Chemistry · JEE

Electrolytic and metallic conduction, conductance in electrolytic solutions, molar conductivities and their variation with concentration, Kohlrausch's law and its applications Concepts for JEE

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Master Electrolytic and metallic conduction, conductance in electrolytic solutions, molar conductivities and their variation with concentration, Kohlrausch's law and its applications by understanding definitions, standard results, and typical JEE question patterns — then practise with syllabus-aligned MCQs on Goodmarks.

Build clear conceptual foundations for Electrolytic and metallic conduction, conductance in electrolytic solutions, molar conductivities and their variation with concentration, Kohlrausch's law and its applications before speed practice. This guide covers what JEE expects and how to test yourself with MCQs.

Concept explainer

Electrolytic and metallic conduction, conductance in electrolytic solutions, molar conductivities and their variation with concentration, Kohlrausch's law and its applications is a core JEE Main Chemistry subtopic under Redox Reactions and Electrochemistry. Master the definitions, standard results, and typical MCQ patterns tested in JEE Main and Advanced.

Key points

  • Understand the definition and scope of Electrolytic and metallic conduction, conductance in electrolytic solutions, molar conductivities and their variation with concentration, Kohlrausch's law and its applications in the JEE syllabus
  • Memorise key formulas and standard results linked to Electrolytic and metallic conduction, conductance in electrolytic solutions, molar conductivities and their variation with concentration, Kohlrausch's law and its applications
  • Practise 20–40 syllabus-aligned MCQs with step-by-step solutions

JEE tips

  • Revise Electrolytic and metallic conduction, conductance in electrolytic solutions, molar conductivities and their variation with concentration, Kohlrausch's law and its applications with a one-page formula sheet before attempting mixed tests
  • After each practice set, log mistakes specific to Electrolytic and metallic conduction, conductance in electrolytic solutions, molar conductivities and their variation with concentration, Kohlrausch's law and its applications and reattempt after 48 hours

Common trap

Students often rush Electrolytic and metallic conduction, conductance in electrolytic solutions, molar conductivities and their variation with concentration, Kohlrausch's law and its applications questions without checking units, sign conventions, or boundary conditions — always verify assumptions before calculating.

Free sample questions

Attempt 8 free MCQs for Electrolytic and metallic conduction, conductance in electrolytic solutions, molar conductivities and their variation with concentration, Kohlrausch's law and its applications. Unlock 37+ more with Pro.

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Q1ChemistryUnit 7: Redox Reactions and Electrochemistry
One drop of methyl orange solution when added to the solution obtained after electrolysis of a concentrated solution of NaCl with Pt electrodes, the colour of the solution will turn:
Q2ChemistryUnit 7: Redox Reactions and Electrochemistry
A chemist wants to produce Cl2(g)C l_{2}(g) from molten NaCl.N a C l . How many grams could be produced if he uses a steady current of 2 ampere for 2.5 minutes :-
Q3ChemistryUnit 7: Redox Reactions and Electrochemistry
The volume of gases evolved at STPS T P by passing 0.1A0.1 A of current for 965g965 g through an aqueous solution of potassium acetate:
Q4ChemistryUnit 7: Redox Reactions and Electrochemistry
A certain current liberated 0.504 g of hydrogen in 2 hours. How many grams of copper can be liberated by the same current flowing for the same time in copper sulphate solution?
Q5ChemistryUnit 7: Redox Reactions and Electrochemistry
On passing a current through a molten aluminium chloride for some time produced 11.28 lit of Cl2C l_{2} at NTP\mathrm{NTP} at anode. The quantity of aluminium deposited at cathode is:
Q6ChemistryUnit 7: Redox Reactions and Electrochemistry
The resistance of 1N1 \mathrm{N} solution of acetic acid is 250Ω250 \Omega when measured in a cell having a cell constant of 1.15cm1.1.15 \mathrm{cm}^{-1} . The equivalent conduction (in oh m1cm2equiv1m^{-1} c m^{2} e q u i v^{-1} ) of 1N1 N acetic acid is
Q7ChemistryUnit 7: Redox Reactions and Electrochemistry
The weight of silver (At. Wt. = 108) displaced by a quantity of electricity which displaces 5600ml5600 \mathrm{ml} of O2O_{2} at STP will be
Q8ChemistryUnit 7: Redox Reactions and Electrochemistry
When the power delivered by a 100 volt battery is 40 watts, the equivalent resistance of the circuit is:

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Frequently asked questions

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Focus on core ideas across Electrolytic and metallic conduction, conductance in electrolytic solutions, molar conductivities and their variation with concentration, Kohlrausch's law and its applications. JEE tests application, not just memorisation.