Home
Class 12
CHEMISTRY
CIO(2) is an // a...

`CIO_(2)` is an `//` a

A

anhydride of `HClO_2`

B

anhydride of `HClO_3`

C

mixed anhydride of `HClO_2 and HClO_3`

D

mixed anhydride of `HClO_3 and HClO_4`

Text Solution

Verified by Experts

The correct Answer is:
C
Promotional Banner

Similar Questions

Explore conceptually related problems

The compound X (C_9H_7CIO_2) is optically active.It mainly exists in enolic form.It racemises due to enolisation its structure is :

CIO_(3) is the mixed anhydride of :

Consider the following statements. The common features of the molecuels BF_3. CIO_2 and NO are that I. All are Lewis acids II. All are gaseous in nature III. All contain unpaired electrons IV. All do not conform to the octect rule.

Sigma bond between CI and O in CIO_4^(-) is formed by ---- overlapping

At 18^(@)C the mobilities of NH_(4)^(+) and CIO_(4)^(-) ions are 6.6 xx 10^(-4) and 5.7 xx 10^(-4)cm^(2)"volt"^(-1)sec^(-1) at infinite dilution. Calculate equivalent conductance of ammonium chlorate solution.

In which of the following reactions H_(2)O_(2) acts as a reducing agent? 1. H_(2)O_(2)+2H^(+)+2e^(-)to2H_(2)O 2. H_(2)O_(2)-2e^(-)toO_(2)+2H^(+) 3. H_(2)O_(2)+2e^(-)to2OH^(-) 4. H_(2)O_(2)+2OH^(-)-2e^(-)toO_(2)+2H_(2)O

Statement -1 : NO_(2) and CIO_(2) both being odd electron molecules dimerise. Statement -2 : On dimerisation, NO_(2) is coverted to stable N_(2)O_(4) molecule with even number of electrons.

The solubility of [Co(NH)_(3))_(4)Cl_(4)]CIO_(4) ____if the lambda_(Co(NH_(3))_(4)Cl_(2)^(+)=50, lambda_(ClO_(4)^(-)=70 and the measured resistance was 35.5 Omega in a cell with cell constant of 0.20 is ____

(a)The CI-O bond distance in CIO_(4)^(Θ) is 144pm What do you conclude about the structure of this ion ? (b) The POCI_(3) molecule has the shape of an irregular tetrahedron with the P atom located centrally The CI-P-CI angle is found to be 1035^(@) Give a qualitative explanation for the deviation of this structure from a regular tetrahedron .

In which of the following reactions H_(2)O_(2) acts as reducing agent? (A) H_(2)O_(2)+2H^(+)+2e^(-) to 2H_(2)O (B) H_(2)O_(2)-2e^(-) to O_(2)+2H^(+) (C ). H_(2)O_(2)+2e^(-) to 2OH^(-) (D) H_(2)O_(2)+2OH^(-)-2e^(-) to O_(2)+2H_(2)O