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Faradays constant is defined as ____________. - Chemistry

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प्रश्न

Faradays constant is defined as ____________.

पर्याय

  • charge carried by 1 electron

  • charge carried by one mole of electrons

  • charge required to deposit one mole of substance

  • charge carried by 6.22 × 1010 electrons

MCQ
रिकाम्या जागा भरा
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उत्तर

Faradays constant is defined as charge carried by one mole of electrons.

Explanation:

1F = 96500 C = charge of 1 mole of e = charge of 6.022 × 1023 e

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Conductivity of Electrolytic Solution
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पाठ 9: Electro Chemistry - Evaluation [पृष्ठ ६३]

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सामाचीर कलवी Chemistry - Volume 1 and 2 [English] Class 12 TN Board
पाठ 9 Electro Chemistry
Evaluation | Q 6. | पृष्ठ ६३

संबंधित प्रश्‍न

The number of electrons that have a total charge of 9650 coulombs is ____________.


The molar conductivity of a 0.5 mol dm−3 solution of AgNO3 with electrolytic conductivity of 5.76 × 10−3 S cm−1 at 298 K is ____________.


Which of the following electrolytic solution has the least specific conductance?


The equivalent conductance of `"M"/36` solution of a weak monobasic acid is 6 mho cm2 equivalent−1 and at infinite dilution is 400 mho cm2 equivalent−1. The dissociation constant of this acid is ____________.


A conductivity cell has been calibrated with a 0.01 M, 1 : 1 electrolytic solution (specific conductance (κ = 1.25 × 10−3 S cm−1) in the cell and the measured resistance was 800 Ω at 25°C. The cell constant is, ____________.


Conductivity of a saturated solution of a sparingly soluble salt AB (1 : 1 electrolyte) at 298 K is 1.85 × 10−5 S m−1. Solubility product of the salt AB at 298 K `(Λ_"m"^∘)_"AB"` = 14 × 10−3 S m2 mol−1.


Why does the conductivity of a solution decrease on dilution of the solution?


The conductivity of a 0.01 M solution of a 1 : 1 weak electrolyte at 298 K is 1.5 × 10−4 S cm−1.

i) molar conductivity of the solution

ii) degree of dissociation and the dissociation constant of the weak electrolyte

Given that

\[\ce{λ^∘_{cation}}\] = 248.2 S cm2 mol−1

\[\ce{λ^∘_{anion}}\] = 51.8 S cm2 mol−1


Arrange the following solutions in the decreasing order of specific conductance.

i) 0.01 M KCl

ii) 0.005 M KCl

iii) 0.1 M KCl

iv) 0.25 M KCl

v) 0.5 M KCl


0.1 M NaCl solution is placed in two different cells having cell constant 0.5 and 0.25 cm−1 respectively. Which of the two will have a greater value of specific conductance.


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