Home
Class 12
CHEMISTRY
In a series ethane (CH(3)-CH(3)) ethylen...

In a series ethane `(CH_(3)-CH_(3))` ethylene `(CH_(2)=CH_(2))` and acetylene `(CH-=CH)` , the C-H bond energy is

A

The same in all the three compounds

B

Greatest in acetylene

C

Greatest in ethylene

D

Greatest in ethane

Text Solution

Verified by Experts

The correct Answer is:
B
Promotional Banner

Topper's Solved these Questions

  • CHEMICAL BONDING AND MOLECULAR STRUCTURE

    AAKASH INSTITUTE|Exercise Assignment Section - B Objective Type Questions(One option is correct)|37 Videos
  • CHEMICAL BONDING AND MOLECULAR STRUCTURE

    AAKASH INSTITUTE|Exercise Assignment Section - C Objective Type Questions(More than one options are correct )|13 Videos
  • CHEMICAL BONDING AND MOLECULAR STRUCTURE

    AAKASH INSTITUTE|Exercise Try Yourself|20 Videos
  • BIOMOLECULES

    AAKASH INSTITUTE|Exercise EXERCISE (ASSIGNMENT) SECTION - D Assertion - Reason Type Questions|5 Videos
  • CHEMICAL KINETICS

    AAKASH INSTITUTE|Exercise ASSIGNMENT (SECTION D : Assertion - Reason Type Questions)|15 Videos

Similar Questions

Explore conceptually related problems

Compare the potential energy of CH_(3) - CH_(3) , CH_(2) = CH_(2) CH -= CH

In the compound CH_(2)=CH-CH_(2)-CH_(2)-C-=CH the C_(2)-C_(3) bond is of

The bond dissociation energies of the following underset(I)(CH_(3)-H) underset(II)(CH_(3)CH_(2)-H) underset(III)(CH_(2)=CH-CH_(2)-H) underset(IV)(C_(6)H_(5)-H) vary in the order :

In the compound HC-=C-CH_(2)-CH=CH-CH_(3) , the C_(2)-C_(3) bond is the type of :-

CH_(3) - underset(CH_(3))underset(|) overset(.)(CH) - CH_(3) " "(b) CH_(3) - overset(.)CH_(2) - CH_(3) " "(c) CH_(3) - overset(.)CH_(3) " "(d) overset(.) CH_(4) Compare the oversetC - H bond energy of the above compounds.

CH_(3)-CH_(2)-CH_(2)-O-CH_(3) and CH_(3)-overset(CH_(3))overset(|)(C )H-O-CH_(3) are

Name of the following as substituted derivatives of ethylene. (a) CH_(3)-CH=CH-CH_(3) (b) CI_(2)C=CHCI (c) (CH_(3))_(2)C=CH_(2) (d) (CH_(2)=CH)_(2)C=CH_(2) (e) (CH_(2)=CH)-CH=CH-(CH=CH_(2))