In a similar experiment to the one you have performed a student is measuring the equilibrium for an organic acid that is soluble in water and in cyclohexane, a nonpolar organic solvent. When shaken with the solution of water and cyclohexane, it distributes between the organic and aqueous phase. The two phases are separated and titrated with 0.120 M NaOH. Calculate the equilibrium constant for an acid where the titration of the aqueous phase requires 9.92 mL of the base and the organic phase requires 1.51 mL of the base.

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In a similar experiment to the one you have performed a student is measuring the
equilibrium for an organic acid that is soluble in water and in cyclohexane, a nonpolar
organic solvent. When shaken with the solution of water and cyclohexane, it
distributes between the organic and aqueous phase. The two phases are separated
and titrated with 0.120 M NaOH. Calculate the equilibrium constant for an acid
where the titration of the aqueous phase requires 9.92 mL of the base and the organic
phase requires 1.51 mL of the base.
Transcribed Image Text:In a similar experiment to the one you have performed a student is measuring the equilibrium for an organic acid that is soluble in water and in cyclohexane, a nonpolar organic solvent. When shaken with the solution of water and cyclohexane, it distributes between the organic and aqueous phase. The two phases are separated and titrated with 0.120 M NaOH. Calculate the equilibrium constant for an acid where the titration of the aqueous phase requires 9.92 mL of the base and the organic phase requires 1.51 mL of the base.
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