Academic Integrity: tutoring, explanations, and feedback — we don’t complete graded work or submit on a student’s behalf.

The next 6 questions involve the calculation of concentrations of the molecular

ID: 794077 • Letter: T

Question

The next 6 questions involve the calculation of concentrations of the molecular and ionic species in an aqueous solution that has an analytical composition of 0.260 M KH2PO4+ 0.160 M K2HPO4.
NOTE: The Ka's for the three acidic protons of phosphoric acid H3PO4are: 7.11 x 10-3, 6.32 x 10-8, and 4.5 x 10-13. It may be helpful to write out the three dissociation reactions along with their Ka's and pKa's before starting these problems.

What is the pH of this solution?

What is the concentration of the molecular species H3PO4?
What is the concentration of K+in molarity?
What is the concentration of OH-?
What is the concentration of PO43-in molarity?
What is [H2PO4-]?

Explanation / Answer

6.32 x 10-8 = Ka2 and [HA] = [H2PO4-] and [A-] = [HPO42-]

1) 0.26 + 0.16 = 0.42 moles/L = [Na+]

2) pH = pKa + log [A-]/[HA]

pH = -log(6.32*10-8 ) + log (0.16/0.26)

pH = 6.98

pOH = 14-6.98 = 7.02

[OH-] = 10-7.02 = 9.54*10-8 mol/L


What is the pH of this solution?
pH = 6.98

What is the concentration of the molecular species H3PO4?
You need the correct answer to # 1 for this. Look at the 3 steps of dissociation of H3PO4. Some H2PO4- can combine with H+ to produce H3PO4 as governed by K1. So, set up the proper equilibrium expression based on K1, then use the pH as calculated from the HH equation to solve for [H3PO4].
   
What is the concentration of K+ in molarity?
Remember that potassium salts dissociate completely. Note how many mols of K+ are released when one mole of K2HPO4 dissociates
   
What is the concentration of OH-?
pOH=14 - pH
   
What is the concentration of PO43- in molarity?
Some HPO4-2 dissociates(or ionizes) to form PO4-3 as governed by K3. The pH is fixed by the main buffer as calculated in problem # 1. Set up the equil. expression for K3 and solve for [PO4-3].
   
What is [H2PO4-]?
Remember that [H2PO4-] refers to the equilibrium concentration of H2PO4-. [H3PO4] is negligble compared with [H2PO4-], so [H2PO4-] is approximately equal to the analytical concentration of H2PO4-.

Hire Me For All Your Tutoring Needs
Integrity-first tutoring: clear explanations, guidance, and feedback.
Drop an Email at
drjack9650@gmail.com
Chat Now And Get Quote