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write an equation for the reaction of 2-furaldehyde with 1,3-dihydroxybenzene, and propse a mechanism for this...
Write an equation for the reaction of 2-furaldehyde with 1,3-dihydroxybenzene to form its product and propose a mechanism for it's formation.
2) (2 pts) write a balanced equation of the esterification reaction and its mechanism; 3) (2 pts) calculate the theoretical and percent yields of the final product; 4) (2 pts) discuss the purpose of washing the organic layer with sodium bicarbonate solution, and write the reaction equation; 5) (2 pts) discuss the purpose of washing the organic layer with saturated sodium chloride solution and how to reverse the reaction (saponification) hypothetically.
Write the chemical equation (not mechanism) for the multi-step reaction between 2-Propanol and the active ingredient in the Iodoform reaction when NaOH and I2 are combined. (Hint: don’t stop until Iodoform product is formed.)
Draw the complete mechanism for the reaction if HBr with 2-methylcyclohepta-1,3-diene. Label the Lewis acid, Lewis base, nucleophile and electrophile in each step. (PLEASE ANSWER QUICKLY I WILL RATE).
3. Write an equation for the chemical reaction of limonene with chlorine. Show a mechanism and name the major product(s).
4. Write the 1,2 and 1,4 products of addition of HBr to 1,3-hexadiene. Write the complete stepwise mechanism. Which product is the major if the reaction is taking place at 40°C? (4 points)
Complete the mechanism (with possible transition states) for the reaction of s-cis-1,3-butadiene treated with fluoroethyne.
Write the mechanism for the reaction of propanal reacting with
ethylene glycol, p-toluenesulfonic acid, benzene.
h) 0 p-toluenesulfonic acid, Eenzene Fropanal Ethyłe re glycol 0 2-Ethyil-[1,3]dioxolane
Synthesize 1,4-diphenyl-1,3-butadiene from cinnamaldehyde.
Show the balanced chemical equation and the mechanism of this
product
NaOH/H20
3a. Write the overall reaction equation for the following mechanism. Identify the intermediates. fast slow fast 02 20 O+N2 NO N b. The rate law for the following mechanism is rate kIN2] [O]. Show how this can be determined from the mechanism. c. Draw a possible energy diagram for this reaction and show the location of the reactants, products, and intermediates. Reaction progress