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- a) Identify the reaction and trace the complete mechanism hvwhat is the rate at which Br- (aq) disppears in reaction below if the rate of disappearence of BrO3- (aq) is 0.022 M/sWrite a complete reaction mechanism using CORRECT nucleophile for the following substitution reaction; CI OCH3 i) Nucleophilic substitution 1 (SN1). ii) Nucleophilic substitution 2 (SN2).
- Drag the Choices A-C into the correct order of the reaction mechanism. CH3 CH3 A. (H3C)3C- :0: fast + CH3 (H3C)3C OCCH3 H F0 H slow В. (H3C)3C- (CH3)3C + :Br: Br: CH3 CH3 С. (CН3)3С + :0: fast (CH3)3C- H A В First Step Second Step Final StepRate of the reactions below is has what the following Rate equation: Rate = k[nucleophile] [electrophile] H₂C H₂C Br H₂C True False CH₂ H₂C-O-CH₂ + BrIndicate the scheme and detailed reaction mechanism of the reactions: ZnCl, а) CН CH,CH,CH,ОН + HCІ ОН + НСI CH,CH̟CH,CH̟CI c) (СH), С ОН + HCI (CH,),C-CI
- 6. For each reaction indicate the predominant mechanism: S,1, S,2, E1, or E2. (a) (b) (c) OH H* H* H* ? ? ? A. A OH OH (d) Br (e) .CI NaBr CH,OH DMSO dilute (CH),COK (9) OTs ? OTs (CH),COH EthanolPlease give mechanism of the reaction and fill data in given 2 boxes-Mechanism Explorer: Sketch and Submission (Intermediate) Reactant посъ :0: Br Tip: Only add curved arrows in this sketcher Apply Mechanism Hint Solution 1 remaining step(s) can be solved Reaction Explorer Help (Intermediate) Product
- Which of the following is the rate determining step for this reaction: HBr Tui H-Br Br: A OA B C D O O O O Br: B C DThe following figure shows the energy profile of a nucleophilic substitution reaction. Potential energy :ÖH H HII.C H C-1 H HO--C---I HH Reaction coordinate H -CH HO–CHITH H + 1 According to this, it is correct to affirm: O The activation energy (4G°) shows that it is thermodynamically favorable. O Represents a reaction that occurs in one step where a pentavalent chemical species is formed. O The intermediate has lower energy than any transition state. O The formation of the intermediate releases energy and is therefore thermodynamically favourable.I dont know this formula. My mini term class went by quick. I have no clue how tp solve rate of the reaction?