Quantitative Chemical Analysis 9e And Sapling Advanced Single Course For Analytical Chemistry (access Card)
Quantitative Chemical Analysis 9e And Sapling Advanced Single Course For Analytical Chemistry (access Card)
9th Edition
ISBN: 9781319090241
Author: Daniel C. Harris, Sapling Learning
Publisher: W. H. Freeman
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Chapter 9.5, Problem 9TY
Interpretation Introduction

Interpretation:

The pH if pKa=3.00 has to be calculated.

Concept Introduction:

Consider a weak-acid equilibrium reaction,

HAKaH++A-

The acid dissociation constant Ka can be given as,

Ka=[H+][A-][HA]

A weak acid is one that doesn’t undergo completion.

The negative logarithm of an equilibrium constant is called as pK .

The pKa of weak acid is the negative logarithm of Ka and can be given as,

pKa=-logKa

The value of acid dissociation constant Ka decreases with increase in pKa .

The value of Kw is calculated by the formula,

Kw=Ka×Kb

The pH of solution can be calculated as,

pH=-logAH+pH=-log[H+]γH+

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3. 2. 1. On the graph below, plot the volume of rain in milliliters versus its height in centimeters for the 400 mL beaker. Draw a straight line through the points and label it "400 mL beaker." Volume (mL) 400 350 300 250 200 150 750 mL Florence Volume Versus Height of Water 400 mL beaker 100 50 0 0 2 3 4 5 Height (cm) 6 7 8 9 10 Explain why the data points for the beaker lie roughly on a straight line. What kind of relationship is this? How do you know? (see page 276 text) the design of the beaker is a uniform cylinder the volume of liquid increases evenly with its height resulting in a linear relationship. What volume would you predict for 10.0 cm of water? Explain how you arrived at your answer. Use the data table and the graph to assist you in answering the question. 4. Plot the volume of rain in milliliters versus its height in centimeters for the 250 mL Florence flask on the same graph. Draw a best-fit curve through the points and label it "250 mL Florence flask." oke came
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