Chemistry
Chemistry
10th Edition
ISBN: 9781305957404
Author: Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher: Cengage Learning
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I have the density of solution that is 1.092g/ml in an unknown solution, how can I get the sucrose solution % to put on my graph?

Table 2 - Use the data from table 1 and Part 3
raw a - Write the values for the % of each solution obtained from Table 1
raw b - mass of 10 mL of the graduated cylinder is the same for each solution
raw e- volume of the solution is the same for each solution
Show your calculations below for (* and **) for Solution A:
a
Sucrose solution:
Water
Soln A
Soln B
Soln C
Soln D
Unknown
Soda
% (m/v) 0.00 % 4.0% 18.2% 21.0% 265%
b Mass of 10-mL
graduated cylinder (g)
Mass of grad. cylinder +
10.0 mL of solution (g)
Mass of solution (g):
Volume of solution (mL)
** Density of solution
(g/mL)
7.68g 7.689 7.68g7.68gs7.68g7.689 7.68g
C
17.61 |18.2g 18.15%| 18.43| 18기g18.60g 7944
9.93g| 10.44o| 10.47g|10고5 | 11.039|10.a2g10.26%
10.00 mL 10.00ML 10.00ML 10.00mL 10.00 mL 10.00mL 10.00L
1.047 1.075 1.103 1.092
d
10-26
e
f
1.044
1.026
93
3/mL/ g/mh glmL
9/mLg/mL/gimL
• Mass of grad.Cylinder t 10,0mL of solution
graduated cylinder = mass of solution.
(C-b=D)
- mass of 10-mL"
D mass of solution volume of
Soluton = Density of solution
Modified and written for home-experiment by Roman Ferede 02/2020
Tnknown.
1.14
(.12
expand button
Transcribed Image Text:Table 2 - Use the data from table 1 and Part 3 raw a - Write the values for the % of each solution obtained from Table 1 raw b - mass of 10 mL of the graduated cylinder is the same for each solution raw e- volume of the solution is the same for each solution Show your calculations below for (* and **) for Solution A: a Sucrose solution: Water Soln A Soln B Soln C Soln D Unknown Soda % (m/v) 0.00 % 4.0% 18.2% 21.0% 265% b Mass of 10-mL graduated cylinder (g) Mass of grad. cylinder + 10.0 mL of solution (g) Mass of solution (g): Volume of solution (mL) ** Density of solution (g/mL) 7.68g 7.689 7.68g7.68gs7.68g7.689 7.68g C 17.61 |18.2g 18.15%| 18.43| 18기g18.60g 7944 9.93g| 10.44o| 10.47g|10고5 | 11.039|10.a2g10.26% 10.00 mL 10.00ML 10.00ML 10.00mL 10.00 mL 10.00mL 10.00L 1.047 1.075 1.103 1.092 d 10-26 e f 1.044 1.026 93 3/mL/ g/mh glmL 9/mLg/mL/gimL • Mass of grad.Cylinder t 10,0mL of solution graduated cylinder = mass of solution. (C-b=D) - mass of 10-mL" D mass of solution volume of Soluton = Density of solution Modified and written for home-experiment by Roman Ferede 02/2020 Tnknown. 1.14 (.12
2. write the title of the graph
3. label the x and y axis and include units
4. Use a ruler to draw the straight line
5. your plot should look similar to the plot shown in the introduction/background section
Density Vs Concentration of surcrose solution.
1. 26
1.24
1.22-
1. 20
1.18
1. 1나
1.12
|02-
15
25
b) Graphing using Excel f(extra credit- 2 points) Massof gerad. Ainder t
1. Write the title on the top of the graph
2. label the x and y axis and include units
3. show the equation of the line and R2 value
10.0mL
Suarose Solution
Density of Solutiorla /mL)
expand button
Transcribed Image Text:2. write the title of the graph 3. label the x and y axis and include units 4. Use a ruler to draw the straight line 5. your plot should look similar to the plot shown in the introduction/background section Density Vs Concentration of surcrose solution. 1. 26 1.24 1.22- 1. 20 1.18 1. 1나 1.12 |02- 15 25 b) Graphing using Excel f(extra credit- 2 points) Massof gerad. Ainder t 1. Write the title on the top of the graph 2. label the x and y axis and include units 3. show the equation of the line and R2 value 10.0mL Suarose Solution Density of Solutiorla /mL)
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