Chapter 22: Problem 100
Cows can digest cellulose, but humans can't. Why not?
Chapter 22: Problem 100
Cows can digest cellulose, but humans can't. Why not?
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Get started for freeAlcohols are very useful starting materials for the production of many different compounds. The following conversions, starting with 1-butanol, can be carried out in two or more steps. Show the steps (reactants/catalysts) you would follow to carry out the conversions, drawing the formula for the organic product in each step. For each step, a major product must be produced. See Exercise 62. (Hint: In the presence of \(\mathrm{H}^{+}\), an alcohol is converted into an alkene and water. This is the exact reverse of the reaction of adding water to an alkene to form an alcohol.) a. 1 -butanol \(\longrightarrow\) butane b. 1-butanol \(\longrightarrow 2\) -butanone
How many different pentapeptides can be formed using five different amino acids?
The two isomers having the formula \(\mathrm{C}_{2} \mathrm{H}_{6} \mathrm{O}\) boil at \(-23^{\circ} \mathrm{C}\) and \(78.5^{\circ} \mathrm{C}\). Draw the structure of the isomer that boils at \(-23^{\circ} \mathrm{C}\) and of the isomer that boils at \(78.5^{\circ} \mathrm{C}\).
Name the following compounds.
a.
Is octanoic acid more soluble in \(1 M \mathrm{HCl}, 1 \mathrm{M} \mathrm{NaOH}\), or pure water? Explain. Drugs such as morphine \(\left(\mathrm{C}_{17} \mathrm{H}_{19} \mathrm{NO}_{3}\right)\) are often treated with strong acids. The most commonly used form of morphine is morphine hydrochloride \(\left(\mathrm{C}_{17} \mathrm{H}_{20} \mathrm{CINO}_{3}\right)\). Why is morphine treated in this way? (Hint: Morphine is an amine.)
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