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please answer only questions 2 and 4. thank you. Questions 1. Suggest a mechanism for the...
4.23,4.24 & 4.26 thank you
156 CHAPTER 4 Introduction to Organic Compounds Practice Problems 4.21 4.23 Draw the condensed structural formula for each of the following alkyl groups: a. propyl b. methyl 4.24 Give the correct name for each of the following substituents: a. CH CH - b. CH3CH,CHCH- c. I- 4.25 Draw the skeletal structure for each of the following compounds: a. 2,3-dimethylpentane b. 2-ethyl-1,4-dimethylcyclohexane c. 1,2-dichlorohexane 4.26 Draw the skeletal structure for each of the following compounds: a....
what would be my percent yield if i retrieved 3.1020 grams of
soap? thank you, please show all work.
SAPONIFICATION (HYDROLYSIS OF A FAD Fats and edible oils consitute a special class of esters called riglycerides in which alcohol part of the molecule, the trihydroxy compound glycerol, forms with three molecules of various long-chain carboxylic acids (called fatty acids). Ty reactions of simple esters can also be carried out on fats and oils,i acid-or-base-catalyzed hydrolysis. three ester linkages carboxylic acids...
Please help answer these questions. Thank you. Will mark you thumbs up if correct. 1) Briefly compare and contrast the relative resistance to pH change of the seven solutions you studied in this experiment. 1b) Which solutions were the best buffers? EXPLAIN. 1c) Which solutions were the poorest buffers? EXPLAIN. Solutions: Water (H2O), acetic acid (CH3CO2H), sodium acetate (NaCH3CO2), sodium dihydrogen phosphate (NaH2PO4), disodium phosphate (Na2HPO4), hydrochloric acid (HCl), sodium hydroxide (NaOH)
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19. What is the best choice of reagent(s) to perform the following transformation? OCHA a. CH,OH, H,SO b. CH:I, H2SO4 c. NaOCH d. CH,Li 20. What is the major organic product obtained from the following reaction of ethyl benzoate with the OH нс ск 1. 2 eq. CH3MOCI | Phocн,сн, 2. H,0* PhDcн, CH Ph CH P OHP OCH CHE a. b. 1 2 3 4 C....
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Question 1 a) Give the mechanism for the reaction below: 3-ethyl-3-methyl-1-pentene + HBF3-bromo-3-ethyl-2-methylpentane b) The questions are based on the reaction scheme as shown below: H202 BH3 NaOH, H20 i) Determine the structure of intermediate A and product B. ii) The formation of product B follow one rule in electrophilic addition. What is the name of the rule and explain that rule. i) Give one reagent that can be used to reduce the alkyne above...
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(8pts) Predict the product(s) of the following reactions? a. 2. 1.NaNH2 2. Br 3.H2/ Lindlar's catalyst b. 1. NaH 2. CH3l 3.NH2NH2, KOH, C. CH,OH d. H,0 Give the product and the detailed arrow-pushing mechanism for the following reaction. NaOH, H20
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on from risic vent for the ons formed POSTLAB QUESTIONS 1. Sulfuric acid serves three functions in this action: 1) in the format dcia; 2) as the Lewis acid catalyst for electrophilic aromatic substituto reaction by dissolving the methul benzoate. Based on the procond explain why nitration occurs primarily at the meta position and no 2. What two techniques were used in this experiment to prevent dinica 3. What would be the structure of the...
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Practice Questions 1. What reagents could CH CH CH.C-CCH 3. Which reaction would proceed the fastest? (A) CH,CH,OCHOH-- be used to accomplish the synthesis of this compound? CH3CH2OH + OCH3 CH CH OH SCH CH,CH2OH + N(CH3)h (B) CH3CH2Br + Na"で.CCH3 When 2-bromo-2-methylbutane is treated with a base, a mixture of 2-methyl-2-butene and 2-methyl-1-butene is produced. 2. CH,CH,OH+ OSC H4CH CHy 4. Which is a possible D Br CH3 H product of the...
12. Run and compare the top final distillate. 1. In this experiment, what is the purpose of the following: a. not allowing the temperature to go above 35°C when sodium dichromate is added to the alcohol b. oxalic acid c. sodium chloride d. anhydrous magnesium sulfate. 2. Provide balanced equations for the oxidation of the following: a. 2-propanol to acetone, by means of Cr,0,-/H b. oxalic acid to carbon dioxide, by means of Cr,0,-2/H c. benzaldehyde in basic MnO,-to yield...
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Nitric oxide (NO) is a gas that decomposes in air, therefore it is usually made when it is needed immediately. The most common use of nitric oxide is as fertilizer. In order to produce nitric oxide, 25 kmol/h of ammonia (NH3) and a stream of oxygen (02), both at 25°C and 1 atm, are fed into a continuous reactor packed with catalyst in which ammonia is completely consumed. The product gas emerges at...