Which of the following reactions end infinite time ? from C

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681.

Which of the following reactions end infinite time ?

  • Zero order

  • 1st order

  • 2nd order

  • 3rd order


A.

Zero order

In zero order reaction , the concentration of reactant (s) does not vary with time as the rate of a reaction becomes independent of the concentration of a reactant when that reactant is taken in large excess .


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682.

Decay constant of a radioactive substance is 69.3 sec-1, find t116 of the same substance.

  • 4 × 10-2 sec

  • 2 × 10-2 sec

  • 1 × 10-2 sec

  • None of these


683.

A + 2B  C + D , if

d[A]dt = 5 x 10-4 mol L-1 s-1 , then - d[B]dt is

  • 2.5 x 10-4 mol L-1 s-1

  • 50 x 10-4 mol L-1 s-1

  • 2.5 x 10-3 mol L -1 s-1

  • 1.0 x 10-3 mol L -1 s-1


684.

Half-life of radioactive substance is 4 days . Amount of the substance decayed in two days is :

  • 12

  • 1 - 12

  • 20 %

  • 18


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685.

Half-life pf a radioactive element is :

  • 0.693

  • 10.693

  • 0.693k

  • k0.693


686.

Assertion : The kinetics of the reaction

mA + nB + pC → m'X + n'Y + p'Z

obeys the reaction as- dxdt = k[A]m[B]n

Reason : The rate of reaction does not depend upon the concentration of C.

  • If both assertion and reason are true and reason is the correct explanation of assertion.

  • If both assertion and reason are true but reason is not the correct explanation of assertion.

  • If assertion is true but reason is false.

  • If both assertion and reason are false.


687.

For the reaction, 2N2O5  4NO2+ Orate of reaction is

  • 12ddt[N2O5]

  • 2ddt[N2O5]

  • 14ddt[NO2]

  • 4ddt[NO2]


688.

For reaction aA → xP, when [A] = 2.2 mM, the rate was found to be 2.4 mM s-1. On reducing concentration of A to half, the rate changes to 0.6 mM s-1. The order of reaction with respect to A is

  • 1.5

  • 2.0

  • 2.5

  • 3.0


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689.

Assertion : According to transition state theory, for the formation of an activated complex, one of the vibrational degrees of freedom is converted into a translational degree of freedom.

Reason: Energy of the activated complex is higher than the energy of reactant molecules.

  • If both assertion and reason are true and reason is the correct explanation of the assertion.

  • If both assertion and reason are true but reason is not the correct explanation of the assertion.

  • If assertion is true, but reason is false.

  • Both assertion and reason are false statements.


690.

Which equation is correct for first order reactions ?

  • t1/2  C-1

  • t1/2  C

  • t1/2  Co

  • t1/2  C1/2


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