Chemical Kinetics MCQ Questions & Answers in Physical Chemistry | Chemistry

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221. For the exothermic reaction $$A + B \to C + D,\Delta H$$     is the heat of reaction and $${E_a}$$ is the energy of activation. The energy of activation for the formation of $$A + B$$  will be

A $${E_a}$$
B $$\Delta H$$
C $${E_a} + \Delta H$$
D $$\Delta H - {E_a}$$
Answer :   $${E_a} + \Delta H$$

222. Rate constant of two reactions are given below. Identify their order of reaction.
$$\eqalign{ & \left( {\text{i}} \right)k = 5.3 \times {10^{ - 2}}\,L\,mo{l^{ - 1}}\,{s^{ - 1}} \cr & \left( {{\text{ii}}} \right)k = 3.8 \times {10^{ - 4}}\,{s^{ - 1}} \cr} $$

A (i) second order, (ii) first order
B (i) first order, (ii) second order
C (i) zero order, (ii) first order
D (i) second order, (ii) zero order
Answer :   (i) second order, (ii) first order

223. When a biochemical reaction is carried out in laboratory from outside of human body in the absence of enzyme, the rate of reaction obtained is $${10^{ - 6}}$$  times, then activation energy of the reaction in the presence of enzyme is

A $$\frac{6}{{RT}}$$
B $$P$$ is required
C different from $${E_a}$$  obtained in laboratory
D cannot say any things
Answer :   different from $${E_a}$$  obtained in laboratory

224. For a first order reaction $$(A) →$$  products the concentration of A changes from $$0.1 M$$  to $$0.025 M$$  in 40 minutes. The rate of reaction when the concentration of $$A$$ is $$0.01 M$$  is :

A $$1.73 \times {10^{ - 5}}M/\min $$
B $$3.47 \times {10^{ - 4}}M/\min $$
C $$3.47 \times {10^{ - 5}}M/\min $$
D $$1.73 \times {10^{ - 4}}M/\min $$
Answer :   $$3.47 \times {10^{ - 4}}M/\min $$

225. Mechanism of a hypothetical reaction $${X_2} + {Y_2} \to 2XY$$    is given below
$$\eqalign{ & \left( {\text{i}} \right){X_2} \rightleftharpoons X + X\left( {{\text{fast}}} \right) \cr & \left( {{\text{ii}}} \right)X + {Y_2} \to XY + Y\left( {{\text{slow}}} \right) \cr & \left( {{\text{iii}}} \right)X + Y \to XY\,\left( {{\text{fast}}} \right) \cr} $$
The overall order of the reaction will be

A 1
B 2
C 0
D 1.5
Answer :   1.5

226. A first order reaction has a specific reaction rate of $${10^{ - 2}}{s^{ - 1}}.$$   How much time will it take for $$20$$ $$g$$ of the reactant to reduce to $$5$$ $$g?$$

A 238.6$$\,s$$
B 138.6$$\,s$$
C 346.5$$\,s$$
D 693.0$$\,s$$
Answer :   138.6$$\,s$$

227. Which one of the following statements for the order of a reaction is incorrect?

A Order is not influenced by stoichiometric coefficient of the reactants
B Order of reaction is sum of power to the concentration terms of reactants to express the rate of reaction
C Order of reaction is always whole number
D Order can be determined only experimentally
Answer :   Order of reaction is always whole number

228. A first order reaction is $$50\% $$  complete in 30 minutes at $${27^ \circ }C$$  and in 10 minutes at $${47^ \circ }C.$$  The reaction rate constant at $${27^ \circ }C$$  and the energy of activation of the reaction are respectively

A \[k=0.0231\,{{\min }^{-1}},\]    $${E_a} = 43.848\,kJ\,mo{l^{ - 1}}$$
B \[k=0.017\,{{\min }^{-1}},\]    $${E_a} = 52.54\,kJ\,mo{l^{ - 1}}$$
C \[k=0.0693\,{{\min }^{-1}},\]    $${E_a} = 43.848\,kJ\,mo{l^{ - 1}}$$
D \[k=0.0231\,{{\min }^{-1}},\]    $${E_a} = 28.92\,kJ\,mo{l^{ - 1}}$$
Answer :   \[k=0.0231\,{{\min }^{-1}},\]    $${E_a} = 43.848\,kJ\,mo{l^{ - 1}}$$

229. The temperature dependence of rate constant $$\left( k \right)$$ of a chemical reaction is written in terms of Arrhenius equation, $$k = A{e^{ - \,\frac{{{E^*}}}{{RT}}}}.$$   Activation energy $$\left( {{E^*}} \right)$$  of the reaction can be calculated by plotting

A $${\text{log}}\,k\,\,{\text{vs}}\,\,\frac{1}{T}$$
B $${\text{log}}\,k\,\,{\text{vs}}\,\,\frac{1}{{{\text{log}}\,T}}$$
C $$k\,\,{\text{vs}}\,\,T$$
D $$k\,\,{\text{vs}}\,\,\frac{1}{{\log \,T}}$$
Answer :   $${\text{log}}\,k\,\,{\text{vs}}\,\,\frac{1}{T}$$

230. The reaction, $$A$$ → Product, follows first order kinetics. In 40 minutes the concentration of $$A$$ changes from $$0.1$$ to $$0.025 M.$$  The rate of reaction, when concentration of $$A$$ is $$0.01 M$$  is

A 1.73× 10 4 M min 1
B 3.47× 10 5 M min 1
C 3.47× 10 4 M min 1
D 1.73× 10 5 M min 1
Answer :   3.47× 10 4 M min 1