Number of electrons: NEt3 0.4-4 + Type of reaction: electrocyclic ring opening or closing cycloaddition... indicate number of electrons in each system: [ + ] sigmatropic rearrangement... indicate number of electrons in each system: [] Allowed stereochemistry: suprafacial suprafacial + suprafacial antarafacial suprafacial + antarafacial conrotatory antarafacial + antarafacial disrotatory
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- 4. For the following reactions, develop a transition-state structure using molecular models which would account for the observed stereoselectivity. Also, describe the type of pericyclic reactions using the proper terminology. (each Br heat A & Br b) F 0°C F heat heat d) product? =& & MeO₂C OCH3 H HO 1. CO₂Me مر CO₂Me LOCH3 heat heat MeO₂C HOdraw a table showing selection rule for m+n cycloaddition and cyclo reversion reactionsProvide the structure of the product(s) with stereochemisty if appropriate. If multiple products indicate major product or if products are formed in equal amounts. If there is no reaction expected explain why. BNNH3*CF3CO2 (1.0 equiv), toluene, reflux hint: bicyclic structure is formed
- For the cycloaddition reaction shown below A B NC CN a) Give the curved arrow-pushing and draw the allowed product for the reaction, be sure to include stereochemistry and indicate any racemic mixtures A heat b) on TOP of reactant A draw a pictorial representation of the HOMO (draw it on the structure like the one shown below rather than the one in the equation so that the curved arrow-pushing isn't obscured) B c) on TOP of reactant B draw a pictorial representation of the LUMO (draw it on the structure below rather than the one in the equation so that the curved arrow-pushing isn't obscured) NC CN d) Is the allowed reaction suprafacial or antarafacial for reactant A? e) Is the allowed reaction suprafacial or antarafacial for reactant B?Consider this scheme. Why does a ring form with a single ethylene glycol on A rather than two molecules of ethylene glycol to form acyclic acetals? Intramolecular reactions are A unfavorable when compared to intermolecular reactions Acyclic molecules are unfavorable compared to rings В in all cases The change in entropy is favorable for ring formation and strain is low in a five- membered ring Sterics prevents acyclic molecules from forming in this D case H HCI + HOCH2CH2OH H + H2Oj. 1,2-epoxybutane + acid in methanol Reaction Type(s) Mechanism(s) Product(s). Stereochemistry (if applicable) k. (R)-3-methylbutan-2-ol + TsCl + pyridine in DMSO Reaction Type(s) Mechanism(s) Product(s)_ Stereochemistry (if applicable)
- Below is a mechanism that represents the following single reaction sequence: a certain alcohol undergoes acid- catalyzed dehydration (conversion that involves the loss of water from the reacting molecule or ion) to form an alkene product. Write the IUPAC name of the product. Include E/Z stereochemistry. Hint: Name of the substituent of the product is similar to that of reactant. * :ÖH :O: :0: :O: 1-phenylpropanol oxonium ion H. нон Carbocation stabilised by resonance loss of water benzylic carbocation organic product + H-B Alkene formed ;B proton abstractionWhat reagents are appropriate to carry out the conversion shown? - OH LOM 1. mCPBA; 2. CH3MgBr; 3. H₂O O 1. CH3MgBr; 2. H₂O O 1. mCPBA; 2. H₂O O mCPBA + enantiomerStereochemistry: Assign each of the following alkenes as E or Z or unassignable. Also assign each of the following alkenes as cis or trans or not applicable.
- from Ce [Review Topics] [References] Use the References to access important values if needed for this question. Draw the structure of the organic product that is expected when the following compound is treated with concentrated H,SO4. он H2S04 CH3CCH2CH2CH3 heat ČH3 • You do not have to consider stereochemistry. • In cases where there is more than one answer, just draw one. C P. opy aste C . CH4 ChemDoodle Retry Entire Group 5 more group attempts remaining Submit AnswerGive the major organic product(s) of the following. Include stereochemistry when applicable. 1) Nal Br a) 2) NaCN, acetone 1) NaOC(CH3)3, heat d Br 2) BH₂ THF; 3) H,O,, NaOH(aq) b) c) d) c) 2) KOC(CH3)3, heat Copyright University of California Merced 2022 Br 1) NaOH, heat 2) MCPBA 1) KOC(CH3)3, heat 2) H3O+CH, By 11. H H CH;O Reaction Type(s) + Mechanism(s) Product(s). Stereochemistry (if applicable)