Oxalic acid, H2C2O4, has acid dissociation constants of 𝐾a1=5.90×10−2 and 𝐾a2=6.40×10−5. Calculate the p
Posted: Mon Nov 15, 2021 4:51 pm
Oxalic acid, H2C2O4, has acid dissociation constants
of 𝐾a1=5.90×10−2 and 𝐾a2=6.40×10−5. Calculate the pH and
molar concentrations of H2C2O4, HC2O−4,
and C2O2−4 at equilibrium for each of
the solutions.
Oxalic acid, H,C204, has acid dissociation constants of Kal = 5.90 x 10-2 and K22 = 6.40 x 10-5. Calculate the pH and molar concentrations of H,C204, HC207, and coat equilibrium for each of the solutions. A 0.129 M solution of H,C,04 pH = [H,C,0,1 = M [HC,001 - M [CO2) = M M
A 0.129 M solution of Na,C,04 pH = [H,C,041 = M [HC,0,1 = M [CO-1- M
of 𝐾a1=5.90×10−2 and 𝐾a2=6.40×10−5. Calculate the pH and
molar concentrations of H2C2O4, HC2O−4,
and C2O2−4 at equilibrium for each of
the solutions.
Oxalic acid, H,C204, has acid dissociation constants of Kal = 5.90 x 10-2 and K22 = 6.40 x 10-5. Calculate the pH and molar concentrations of H,C204, HC207, and coat equilibrium for each of the solutions. A 0.129 M solution of H,C,04 pH = [H,C,0,1 = M [HC,001 - M [CO2) = M M
A 0.129 M solution of Na,C,04 pH = [H,C,041 = M [HC,0,1 = M [CO-1- M