Exploring Chemical Analysis
Exploring Chemical Analysis
5th Edition
ISBN: 9781429275033
Author: Daniel C. Harris
Publisher: Macmillan Higher Education
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Chapter 9, Problem 9.9P
Interpretation Introduction

Interpretation:

The pH of solution formed from oxoacetic acid and potassium oxoacetate

Concept Introduction:

The equation for buffer is described by Henderson-Hasselbach equation and it is a rearranged form of equilibrium constant, Ka. It relates pH of buffer solution and pKa value. It also helps to find equilibrium pH in acid-base reactions. Consider an equation of dissociation of an acid as follows:

  HAH++A

Formula to calculate pH is as follows:

  pH=pKa+log([A][HA])

Here,

pKa is acid dissociation constant of weak acid HA.

[A] is concentration of conjugate base A

[HA] is concentration of acid HA.

Concentration of a solution is expressed by molality and is denoted by m. It is defined as the ratio of number of moles of solute to mass of solvent in 1 kg or 1000 g.

The formula of number of moles of solute is as follows:

  Number of moles of solute=mass of solutemolar mass of solute

Molality is expressed as follows:

  m=(mass of solutemolar mass of solute)(1000 gmass of solvent(g))

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