Chemical Kinetics NEET PYQs – Chapter-wise MCQs with Answers

Chemical Kinetics NEET Previous Year Questions (PYQs)

Practice important NEET previous year questions from Chemical Kinetics. These chapter-wise MCQs are selected from past NEET exams with answers and clear explanations.

👉 Read theory first:

Chemical Kinetics Class 12 Notes


Q1. The correct difference between first and second order reactions is that:

(NEET 2018)

  • (A) Rate of first order does not depend on concentration
  • (B) Half-life of first order is independent of initial concentration
  • (C) Second order reactions cannot be catalysed
  • (D) Rate of second order does not depend on concentration
Show Answer

(B)

Show Explanation

Half-life of a first order reaction is independent of initial concentration, while for second order it depends on concentration.


Q2. When initial concentration of a reactant is doubled, the half-life of a zero order reaction:

(NEET 2018)

  • (A) is halved
  • (B) is doubled
  • (C) remains unchanged
  • (D) is tripled
Show Answer

(B)

Show Explanation

For zero order reactions, half-life is directly proportional to initial concentration.


Q3. The overall rate of a reaction depends on:

(NEET 2017)

  • (A) Fastest step
  • (B) Intermediate concentration
  • (C) Slowest step
  • (D) Catalyst concentration
Show Answer

(C)

Show Explanation

The slowest step in a reaction mechanism is the rate-determining step.


Q4. A first order reaction has rate constant 10−2 s−1. Time required for 20 g of reactant to reduce to 5 g is:

(NEET 2017)

  • (A) 138.6 s
  • (B) 346.5 s
  • (C) 693.0 s
  • (D) 238.6 s
Show Answer

(A)

Show Explanation

Reduction from 20 g to 5 g involves two half-lives.
t = 2 × (0.693 / k) = 138.6 s.


Q5. The rate of a first order reaction decreases from 0.04 to 0.03 mol L−1s−1 in 10 s. The half-life is:

(NEET 2016)

  • (A) 24.1 s
  • (B) 34.1 s
  • (C) 44.1 s
  • (D) 54.1 s
Show Answer

(C)

Show Explanation

Using first order integrated rate law, the half-life comes out to be approximately 44.1 s.


Q6. Addition of a catalyst affects which of the following?

(NEET 2016)

  • (A) Enthalpy change
  • (B) Internal energy
  • (C) Activation energy
  • (D) Free energy change
Show Answer

(C)

Show Explanation

A catalyst provides an alternate pathway with lower activation energy.


Q7. If the unit of rate constant is mol L−1s−1, the order of reaction is:

(NEET 2015)

  • (A) First
  • (B) Second
  • (C) Zero
  • (D) Third
Show Answer

(C)

Show Explanation

Zero order reaction has units of rate constant as mol L−1s−1.


Q8. Activation energy can be calculated from the slope of:

(NEET 2015)

  • (A) k vs T
  • (B) ln k vs 1/T
  • (C) k vs 1/T
  • (D) ln k vs T
Show Answer

(B)

Show Explanation

From Arrhenius equation, slope of ln k vs 1/T = −Ea/R.


Q9. If half-life of a reaction is independent of initial concentration, the reaction is:

(NEET 2015)

  • (A) First order
  • (B) Second order
  • (C) Zero order
  • (D) Fractional order
Show Answer

(A)

Show Explanation

Half-life independent of concentration is a property of first order reactions.


Q10. Time required for 99% completion of a first order reaction is:

(NEET 2019)

  • (A) 0.693/k
  • (B) 2.303/k
  • (C) 4.606/k
  • (D) 6.909/k
Show Answer

(D)

Show Explanation

For 99% completion of first order reaction, time = 6.909 / k.


Q11. Order of a reaction can be:

(NEET 2011)

  • (A) Zero only
  • (B) Fractional only
  • (C) Always whole number
  • (D) Zero, fractional or negative
Show Answer

(D)

Show Explanation

Order of reaction may be zero, fractional or even negative.


Q12. Unit of rate constant for zero order reaction is:

(NEET 2011)

  • (A) s−1
  • (B) mol L−1s−1
  • (C) L mol−1s−1
  • (D) s
Show Answer

(B)

Show Explanation

Zero order reaction rate constant has units of concentration per time.


Q13. Rate constant of a reaction depends on:

(NEET 2010)

  • (A) Concentration
  • (B) Temperature
  • (C) Pressure
  • (D) Catalyst amount
Show Answer

(B)

Show Explanation

Rate constant depends only on temperature.


Q14. For zero order reaction, concentration vs time graph is:

(NEET)

  • (A) Exponential
  • (B) Straight line
  • (C) Hyperbolic
  • (D) Parabolic
Show Answer

(B)

Show Explanation

In zero order reactions, concentration decreases linearly with time.


Q15. Enzymes increase reaction rate by:

(NEET 2000)

  • (A) Increasing activation energy
  • (B) Lowering activation energy
  • (C) Changing equilibrium
  • (D) Increasing entropy
Show Answer

(B)

Show Explanation

Enzymes act as biological catalysts and lower activation energy.


Q16. Rate of reaction is maximum when:

(NEET)

  • (A) Reactant concentration is maximum
  • (B) Reactant concentration is minimum
  • (C) Equilibrium is reached
  • (D) Reaction is completed
Show Answer

(A)

Show Explanation

Reaction rate is maximum at the beginning when reactant concentration is highest.


Q17. Temperature coefficient of a reaction is defined as:

(NEET)

  • (A) Increase in temperature by 10 K
  • (B) Ratio of rate constants at temperatures differing by 10 K
  • (C) Activation energy
  • (D) Collision frequency
Show Answer

(B)

Show Explanation

Temperature coefficient is the ratio of rate constants at two temperatures differing by 10 K.


Q18. In Arrhenius equation, pre-exponential factor represents:

(NEET)

  • (A) Activation energy
  • (B) Collision frequency
  • (C) Threshold energy
  • (D) Entropy change
Show Answer

(B)

Show Explanation

Pre-exponential factor represents frequency of effective collisions.


Q19. For first order reaction, the plot of ln[A] vs time is:

(NEET)

  • (A) Straight line with positive slope
  • (B) Straight line with negative slope
  • (C) Curve
  • (D) Parallel to x-axis
Show Answer

(B)

Show Explanation

For first order reactions, ln[A] vs time gives a straight line with negative slope.


Q20. For second order reaction, half-life is proportional to:

(NEET)

  • (A) Initial concentration
  • (B) Square of concentration
  • (C) Inverse of concentration
  • (D) Independent of concentration
Show Answer

(C)

Show Explanation

For second order reactions, half-life is inversely proportional to initial concentration.


👉 More Chemical Kinetics NEET PYQs will be added gradually.

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