One of the most common antibiotics is penicillin G (benzylpenicillinic acid), which has the following structure: It is a weak monoprotic acid: HP ⇄ H + + P - k a = 1.64 × 10 − 3 where HP denotes the parent acid and P - the conjugate base. Penicillin G is produced by growing molds in fermentation tanks at 25°C and a pH range of 4.5 to 5.0. The crude form of this antibiotic is obtained by extracting the fermentation broth with an organic solvent in which the acid is soluble. (a) Identify the acidic hydrogen atom. (b) In one stage of purification, the organic extract of the crude penicillin G is treated with a buffer solution at pH = 6.50. What is the ratio of the conjugate base of penicillin G to the acid at this pH? Would you expect the conjugate base to be more soluble in water than the acid? (c) Penicillin G is not suitable for oral administration, but the sodium salt (NaP) is because it is soluble. Calculate the pH of a 0.12 A M NaP solution formed when a tablet containing the salt is dissolved in a glass of water.
One of the most common antibiotics is penicillin G (benzylpenicillinic acid), which has the following structure: It is a weak monoprotic acid: HP ⇄ H + + P - k a = 1.64 × 10 − 3 where HP denotes the parent acid and P - the conjugate base. Penicillin G is produced by growing molds in fermentation tanks at 25°C and a pH range of 4.5 to 5.0. The crude form of this antibiotic is obtained by extracting the fermentation broth with an organic solvent in which the acid is soluble. (a) Identify the acidic hydrogen atom. (b) In one stage of purification, the organic extract of the crude penicillin G is treated with a buffer solution at pH = 6.50. What is the ratio of the conjugate base of penicillin G to the acid at this pH? Would you expect the conjugate base to be more soluble in water than the acid? (c) Penicillin G is not suitable for oral administration, but the sodium salt (NaP) is because it is soluble. Calculate the pH of a 0.12 A M NaP solution formed when a tablet containing the salt is dissolved in a glass of water.
Solution Summary: The author explains how the pH of a solution is determined by the Henderson–Hasselbach equation.
One of the most common antibiotics is penicillin G (benzylpenicillinic acid), which has the following structure:
It is a weak monoprotic acid:
HP
⇄
H
+
+
P
-
k
a
=
1.64
×
10
−
3
where HP denotes the parent acid and P- the conjugate base. Penicillin G is produced by growing molds in fermentation tanks at
25°C
and a pH range of 4.5 to 5.0. The crude form of this antibiotic is obtained by extracting the fermentation broth with an organic solvent in which the acid is soluble. (a) Identify the acidic hydrogen atom. (b) In one stage of purification, the organic extract of the crude penicillin G is treated with a buffer solution at pH = 6.50. What is the ratio of the conjugate base of penicillin G to the acid at this pH? Would you expect the conjugate base to be more soluble in water than the acid? (c) Penicillin G is not suitable for oral administration, but the sodium salt (NaP) is because it is soluble. Calculate the pH of a 0.12 A M NaP solution formed when a tablet containing the salt is dissolved in a glass of water.
Can the molecule on the right-hand side of this organic reaction be made in good yield from no more than two reactants, in one step, by moderately heating
the reactants?
O
? A
. If your answer is yes, then draw the reactant or reactants in the drawing area below. You can draw the reactants in any arrangement you like.
. If your answer is no, check the box under the drawing area instead.
Explanation
Check
Click and drag to start drawing a structure.
ㅇ
80
F5
F6
A
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FIG
In methyl orange preparation, if the reaction started with 0.5 mole of sulfanilic acid to form the diazonium salt of this compound and then it converted to methyl orange [0.2 mole]. If the efficiency of the second step was 50%, Calculate: A. Equation(s) of Methyl Orange synthesis: Diazotization and coupling reactions. B. How much diazonium salt was formed in this reaction? C. The efficiency percentage of the diazotization reaction D. Efficiency percentage of the whole reaction.
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