1-Bromobutane reacts with water to form 1-butanol according to the following equation. C4H9B1(aq) + 2 H20(1) → C4H,OH(aq) + H;0*(aq) + Br (aq) The following is a proposed mechanism for the reaction. C4H,Br(aq) → C4H,*(aq) + Br"(aq) C4H,*(aq) + H,0(I) → CH,OH,*(aq) C4H9OH,*(aq) + H,0(1) → C4H,OH(aq) + H30*(aq) fast slow fast Determine the overall rate law for this proposed mechanism. (Rate expressions take the general form: rate = k. [A]ª. [B].)

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Chapter1: Chemical Foundations
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1-Bromobutane reacts with water to form 1-butanol according to the following equation.
C4H,Br(aq) + 2 H20(1) → C¿H,OH(aq) + H30*(aq) + Br¯(aq)
The following is a proposed mechanism for the reaction.
C4H9B1(aq) → C4H,*(aq) + Br¯(aq)
C4H,*(aq) + H,0(1) → C4H3OH,*(aq)
C,H,OH,*(aq) + H,0() – CH,OH(aq) + H30*(aq)
slow
fast
fast
Determine the overall rate law for this proposed mechanism. (Rate expressions take the general form: rate = k. [A]ª . [B]°.)
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Greek -
Rate=k[C4H9B1][H2o²]
Rate=k[C_4H_9Br][H_2O^2]
Remember that answers are case-sensitive. Your answer contains an incorrect or incomplete chemical formula.
Transcribed Image Text:1-Bromobutane reacts with water to form 1-butanol according to the following equation. C4H,Br(aq) + 2 H20(1) → C¿H,OH(aq) + H30*(aq) + Br¯(aq) The following is a proposed mechanism for the reaction. C4H9B1(aq) → C4H,*(aq) + Br¯(aq) C4H,*(aq) + H,0(1) → C4H3OH,*(aq) C,H,OH,*(aq) + H,0() – CH,OH(aq) + H30*(aq) slow fast fast Determine the overall rate law for this proposed mechanism. (Rate expressions take the general form: rate = k. [A]ª . [B]°.) chemPad Help Greek - Rate=k[C4H9B1][H2o²] Rate=k[C_4H_9Br][H_2O^2] Remember that answers are case-sensitive. Your answer contains an incorrect or incomplete chemical formula.
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