Home
Class 12
CHEMISTRY
Increasing order of equilibrium constant...

Increasing order of equilibrium constant for the formation of a hydrate is:
(i)

A

`i lt ii lt iii lt iv`

B

`iv lt ii lt i lt iii`

C

`ii lt iv lt iii lt i`

D

`iv lt ii lt iii lt i`

Text Solution

Verified by Experts

The correct Answer is:
A

`i rarr` least reactive since it ahs strong electron donating group that stabilize carbonyl group.
`ii rarr` has electron donating group that indirectly stabilize the carbonyl carbon
`iv rarr` has withdrawing group that destabilize the carbonyl carbon most reacative
Promotional Banner

Topper's Solved these Questions

  • AROMATIC COMPOUNDS

    MS CHOUHAN|Exercise Level 1 (Q.31 To Q.60)|1 Videos
  • AROMATIC COMPOUNDS

    MS CHOUHAN|Exercise Level 1 (Q.121 To Q.150)|3 Videos
  • AN INTRODUCTION TO ORGANIC REACTIONS AND THEIR MECHANISMS ACIDS AND BASES

    MS CHOUHAN|Exercise ADDITIONAL QUESTION (SINGLE CORRECT CHOICE TYPE )|32 Videos
  • BIOMOLECULES

    MS CHOUHAN|Exercise Level 2|1 Videos

Similar Questions

Explore conceptually related problems

Increasing order of equilibrium constants for the formation of a hydrate :

Equilibrium Constants

Arrange in their increasing order of equilibrium constants for hydration ?

Rank the following in order of increasing value of the equilibrium constant for hydration , K_("hyd.") (smallest value first) .

Rank the following in order of increasing value of the equilidrium constan for hydration, K_(hyd) . ,

15 moles of H_(2) and 5.2 moles of I_(2) are mixed and allowed to attain equilibrium at 500^(@)C . At equilibrium, the number of moles of HI is found to be 10 mole. The equilibrium constant for the formation of HI is

15 moles of H_(2) and 5.2 moles of I_(2) are mixed are allowed to attain equilibrium at 500^(@)C . At equilibrium the concentration of HI is found to be 10 moles. The equilibrium constant for the formation of HI is

15 mol of H_(2) and 5.2 moles of I_(2) are mixed and allowed to attain eqilibrium at 500^(@)C At equilibrium, the concentration of HI is founf to be 10 mol. The equilibrium constant for the formation of HI is.