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Standard reduction potential (volts) in ...

Standard reduction potential (volts) in acid solution is given by the Latimer diagram as shown:
`CiO_(4)^(-)overset(1.19)rarrCIO_(3)^(-)overset(1.21)rarrCIOrarrCl_(2)rarrCl^(-)`
The pH at which `E_(CIO_(3)^(-)|CIO^(-))=1.31` volt is: [Given: `[CIO_(3)^(-)=1M,[CIO^(-)]=1M`,
`(2.303RT)/(F)=0.06]`

A

0

B

1

C

2

D

12

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The correct Answer is:
C
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Standard reduction potential (volts) in acid solution is given by the Latimer diagram as shown: CiO_(4)^(-)overset(1.19)rarrCIO_(3)^(-)overset(1.21)rarrCIOrarrCl_(2)rarrCl^(-) What is standard reduction potential of CIO_(3)^(-)rarr(1)/(2)Cl_(2) In acidic medium is:

Standard reduction potential (volts) in acid solution is given by the Latimer diagram as shown: CiO_(4)^(-)overset(1.19)rarrCIO_(3)^(-)overset(1.21)rarrCIOrarrCl_(2)rarrCl^(-) Which of the following cannot disproportionate in acid solution under standard conditions?

The pH of 1 M PO_(4)^(3-) (aq) solution is, [ Given pK_(b)=(PO_(4)^(3-))=1.62]

Reduction potentials of some ions are given below. Arrange them in decreasing order of oxidising power. Ion " " CiO_(4)^(-) " " IO_(4)^(-) " " BrO_(4)^(-) Reduction " " E^(Theta)=1.19 V " " E^(Theta)=1.65 V " " E^(Theta)=1.74 potential E^(Theta)//V

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