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For the following equilibrium N(2)O(4...

For the following equilibrium
`N_(2)O_(4)(g)hArr 2NO_(2)(g)`
`K_(p)` is found to be equal to `K_(c)`. This is attained when `:`

A

`T=1K`

B

`T=12.18K`

C

`T=27.3K`

D

`T=273K`

Text Solution

Verified by Experts

The correct Answer is:
B

`K_(p)=K_(c)(RT)^(Deltan)`
Here, `K_(p)=K_(c),Deltan=2-1=1`
`:. (RT)^(Deltan)=1`
`(0.0821xxT)=1`
`T=(1)/(0.0821)=(10000)/(821)=12.18K`
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