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- app.101edu.co Draw the product of the reaction shown below. Ignore inorganic byproducts. H2, Ni heat, pressure Drawing Q Benz CClassify each of the following organic reactions. reaction Hör H₂O 1) Hg(OAc)₂, H₂O aveau Br OH OH type of reaction (check all that apply) Odihydroxylation addition hydrogenation Dhalogenation halohydrin formation. subtraction halogenation hydrogenation addition halohydrin formation inhalation Odihydroxylation addition hydrogenation oxyhydration halogenationDraw the products formed when ethylene oxide is treated with each reagent. a. HBr b. H2O(H2SO4) c. [1] CH3CH2O; [2] H2O d. [1] HC ≡ C−; [2] H2O e. [1] −OH; [2] H2O f. [1] CH3S−; [2] H2O
- Please pronde ne approprate reagents or product. 1.Os0y,TBHP, H20/THF -> 2. TSOH, acetone, PhH,neat 3. AICI3, CH3COCI, CH2C12 2) 1. B200B2,NBS, CC14> 2. Mg, THF;then Pa°Ln, PhBr 3. HNO3 , HzSo4 4. 2n, HCI me Br Me0 (3 meo MeN HN Meo me BrDraw the structure of the organic product or products formed in the reaction. H₂C HU IN. H HU of H₂ MgBr 1. H₂C A -CH₂ 2. H3O+ Select Draw / || III Rings C H Morei. LIAIH4 i. deprotection .CO2ME J CH2=CHCOCH3 protection ii. H30* ii. dehydration K H The synthesis of K from H involves a 3-steps reaction as shown above. ii. Suggest the reagents involve in the protection, deprotection and dehydration steps.
- The Zeisel method is an old analytical procedure for determining the number of methoxyl groups in a compound. A weighed amount of the compound is heated with concentrated HI, ether cleavage occurs, and the iodomethane product is distilled off and passed into an alcohol solution of AgNO3, where it reacts to form a precipitate of silver iodide. The Agl is then collected and weighed, and the percentage of methoxyl groups in the sample is thereby determined. For example, 1.06 g of vanillin, the material responsible for the characteristic odor of vanilla, yields 1.60 g of Agl. If vanillin has a molecular weight of 152, how many methoxyl groups does it contain?Draw the structure of the major product of following reactions: CH212, Zn(Cu) 1. Et,0 MgBr + H3O* 2. Zn 3. HCI CH212, Zn(Cu) 4. Et,0 5. H30* + CH;CH2MGB. CI CI 6. Zn ELOH MgBr H3O* + CO2 7. (CeH)2CuLi + ICH2(CH2)eCH3 diethyl ether 8. CuLi diethyl ether Br 9. Br 10 diethyl ether H3CProblem 22 of 30 Submit Draw the major product of this reaction. Ignore inorganic byproducts. H 1. Ag2O, NH4OH 2. Neutralizing work- up Select to Draw થ
- 6. Complete reaction scheme below indicating reagents, catalysts and conditions, and side product trigil bezinslog si6101fon 290b 1l (b Senines levirba 6 gaubong nasamots gniwollot ads to doinW 01 sniowl (6 CH3 40 CH3 Scansgowi (d Ege nodie) ( nsgyxo (b NO₂ 19m02 2i gniwollet sits to mainW II HOWhich is the MAJOR product of the following reaction? Et 1) BH3:THF 2) H2O2, NaOH Which of the following best describes a key step in the mechanism for the reaction below? HO ... CH3 -CH3 dihydroxylation + en H3C- H3C- HO. electrophilic addition reaction to form a carbocation intermediate B nucleophilic attack by an alkene to form a cyclic (epoxide) intermediate elimination reaction by abstraction of a beta-hydrogen D free-radical substitution at the carbonyl carbon Which alkene will produce the HIGHEST yield of the alkyl halide below? Br. alkene HBr |select reagents: cyclopentanone Reagents a. C6H5CHO b. NaOH, ethanol c. Pyrrolidine, cat. Hj. d. H₂C=CHCN e. H3O+ f. LDA g. A) bg EtOC(=O)CO₂Et h. i. B) ka k. I. m. O: BrCH₂CH=CH₂ NatOEt, ethanol Br₂, H+ K+ t-BUO™ CH2(CO2Et)z heat C) jh CO₂Et D) Im