In an investigation of osmosis, apple cores were submerged in different molarity solutions to determine the unknown osmolarity of the apple. To determine the molarity five uniform apple cores were massed before submerging them in different molarity solutions. After 24 hours the apple cores were massed again. Then the percent change in mass was determined for the five uniform apple cores in each molarity solution. 1. Molarity of Solution Average % Change of Mass of App Cores 0.0 M 21.5 0.2 M 8.0 0.4 M -7.4 0.6 M -19.2 0.8 M -22.7 1.0 M -36.3 Construct an appropriately labeled graph to illustrate the percent а.
In an investigation of osmosis, apple cores were submerged in different molarity solutions to determine the unknown osmolarity of the apple. To determine the molarity five uniform apple cores were massed before submerging them in different molarity solutions. After 24 hours the apple cores were massed again. Then the percent change in mass was determined for the five uniform apple cores in each molarity solution. 1. Molarity of Solution Average % Change of Mass of App Cores 0.0 M 21.5 0.2 M 8.0 0.4 M -7.4 0.6 M -19.2 0.8 M -22.7 1.0 M -36.3 Construct an appropriately labeled graph to illustrate the percent а.
Chemistry
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ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Chapter1: Chemical Foundations
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- In an investigation of osmosis, apple cores were submerged in different molarity solutions to determine the unknown osmolarity of the apple. To determine the molarity five uniform apple cores were massed before submerging them in different molarity solutions. After 24 hours the apple cores were massed again. Then the percent change in mass was determined for the five uniform apple cores in each molarity solution.
a) Construct an appropriately labeled graph to illustrate the percent change in mass of the apples in the different solutions.
![In an investigation of osmosis, apple cores were submerged in
different molarity solutions to determine the unknown osmolarity of the
apple. To determine the molarity five uniform apple cores were
massed before submerging them in different molarity solutions. After
24 hours the apple cores were massed again. Then the percent
change in mass was determined for the five uniform apple cores in
each molarity solution.
1.
Molarity of Solution
Average % Change of Mass of Apple
Cores
0.0 M
21.5
0.2 M
8.0
0.4 M
-7.4
0.6 M
-19.2
0.8 M
-22.7
1.0 M
-36.3
Construct an appropriately labeled graph toillustrate the percent
change in mass of the apples in the different solutions.
а.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fd414df71-4903-42ec-91ff-adde34d8040e%2F45b2952e-8230-4486-81a9-98f4608b6dd0%2Fx8erb1d_processed.jpeg&w=3840&q=75)
Transcribed Image Text:In an investigation of osmosis, apple cores were submerged in
different molarity solutions to determine the unknown osmolarity of the
apple. To determine the molarity five uniform apple cores were
massed before submerging them in different molarity solutions. After
24 hours the apple cores were massed again. Then the percent
change in mass was determined for the five uniform apple cores in
each molarity solution.
1.
Molarity of Solution
Average % Change of Mass of Apple
Cores
0.0 M
21.5
0.2 M
8.0
0.4 M
-7.4
0.6 M
-19.2
0.8 M
-22.7
1.0 M
-36.3
Construct an appropriately labeled graph toillustrate the percent
change in mass of the apples in the different solutions.
а.
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