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 Multiple Choice QuestionsMultiple Choice Questions

291.

Standard electrode potential of three metals X, Y and Z are -1.2 V, +0.5 V and -3.0 V respectively. The reducing power of these metals will be

  • Y > X > Z

  • Z > X > Y

  • X > Y > Z

  • Y > Z > X


292.

If the Ecell° for a given reaction has a negative value then which of the following gives the correct relationships for the values of G° and Keq?

  • G° < 0; Keq > 1

  • G° <0; Keq < 1

  • G° > 0; Keq < 1

  • G° > 0; Keq > 1


293.

The conductivity of 0.001028 mol L-1 acetic acid is 4.95 x 10-5 S cm-1. Find out its dissociation constant if Λm for acetic acid is 390.5 S cm-1 mol-1.

  • 2.18 x 10-5 mol-1L-1

  • 1.78 x 10-5 mol L-1

  • 3.72 x 10-4 mol L-1

  • 2.37 x 10-4 mol L-1


294.

Which of the following statement is not correct about an inert electrode in a cell?

  • It does not participate in the cell reaction.

  • It provides surface either for oxidation or for reduction reaction.

  • It provides surface for conduction of electrons.

  • It provides surface for redox reaction


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295.

Which of the following statement is correct?

  • Ecell and fG of cell reaction both are extensive properties.

  • Ecell and fG of cell reaction both are intensive properties

  • Ecell in the intensive property while rG of cell reaction is an extensive property

  • Ecell is an extensive property while rG of cell reaction is an intensive property.


296.

When Br2 is treated with aqueous solutions of NaF, NaCl, NaI separately

  • F2, Cl2 and I2 are liberated

  • only F2 and Cl2 are liberated

  • only I2 is liberated

  • only Cl2 is liberated


297.

Electrolysis of fused NaCl will give

  • Na

  • NaOH

  • NaClO

  • NaClO3


298.

How long it will take to deposit 1.0 g of chromium when a current of 1.25 A flows through a solution of chromium (III) sulphate ? (Molar mass of Cr = 52)

  • 1.24 min

  • 1.24 h

  • 1.24 s

  • None of these


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299.

The compounds formed at anode in the electrolysis of an aqueous solution of potassium acetate, are

  • C2H6 and CO2

  • C2H4 and CO2

  • CH4 and H2

  • CH4 and CO2


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300.

What is the electrode potential (in V) of the following electrode at 25°C ?

Ni2+ (0.1 M) | Ni(s)

(Standard reaction potential of Ni2+ | Ni is -0.25V, 2.303 RTF = 0.06)

  • -0.28V

  • -0.34V

  • -0.82V

  • -0.22V


A.

-0.28V

Ecell°  = Ecell° - 2.303 RTnF log [Ni][Ni2+]           = -0.25 -0.062 log10.1    n = 2           = - 0.25 - 0.03 x 1Ecell = -0.28 V


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