Essential Numerical Problem Sets for JEE Main 2026 Chemical Kinetics and Electrochemistry
Improve your score in JEE Main Physics with targeted numerical questions. Download chapter wise PDFs and practice essential numerical problem sets for JEE Main 2026 Chemical Kinetics and Electrochemistry!
Chemical Kinetics and Electrochemistry are essential topics in Physical Chemistry for JEE Main 2026. Having a good command over numerical problems in these areas not only enhances the ability to solve problems, but provides a lot more scope of attaining higher scores. With a couple of months for
JEE Main 2026
, you should target practicing numerical problem sets and questions based on Chemical Kinetics and Electrochemitry chapters. The article is dedicated to the critical targeted numerical questions that the aspirants should train on and the guidelines to be followed in addressing them effectively.
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Chemical Kinetics Numerical Problem Areas for JEE Main 2026
Chemical Kinetics is the study of the speed of chemical reactions and the influence on the reactions. The numerical problems in this section tend to challenge ideas of reaction rates, order and molecularity, calculation of rate constant, and calculating the built-in rate law:
Calculating Rate Constants: Problems on zero, first, and second-order reactions where students calculate rate constants using concentration vs time data.
Half-life Calculations: Determining half-life for reactions of various orders; these are common and straightforward numerical problems.
Determining Reaction Order: Given concentrations and rates, calculate the order of reaction using the rate equation data.
Integrated Rate Law Problems: Using integrated rate equations to determine concentrations at a given time.
Arrhenius Equation: Calculating activation energy or frequency factor from rate constants at different temperatures.
Reaction Mechanism-Based Problems: Simple calculations involving rate-determining steps in multi-step reactions.
Chemical Kinetics Numerical Practice Questions for JEE Main 2026
Check the Chemical Kinetics numericals for JEE Main 2026 below
For a first-order reaction, the time taken for the concentration to reduce to half is 20 minutes. Calculate the rate constant k.
A reaction is second order with respect to reactant A. If the concentration of A is doubled, by what factor does the reaction rate increase?
Given a reaction where the rate doubles when the temperature is raised from 300K to 310K, calculate the activation energy Ea.
JEE Main 2026 Chemical Kinetics Numericals Sets PDF Download
The numerical PDF for the Chemical kinetics for JEE Main 2026 has been provided in the table below:
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Essential Electrochemistry Numerical Topics for JEE Main 2026
Electrochemistry is the branch of chemistry that studies redox reactions and their use in electrochemical cells. In this case, numerical analyses usually involve computations regarding the cell potential, equilibrium constant, quantity of electricity and electrode kinetics.
Calculating EMF of Cells: Using standard electrode potentials, the Nernst equation, and concentration cells to find cell emf.
Faraday’s Laws of Electrolysis: Calculating the amount of substance deposited or liberated at an electrode given current and time.
Electrode Potential Problems: Determining electrode potentials in non-standard conditions using the Nernst equation.
Relationship Between Emf and Gibbs Free Energy: Calculating ΔG from emf and vice versa.
Equilibrium Constant from EMF: Using cell emf to find the equilibrium constant for redox reactions.
pH and pOH calculations: Problems involving electrolytes, buffer solutions, and hydrolysis.
Also Check - Master Current Electricity and Magnetism for JEE Main 2026: Complete Chapterwise Solutions
Electrochemistry Numerical Questions for JEE Main 2026
Check the electrochemistry numerical for JEE Main 2026 that has been given below
Using Faraday's first law, find the mass of silver deposited when a current of 2 A flows for 30 minutes.
(Atomic mass of Ag = 108 g/mol, z = 1).Calculate the total charge (in coulombs) required to oxidise 1 mole of Fe²⁺ ions to Fe³⁺ ions.
Determine the equilibrium constant (K) for a redox reaction at 298 K if its standard cell potential E∘E^\circE∘ is 1.1 V.
JEE Main 2026 Electrochemistry Numerical Sets PDF Download
The electrochemistry numerical PDF has been provided below in the table for the aspirants who are going to appear for the JEE Main 2026:
Through regular targeted practice, clarity of formulae and concepts and mastering problem-solving methods, candidates can score well in these subjects. Alongside, don't ignore JEE Main previous year question papers with solutions PDF . Keep solving JEE Main sample papers and attempt mock test papers on a weekly basis to track your progress.
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