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- The major product formed by addition of HBr to (CH3)2C=CH– CH=C(CH3)2 is the same at low and high temperature. Draw the structure of the major product, and explain why the kinetic and thermodynamic products are the same in this reaction.Draw the major products obtained from the reaction of one equivalent of HBr with the following compounds. For each reaction, indicate the kinetic product and the thermodynamic productWhich of the following reactions result in a positive ∆ Ssys? a. H2O(g) = H2O(l) b. H2(g) + I2(g) = 2 Hl(g) c. C2H2O2(g) = 2CO(g) + H2(g) d. H2O(g) + CO2 (g) = H2CO3(aq)
- 1.Label kinetic product 2.Label the thermodynamic product 3.Predict the four products from reaction of alkene with one equivalent HBr1) The Predict the product(s). 2)Label any kinetic/thermodynamic product(s). 3)Give reason towards the selection of kinetic product(s).2H2S(g) + SO2(g) <--> 3S(s) + 2H2O(g) Would this reaction be favored at a high or low temperature?
- A student adds NBS to a solution of 1-methylcyclohexene and irradiates the mixture with a sunlamp until all the NBS has reacted. After a careful distillation, the product mixture contains two major products of formula C7H11Br. Draw the products obtained from each free-radical intermediate.A carbocation intermediate is central to which of these reaction types? E1, E2, SN1, SN2 ? Choose 1Consider the reactions shown below. For each reaction state if it would favor S N 1 or S N 2pathway and give the major product of the reaction.
- (2)Draw the product(s) for each reaction. Provide stereochemistry where appropriate. Indicate if the reactionproceeds via S N 1 or S N 2Predict the product, draw the mechanism, and plot the reaction coordinate diagram for theE1 reaction.The following reaction has a ΔSsystem < 0 O2(g) → 2O(g) T or F can you explain why this is false?