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Acid-Base Titration
Learning Goals:
1. Use the technique of acid-base titration to standardize (three significant
figures) a basic solution against a
2. Determine the molecular weight of an unknown acid (three significant
figures) by using the standardized basic solution as a
in another acid-base titration.
Abstract:
Acid-base titration is a technique commonly used to determine the moles of acid
in a sample by adding a known volume of strong base of a known concentration.
The strong base provides the hydroxide ions, OH, to react quantitatively with the
acid. The point at which the acid is completely and exactly consumed (reacted
with) the known quantity of base is called the equivalence point and is signaled
by a color change in the solution (end point). This color change is created by an
indicator dye which is extremely sensitive to the presence of even a small excess
of aqueous OH-. From the stoichiometry of the balanced chemical reaction, the
number of moles of the unknown acid solution can be determined. If the number
of grams of unknown acid is measured, the molecular weight can be calculated.
Important Equations
Neutralization equation for any monoprotic acid, HA, neutralized by strong
base, NaOH:
HA(,?q)+ NaOH(..?q)~ NaA(aq)+ H 20(1)
Equation 1: Neutralization Reaction
Note: Na+(aq) and A(aq) are spectator ions in this reaction and are simply written
as the salt byproduct, NaA (aq).
As more and more of the base is added the excess acid is neutralized as shown
in Equation 1. When more moles of OH- are added than moles of HA initially
present, the final solution contains excess OH- which means the titration has
passed the endpoint. If an acid-base indicator, such as Phenolphthalein, is
present there will be a color change at this endpoint. Even a fraction of a drop of
excess base is all that is required to trig
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