
A
inductive effect
B
mesomeric effect
C
hyperconjugative effect
D
steric effect
Answer :
hyperconjugative effect
No explanation is given for this question. Let's discuss the answer together.
306.
Which of the following compounds will undergoes racemisation when solution of $$KOH$$ hydrolysis?
A
B
C
D
Answer :
Option (C) is most probable answer. Out of compound (c) or (d), the (d) results in formation of racemic product due to chirality. Compound (c) although not chiral but can form racemic product. After removal of $$C{l^ - }$$ gives a carbocation which in turn undergo racemisation after rearrangement.
307.
The order of decreasing reactivity towards an electrophilic reagent, for the following
(i) Benzene
(ii) Toluene
(iii) Chlorobenzene
(iv) Phenol
woild be
A
(i) > (ii) > (iii) > (iv)
B
(ii) > (iv) > (i) > (iii)
C
(iv) > (iii) > (ii) > (i)
D
(iv) > (ii) > (i) > (iii)
Answer :
(iv) > (ii) > (i) > (iii)
Benzene having any activating group, i.e. $$OH,R,$$ etc, undergoes electrophilic substitution very easily as compared to benzene itself. Thus, toluene $$\left( {{C_6}{H_5}C{H_3}} \right),$$ phenol $$\left( {{C_6}{H_5}OH} \right)$$ undergo elecrophilic substitution very readily than benzene. Chlorine with $$ + E$$ and $$ + M$$ - effect deactivates the ring due to strong $$-I$$ - effect. So, it is difficult to carry out the substitution in chlorobenzene than in benzene, so the correct order is
$$\mathop {{\text{Phenol}}}\limits_{\left( {{\text{iv}}} \right)} {\text{ > }}\mathop {{\text{Toluene}}}\limits_{\left( {{\text{ii}}} \right)} {\text{ > }}\mathop {{\text{Benzene}}}\limits_{\left( {\text{i}} \right)} {\text{ > }}\mathop {{\text{Chlorobenzene}}}\limits_{\left( {{\text{iii}}} \right)} $$
308.
Which of the following carbanion expected to be most stable?
Carbanions are stabilised by electron withdrawing groups. $$ - N{O_2}$$ is stronger electron withdrawing group as compared to $$ - CHO.$$ At $$ortho$$ - position, the effect is more pronounced.
309.
Which one of the following compounds has the most acidic nature?
A
B
C
D
Answer :
Key Idea Presence of electron withdrawing substituent increases the acidity while electron releasing substituent, decreases the acidity.
Phenyl is an electron withdrawing substituent while $$ - C{H_3}$$ is an electron releasing substituent. Moreover, phenoxide ion is more resonance stabilised as compared to benzyloxide ion, thus releases proton more easily. That’s why phenol is a strong acid among the given compounds.
310.
$$But$$ $$-2-ene$$ exhibits $$cis-trans-isomerism$$ due
to
A
rotation around $${C_2} - {C_3}$$ double bond
B
rotation around $${C_3} - {C_4}$$ sigma bond
C
rotation around $${C_1} - {C_2}$$ bond
D
restricted rotation around $$C=C$$ bond
Answer :
restricted rotation around $$C=C$$ bond
Due to presence of $$ > C = C < $$ in $$but$$ $$-2-ene,$$ it shows restricted rotation. Hence, give two types of arrangements around the space of $$ > C = C < $$ as $$cis$$ and $$trans$$ - forms.