Name Lab Instructor Experiment 2-Graphing Prelaboratory Exercises 1. Using the slope formula, determine the slope of the line. Mass of Solute (g) 45 40 35 30 25 20 15 10 5 0 0 5 10 3. Graph the following data. 20 25 15 Volume of Solution (mL) Number of marbles 10 16 24 40 30 Date 2. Using the graph above, what is the mass of solute found in 8.0, 15.0, and 33.0 mL of solution? 11 35 40 Mass of marbles (g) 41.0 61.0 104.0 162.0 45 172.0 Label the y- and x-axes with proper units. Predict the mass (g) of 30 marbles from the graph.

Introductory Chemistry: A Foundation
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Author:Steven S. Zumdahl, Donald J. DeCoste
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Chapter15: Solutions
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Name
Lab Instructor
Experiment 2-Graphing
Prelaboratory Exercises
1. Using the slope formula, determine the slope of the line.
Mass of Solute (g)
45
40
35
30
25
20
15
10
5
0
0
5
10
3. Graph the following data.
15
20
25
Volume of Solution (mL)
Number of marbles
10
16
24
40
30
2. Using the graph above, what is the mass of solute found in 8.0, 15.0, and 33.0 mL of
solution?
Mass of marbles (g)
41.0
61.0
104.0
162.0
Date
11
35
40
45
172.0
Label the y- and x-axes with proper units. Predict the mass (g) of 30 marbles from the graph.
Transcribed Image Text:Name Lab Instructor Experiment 2-Graphing Prelaboratory Exercises 1. Using the slope formula, determine the slope of the line. Mass of Solute (g) 45 40 35 30 25 20 15 10 5 0 0 5 10 3. Graph the following data. 15 20 25 Volume of Solution (mL) Number of marbles 10 16 24 40 30 2. Using the graph above, what is the mass of solute found in 8.0, 15.0, and 33.0 mL of solution? Mass of marbles (g) 41.0 61.0 104.0 162.0 Date 11 35 40 45 172.0 Label the y- and x-axes with proper units. Predict the mass (g) of 30 marbles from the graph.
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