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 Multiple Choice QuestionsMultiple Choice Questions

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231. For a chemical reaction, R → P, it is found that the rate of a reaction doubles, when the concentration of R is increased two times. The order of the reaction is
  • half
  • half
  • one
  • two
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232. For the reaction mechanism:
H2 + 2NO → N2 + H2O2 (slow)
H2O2 + H2 2H2O (fast)
the rate law is rate
  • k[H2] [NO]2
  • k[H2O2]2
  • k[N2][H2O2]2
  • k[H2O2] [H2]
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233. The rate constant of a reaction depends on
  • Temperature
  • Mass
  • Weight
  • Time
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234. The rate of a chemical reaction
  • Increases as the reaction proceeds
  • Decreases as the reaction proceeds
  • May increase or decrease during the reaction
  • Remains constant as the reaction proceeds
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235. A zero order reaction is one
  • Whose rate is affected by concentration.
  • In which concentration of the reactants does not change with time.
  • In which reactants do not react.
  • In which one of the reactants is in large excess.
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236. In which of the following cases, does the reaction go farthest to completion
  • k = 102
  • k = 10–2
  • k = 10
  • k = 1
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237. According to the collision theory of chemical reactions
  • A chemical reaction occurs with every molecular collision
  • Rate is directly proportional to the number of collisions per second
  • Reactions in the gas phase are always of zero order
  • Reaction rates are of the order of molecuar speeds
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238. What will be the order of reaction if doubling of the concentration of a reactant increases the rate by a factor of 4 and trebling the concentration of the reactant by factor of 9?
  • first order
  • zero order
  • second order
  • third order
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239.

For the reaction aA+bBmM+nN-dAdt is equal to

  • -dBdt
  • am-dMdt
  • -ba-dBdt
  • -1bdBdt
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 Multiple Choice QuestionsShort Answer Type

240. Nitrogen dioxide (NO2) reacts with fluorine (F2) to form nitryl fluoride (NOzF) according to the reaction

2NO2(g)+F2(g)2NO2F(g)

Write the instantaneous rate of reaction in terms of
(i) rate of formation of NO2 ,F
(ii) rate of disappearance of NO2
(iii) rate of disappearance of F2.
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