External link to In the synthesis of iodosalicylamide from salicylamide, determine the theoretical yield

In the synthesis of iodosalicylamide from salicylamide, determine the theoretical yield

In the synthesis of iodosalicylamide from salicylamide, determine the theoretical yield.I know I’m supposed to figure out the moles of salicylamide (which I’m not sure if I calculated right at 0.004 mol), but I don’t know what to do after that to get the theoretical yield. I included the experimental procedure that lists the amounts of each material to use, as well of which compounds […]

External link to In the 1H NMR of the product of the reduction reaction (4-t-butylcyclohexanol) it is apparent that there is a mixture of 4-t-butylcyclohexanols. In the expanded region between 3.2 and 4.5 ppm, the peak at 4.05 ppm integrates to 1.0, while the peak at 3.52

In the 1H NMR of the product of the reduction reaction (4-t-butylcyclohexanol) it is apparent that there is a mixture of 4-t-butylcyclohexanols. In the expanded region between 3.2 and 4.5 ppm, the peak at 4.05 ppm integrates to 1.0, while the peak at 3.52

In the 1H NMR of the product of the reduction reaction (4-t-butylcyclohexanol) it is apparent that there is a mixture of 4-t-butylcyclohexanols. In the expanded region between 3.2 and 4.5 ppm, the peak at 4.05 ppm integrates to 1.0, while the peak at 3.52 ppm integrates to 2.52. Which protons give rise to these peaks? Calculate the percentage of each isomer in the sample by […]

External link to Solve for the theoretical yield of this prelab

Solve for the theoretical yield of this prelab

Solve for the theoretical yield of this prelab4 (1).png4 (2).pngThis experiment involves three redox reactions. In the first, iodide ion and hypochlorite react in the presence of three protons to form iodine, which is the source of I+mathrm{I}^{+}I+. This leaves some Imathrm{I}I ‘ behind, which combines with unused I2mathrm{I}_{2}I2_ to form I3_.I3_mathrm{I}_{3}^{-} . mathrm{I}_{3}^{-}I3__.I3__ is reduced to water-soluble I by thiosulfate ion, which stops the […]

External link to Use the inscribed polygon method and determine ___ for the compound below.

Use the inscribed polygon method and determine ___ for the compound below.

Use the inscribed polygon method and determine___ for the compound below.a. number of electrons contained in the bonding M.O.smathrm{M.O.s}M.O.sb. number of electrons contained in the antibonding M.O.Smathrm{M} . mathrm{O.S}M.O.Sc. number of electrons in the nonbonding M.O.smathrm{M} . mathrm{O} . mathrm{s}M.O.sd. number of bonding molecular orbitalse. number of antibonding molecular orbitalsf. number of nonbonding molecular orbitalsg. number of degenerate bonding molecular orbitals

External link to Circle all allylic carbocations. Then draw resonance hybrids/structures for the allylic carbocations (you do not need to include resonance hybrids/structures with 2 or more formal charges on a given structure).

Circle all allylic carbocations. Then draw resonance hybrids/structures for the allylic carbocations (you do not need to include resonance hybrids/structures with 2 or more formal charges on a given structure).

Circle all allylic carbocations. Then draw resonance hybrids/structures for the allylic carbocations (you do not need to include resonance hybrids/structures with 2 or more formal charges on a given structure).

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