Home
Class 12
CHEMISTRY
The rate constant in numerically the sam...

The rate constant in numerically the same for the theee reaction of first, second, and third order. Which reaction should be the fastest and it this true for all ranges of concentrations?

A

`r_(1)=r_(2)=r_(3)`

B

`r_(1)gt r_(2) gtr_(3)`

C

`r_(1)lt r_(2)lt r_(3)`

D

All of these

Text Solution

Verified by Experts

The correct Answer is:
c

`r_(1)=K[A]^(1)`
`r_(2)=K[A]^(2)`
`r_(3)=K[A]^(3)`
If `[A] gt 1`,
`r_(3) gt r_(2) gt r_(1)`
Promotional Banner

Topper's Solved these Questions

  • CHEMICAL KINETICS

    P BAHADUR|Exercise Exercise 1|2 Videos
  • CHEMICAL KINETICS

    P BAHADUR|Exercise Exercise 3A|2 Videos
  • DILUTE SOLUTION AND COLLIGATIVE PROPERTIES

    P BAHADUR|Exercise Exercise 9 Advanced Numerical|12 Videos

Similar Questions

Explore conceptually related problems

The rate constant is numerically the same for three reactions of first, second and third order respectively. Which one of the following is true for the rate of these reactions if concentration of the reactant is same and greater than 1 M ?

If rate constant is numerically the same for three reaction of first, second and third order respectively, then which of the following is correct?

The rate constant is numerically the same for three reaction of first , second and third order respectively. Which one is true for the of three reaction, if concentration of reactant is greater than 1M ?

The rate constant is unmerically the same for three reactions of first, second and third order respectively, the unit of concentration being in moles per litre. If R_(1), R_(2) and R_(3) are the rates of three reactions of first, second and third order respectively aqnd K is the rate constant, which of the following relationships is valid for the three reactions.

Units for the rate constant of first order reaction is

The numerical values of rate constants are same for first,second and third order reactions.Which one is true at a definite moment for rate of these three reactions if concentration of reactants is same and less than 1M