Penicillin ( MM = 356 g / mol ) , an antibiotic often used to treat bacterial infections, is a weak acid. Its K a is 1.7 × 10 − 3 . Calculate [H + ] in solutions prepared by adding enough water to the following to make 725 mL. (a) 0.187 mol (b) 127 g
Penicillin ( MM = 356 g / mol ) , an antibiotic often used to treat bacterial infections, is a weak acid. Its K a is 1.7 × 10 − 3 . Calculate [H + ] in solutions prepared by adding enough water to the following to make 725 mL. (a) 0.187 mol (b) 127 g
Penicillin
(
MM
=
356
g
/
mol
)
, an antibiotic often used to treat bacterial infections, is a weak acid. Its Ka is
1.7
×
10
−
3
. Calculate [H+] in solutions prepared by adding enough water to the following to make 725 mL.
(a) 0.187 mol
(b) 127 g
Expert Solution
Interpretation Introduction
(a)
Interpretation:
The concentration of hydrogen ion in the given solution should be calculated.
Concept introduction:
The dissociation reaction of a weak acid is represented as follows:
HB⇄H++B−
The expression for the acid dissociation constant will be as follows:
Ka=[H+][B−][HB]
Here, [H+] is equilibrium concentration of hydrogen ion, [B−] is equilibrium concentration of conjugate base and [HB] is the equilibrium concentration of weak acid.
Answer to Problem 52QAP
0.020 M
Explanation of Solution
The acid dissociation constant of penicillin is 1.7×10−3. The volume of solution is 725 mL and number of moles of the acid is 0.187 mol.
The molarity of penicillin can be calculated as follows:
M=nV(L)
Putting the values,
M=0.187 mol725 mL(10−3 L1 mL)=0.258 M
Thus, the concentration of penicillin is 0.258 M.
The molecular formula of penicillin is C16H18N2O4S.
The concentration all the species can be calculated using the ICE table as follows:
Since, the value of x cannot be negative thus, the value of x will be 0.020.
From the ICE table, it is equal to the concentration of hydrogen ion thus,
[H+]=0.020
Therefore, the concentration of hydrogen ion is 0.020 M.
Expert Solution
Interpretation Introduction
(b)
Interpretation:
The concentration of hydrogen ion in the given solution should be calculated.
Concept introduction:
The dissociation reaction of a weak acid is represented as follows:
HB⇄H++B−
The expression for the acid dissociation constant will be as follows:
Ka=[H+][B−][HB]
Here, [H+] is equilibrium concentration of hydrogen ion, [B−] is equilibrium concentration of conjugate base and [HB] is the equilibrium concentration of weak acid.
Answer to Problem 52QAP
0.02805 M
Explanation of Solution
The mass of penicillin is given as 127 g. The molecular formula of the penicillin is C16H18N2O4S thus, its molar mass is 356 g/mol.
Now, from mass and molar mass of the C16H18N2O4S, its number of moles can be calculated as follows:
n=mM=127 g356 g/mol=0.3567 mol
Now, the molarity of C16H18N2O4S can be calculated as follows:
M=nV(L)
Putting the values,
M=0.3567 mol725 mL(10−3 L1 mL)=0.492 M
Thus, the concentration of C16H18N2O4S is 0.492 M.
The concentration all the species can be calculated using the ICE table as follows:
Br.
, H+
.OH
Mg
ether solvent
H+, H₂O
17. Which one of the compounds below is the final product of the reaction sequence
shown above?
HO
A
HO
HO
OH
D
B
OH
HO
OH
C
OH
HO
OH
E
8:57 PM Sun Jan 26
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Explanation Page
X Content
X
ALEKS Jade Nicol - Le
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C
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O States of Matter
Understanding consequences of important physical properties of liquids
? QUESTION
Liquid A is known to have a lower viscosity and lower surface tension than Liquid B.
Use these facts to predict the result of each experiment in the table below, if you can.
experiment
Liquid A and Liquid B are each pumped
through tubes with an inside diameter of
27.0 mm, and the pressures PA and PB
needed to produce a steady flow of
2.4 mL/s are measured.
25.0 mL of Liquid A are poured into a
beaker, and 25.0 mL of Liquid B are poured
into an identical beaker. Stirrers in each
beaker are connected to motors, and the
forces FA and FB needed to stir each liquid
at a constant rate are measured.
predicted outcome
OPA will be greater than PB
OPA will be less than PB
OPA will be equal to PB
It's impossible to predict whether PA or PB will
be greater without more information.…
Show work. Don't give Ai generated solution
Chapter 13 Solutions
OWLv2 with Student Solutions Manual eBook for Masterton/Hurley's Chemistry: Principles and Reactions, 8th Edition, [Instant Access], 4 terms (24 months)
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