The creation of shells by mollusk species is a fascinating process. By utilizing the Ca 2+ in their food and aqueous environment, as well as some complex equilibrium processes, a hard calcium carbonate shell can be produced. One important equilibrium reaction in this complex process is HCO 3 − ( a q ) ⇌ H + ( a q ) + CO 3 2 − ( a q ) K = 5.6 × 10 − 11 If 0.16 mole of HCO 3 − is placed into 1.00 L of solution, what will be the equilibrium concentration of CO 3 2− ?
The creation of shells by mollusk species is a fascinating process. By utilizing the Ca 2+ in their food and aqueous environment, as well as some complex equilibrium processes, a hard calcium carbonate shell can be produced. One important equilibrium reaction in this complex process is HCO 3 − ( a q ) ⇌ H + ( a q ) + CO 3 2 − ( a q ) K = 5.6 × 10 − 11 If 0.16 mole of HCO 3 − is placed into 1.00 L of solution, what will be the equilibrium concentration of CO 3 2− ?
Solution Summary: The author explains how the mollusk species create a hard calcium carbonate shell by utilizing the Ca+ in their food. The equilibrium constant expression for the given reaction is K
The creation of shells by mollusk species is a fascinating process. By utilizing the Ca2+ in their food and aqueous environment, as well as some complex equilibrium processes, a hard calcium carbonate shell can be produced. One important equilibrium reaction in this complex process is
HCO
3
−
(
a
q
)
⇌
H
+
(
a
q
)
+
CO
3
2
−
(
a
q
)
K
=
5.6
×
10
−
11
If 0.16 mole of HCO3− is placed into 1.00 L of solution, what will be the equilibrium concentration of CO32−?
If the molar conductivity at infinite dilution of HAC is A0 = 390.5 S cm² mol¹. Calculate
the Arrhenius conductivity of a 9.3% by weight solution of HAc with a pH of 3.3. Data:
molecular weight of HAC is 60.05 g/mol and the density of the solution is 1 g/cm³.
If the molar conductivity at infinite dilution of HAC is A0 = 390.5 S cm² mol¹. Calculate
the Arrhenius conductivity of a 9.3% by weight solution of HAc with a pH of 3.3. Data:
molecular weight of HAC is 60.05 g/mol and the density of the solution is 1 g/cm³.
Determine the distance between the metal and the OHP layer using the Helm-
holtz model when the electrode's differential capacitance is 145 μF cm².
DATA: dielectric constant of the medium for the interfacial zone &r=
lectric constant of the vacuum &0 = 8.85-10-12 F m-1
= 50, die-
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