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Electrochemical cells: Electrolytic and Galvanic cells, different types of electrodes, electrode potentials including standard electrode potential, half-cell and cell reactions MCQs for JEE

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Electrochemical cells: Electrolytic and Galvanic cells, different types of electrodes, electrode potentials including standard electrode potential, half-cell and cell reactions JEE MCQs on Goodmarks include 41+ multiple-choice questions with correct answers and step-by-step solutions. Attempt free samples below or unlock the full bank with Pro.

Master Electrochemical cells: Electrolytic and Galvanic cells, different types of electrodes, electrode potentials including standard electrode potential, half-cell and cell reactions through exam-style multiple-choice questions. This page features 41+ JEE MCQs covering Electrochemical cells: Electrolytic and Galvanic cells, different types of electrodes, electrode potentials including standard electrode potential, half-cell and cell reactions, each with verified answers and clear explanations.

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Q1ChemistryUnit 7: Redox Reactions and Electrochemistry
Which of the following statement (s) differentiate between electrochemical cell and electrolytic cell? This question has multiple correct options
Q2ChemistryUnit 7: Redox Reactions and Electrochemistry
A half cell reaction is one which:
Q3ChemistryUnit 7: Redox Reactions and Electrochemistry
The reduction potential of an electrode can be increased by:
Q4ChemistryUnit 7: Redox Reactions and Electrochemistry
The e.m.f. of the cell \begin{tabular}{l|c||c|c} PtH2\boldsymbol{P t} \boldsymbol{H}_{2} & HOCN\boldsymbol{H O C N} & Ag+\boldsymbol{A} \boldsymbol{g}^{+} \\ 1atm\boldsymbol{1} \boldsymbol{a} \boldsymbol{t m} & 1.3×103M\boldsymbol{1} . \boldsymbol{3} \times \mathbf{1 0}^{-\boldsymbol{3}} \boldsymbol{M} & 0.8M\boldsymbol{0 . 8} \boldsymbol{M} \end{tabular} \mid Ag(s)\boldsymbol{A} \boldsymbol{g}(s) is 0.982V.0.982 \mathrm{V} . The Ka\mathrm{K}_{a} for HOCN is : Ag++eAg(s);Eo=0.80V\boldsymbol{A} \boldsymbol{g}^{+}+\boldsymbol{e} \rightarrow \boldsymbol{A} \boldsymbol{g}(\boldsymbol{s}) ; \boldsymbol{E}^{o}=\mathbf{0 . 8 0} \boldsymbol{V}
Q5ChemistryUnit 7: Redox Reactions and Electrochemistry
Cathodic standard reduction potential minus anodic standard reduction potential is equal to:
Q6ChemistryUnit 7: Redox Reactions and Electrochemistry
Assertion In electrochemical cell, we can not use KCl in the salt bridge if anodic or cathodic compartment consists of Ag+\mathrm{Ag}^{+} or Pb2+P b^{2+} ion. Reason Salt bridge is employed to maintain the electrical neutrality and to minimize the liquid-liquid junction potential.
Q7ChemistryUnit 7: Redox Reactions and Electrochemistry
The oxidation potential of a hydrogen electrode at pH=10p H=10 and PH2=1P_{H_{2}}=1 is:
Q8ChemistryUnit 7: Redox Reactions and Electrochemistry
The EcelloE_{c e l l}^{o} for CuCu2+Ag+AgC u\left|C u^{2+}\right|\left|A g^{+}\right| A g in volt is

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