Reference no: EM13702133
Question- Organic synthesis has a long history that can be traced back to ancient times, although at first it was not recognized as such, because it was practiced randomly and strictly heuristically. As a science, organic synthesis is relatively young, its beginning being marked by the rational synthesis of urea [CO(NH2)2] by Wohler in 1828. This synthesis was followed by other milestones such as the synthesis of acetic acid (Kolbe, 1845), glucose (Fischer, 1890), a-terpineo (Perkin, 1904), camphor (Komppa, 1903; Perkin, 1904), tropinone (Robinson, 19 17), haemin (Fischer, 1929), equilenin (Bachmann, 1939), pyridoxine hydrochloride (Folkers, 1939), and quinine (Woodward and Doering, 1944).
On that basis my professor gave a simple homework to find out all the nobel laurates winner only in organic synthesis and their important related works for the synthesis. Mention winning year also (remember it should only be Organic Synthesis).
I am need of complete solution for this problem please help- me out to get right solution
What are the concentrations of fe^2+ in solution
: Another 50.00 mL sample of the solution is treated with zinc, which reduces all the Fe^3+ to Fe^2+. The resulting solution is again titrated with 0.0280 M KnO4; this time 49 mL is required. What are the concentrations of Fe^2+ and Fe^3+ in the (or..
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Why is it important to have methods like gabriel synthesis
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Explain what are the concentrations of fe^2+ and fe^3+
: The permanganate ion is reduced to manganese (II) ion. Another 50.00 mL sample of the solution is treated with zinc, which reduces all the Fe^3+ to Fe^2+. The resulting solution is again titrated with 0.0280 M KnO4; this time 49 mL is required. Wh..
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What percentage of ba2+ remains in solution
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Explain the nobel laurates winner only in organic synthesis
: On that basis my professor gave a simple homework to find out all the nobel laurates winner only in organic synthesis and their important related works for the synthesis. Mention winning year also (remember it should only be Organic Synthesis).
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Find the composition when equilibrium is reached
: Question- Initially a mixture contains .850 mol each of N2 and O2 in an 8.00 L vessel. Find the composition when equilibrium is reached at 3900°C. The reaction is: N2 (g) + O2 (g) 2NO (g) Kc= .0123 at 3900°C.
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Calculate the maximum desired speed limit
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Explain a mixture of compounds to be separated
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Propose a mechanism for the reaction of methyl isocyanate
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