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Electrochemistry

  • Kohlrausch's Law and Degree of Dissociation
  • Faraday's First Law - Mass Deposited by Electrolysis
  • Faraday's Laws of Electrolysis
  • Conductance of Electrolytic Solutions – Cell Constant
  • Gibbs Energy and Cell Potential
  • Electrochemical Cells and Feasibility of Reactions
  • Nernst Equation
  • Kohlrausch's Law
  • Conductance of Electrolytic Solutions – Ostwald's Dilution
  • Electrolysis – Products of Electrolysis
  • Electrolytic Cells – Faraday's Laws of Electrolysis
  • Nernst Equation – Equilibrium Constant of a Cell Reaction
  • Nernst equation for a hydrogen electrode
  • Corrosion
  • Relation between Gibbs energy and standard cell potential
  • Fuel cells - hydrogen-oxygen fuel cell
  • Electrochemical series - standard reduction potentials
  • Reduction potentials and oxidising/reducing tendencies
  • Kohlrausch's law - molar conductivity vs concentration
  • Calculation of standard cell potential
  • Standard EMF of a cell
  • Gibbs energy and EMF
  • Electrochemical series - reducing power
  • Combining electrode potentials
  • Debye-Huckel-Onsager equation and Kohlrausch's law
All Exams › NEET Previous Year Questions › Chemistry › Electrochemistry › Combining electrode potentials

Combining electrode potentials

1 Questions
1 Papers Covered
3.57% Weightage
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2026 Re-NEET 1 question

  1. The standard electrode potential ($E^\circ$) for the half-cell reaction $Fe^{3+}+e^-\rightarrow Fe^{2+}$ at 298 K is (Given: $E^\circ(Fe^{3+}/Fe)=-0.04$ V and $E^\circ(Fe^{2+}/Fe)=-0.44$ V at 298 K)
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