Chemistry · JEE

Differential and integral forms of zero and first-order reactions, their characteristics and half-lives Concepts for JEE

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Quick answer

Master Differential and integral forms of zero and first-order reactions, their characteristics and half-lives by understanding definitions, standard results, and typical JEE question patterns — then practise with syllabus-aligned MCQs on Goodmarks.

Build clear conceptual foundations for Differential and integral forms of zero and first-order reactions, their characteristics and half-lives before speed practice. This guide covers what JEE expects and how to test yourself with MCQs.

Concept explainer

Differential and integral forms of zero and first-order reactions, their characteristics and half-lives is a core JEE Main Chemistry subtopic under Chemical Kinetics. Master the definitions, standard results, and typical MCQ patterns tested in JEE Main and Advanced.

Key points

  • Understand the definition and scope of Differential and integral forms of zero and first-order reactions, their characteristics and half-lives in the JEE syllabus
  • Memorise key formulas and standard results linked to Differential and integral forms of zero and first-order reactions, their characteristics and half-lives
  • Practise 20–40 syllabus-aligned MCQs with step-by-step solutions

JEE tips

  • Revise Differential and integral forms of zero and first-order reactions, their characteristics and half-lives with a one-page formula sheet before attempting mixed tests
  • After each practice set, log mistakes specific to Differential and integral forms of zero and first-order reactions, their characteristics and half-lives and reattempt after 48 hours

Common trap

Students often rush Differential and integral forms of zero and first-order reactions, their characteristics and half-lives questions without checking units, sign conventions, or boundary conditions — always verify assumptions before calculating.

Free sample questions

Attempt 8 free MCQs for Differential and integral forms of zero and first-order reactions, their characteristics and half-lives. Unlock 11+ more with Pro.

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Q1ChemistryUnit 8: Chemical Kinetics
90%90 \% of the first-order reaction is completed in 70 minutes. The velocity constant of the reaction is:
Q2ChemistryUnit 8: Chemical Kinetics
Which of the following statement is incorrect about the reaction?
Q3ChemistryUnit 8: Chemical Kinetics
For a general reaction XY,\boldsymbol{X} \rightarrow \boldsymbol{Y}, the plot of conc. of X\boldsymbol{X} vs time is given in the figure. What is the order of the reaction and what are the units of rate constant?
Q4ChemistryUnit 8: Chemical Kinetics
The units of rate of reaction and the rate constant are identical for a
Q5ChemistryUnit 8: Chemical Kinetics
Assertion For the reaction RCl+NaOH(aq)R C l+N a O H(a q) \rightarrow ROH ++ Na ClC l, the rate of reaction is reduced to half on reducing the concentration of RCl to half. Reason The rate of the reaction is represented by k[RCl], i.e., it is a first order reaction.
Q6ChemistryUnit 8: Chemical Kinetics
In a first order reaction with time the concentration of the reactant decreases:
Q7ChemistryUnit 8: Chemical Kinetics
The rate constant of a first order reaction is 0.0693 min1^{-1} Time (in minutes) required for reducing an initial concentration of 20 mol lit1l i t^{-1} to 2.5 mol lit1l i t^{-1} is :
Q8ChemistryUnit 8: Chemical Kinetics
For a reaction A(g)B(g)+C(g),\boldsymbol{A}_{(g)} \rightarrow \boldsymbol{B}_{(g)}+\boldsymbol{C}_{(g)}, the rate constant for the reaction is 3x3 x 103M10^{-3} M^{-} min 1.^{-1} . At what concentration of AA will at the rate of reaction be 2x2 x 103Mmin10^{-3} \mathrm{M} \mathrm{min}

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Frequently asked questions

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