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NEET-UG Biology

Integrated rate equations for zero and first order; half-life — practice questions

63 questions in the bank on this idea. Below are 10 of them, exactly as they appear in a test.

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  1. Question 1 · difficulty L2 · understanding

    Sucrose hydrolyses in acidic medium into glucose and fructose by first order rate law with t1/2=3t_{1 / 2}=3 hour. The percentage of sucrose remaining after 6 hours is ____\_\_\_\_ . (Nearest integer) (Given :log2=0.3010: \log 2=0.3010 and log3=0.4771\log 3=0.4771 )

  2. Question 2 · difficulty L2 · understanding

    If the half life of a first order reaction is 6.93 minutes then the time required for completion of 99%99 \% of the reaction will be ____\_\_\_\_ minutes. (Given :log2=0.3010: \log 2=0.3010 )

  3. Question 3 · difficulty L2 · understanding

     For a first order reaction A B \text { For a first order reaction } \mathrm{A} \rightarrow \mathrm{~B} t/min[A]/M00.6500x0.0650200.00065 \begin{array}{|l|l|} \hline \mathrm{t} / \min & {[\mathrm{A}] / \mathrm{M}} \\ \hline 0 & 0.6500 \\ \hline x & 0.0650 \\ \hline 20 & 0.00065 \\ \hline \end{array} x=x= ____\_\_\_\_ min. (Nearest integer)

  4. Question 4 · difficulty L2 · understanding

    Time required for completion of 99.9%99.9 \% of a First order reaction is ________ times of half life (t1/2)\left(t_{1 / 2}\right) of the reaction.

  5. Question 5 · difficulty L2 · understanding

    A\mathrm{A} B\rightarrow \mathrm{B} The above reaction is of zero order. Half life of this reaction is 50 min50 \mathrm{~min}. The time taken for the concentration of A\mathrm{A} to reduce to one-fourth of its initial value is ____________ min. (Nearest integer)

  6. Question 6 · difficulty L2 · understanding

    The rate constant for a first order reaction is 20 min120 \mathrm{~min}^{-1}. The time required for the initial concentration of the reactant to reduce to its 132\frac{1}{32} level is _______ ×102 min\times 10^{-2} \mathrm{~min}. (Nearest integer) (Given : ln10=2.303\ln 10=2.303 and log2=0.3010 ) \log 2=0.3010 \text { )}

  7. Question 7 · difficulty L2 · understanding

    If compound A reacts with B following first order kinetics with rate constant 2.011×103 s12.011 \times 10^{-3} \mathrm{~s}^{-1}. The time taken by A\mathrm{A} (in seconds) to reduce from 7 g7 \mathrm{~g} to 2 g2 \mathrm{~g} will be ___________. (Nearest Integer) [log5=0.698,log7=0.845,log2=0.301][\log 5=0.698, \log 7=0.845, \log 2=0.301]

  8. Question 8 · difficulty L2 · understanding

    For the first order reaction A \to B, the half life is 30 min. The time taken for 75% completion of the reaction is _________ min. (Nearest integer) Given : log 2 = 0.3010 log 3 = 0.4771 log 5 = 0.6989

  9. Question 9 · difficulty L2 · understanding

    For the given first order reaction AB\mathrm{A} \rightarrow \mathrm{B} the half life of the reaction is 0.3010 min0.3010 \mathrm{~min}. The ratio of the initial concentration of reactant to the concentration of reactant at time 2.0 min2.0 \mathrm{~min} will be equal to ___________. (Nearest integer)

  10. Question 10 · difficulty L2 · understanding

    \begin{aligned}\matrix{ {[A]} & \to & {[B]} \cr {{\mathop{\rm Reactant}\nolimits} } & {} & {{\mathop{\rm Product}\nolimits} } \cr } \end{aligned} If formation of compound [B][\mathrm{B}] follows the first order of kinetics and after 70 minutes the concentration of [A][\mathrm{A}] was found to be half of its initial concentration. Then the rate constant of the reaction is x×106 s1x \times 10^{-6} \mathrm{~s}^{-1}. The value of xx is ______________. (Nearest Integer)

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