What conclusions can you draw about the solubility of gases as temperature increases? Figure 3 Figure 1 Figure 2 10 NO CH, methane CO 2.0 2.0 CH, N2 oxygen CO carbon monoxide 1.0 1.0 nitrogen Не helium 10 20 30 Temperature ("C) 40 50 10 20 30 40 10 20 30 Temperature ("C) Temperature ("C) Look at axes for the graphs above and point out the similarities and the differences between them. Is the trend for solubility of gases still the same? Use the graph below to explain the behavior of noble gases in water. Why does the solubility show the trend it does in the figure below? 2.0E-04 1.5E-04 Xenon 1.0E-04 Krypton 5.0E-05 Argon Neon Helum 0.0E+00 10 20 30 Temperature (C) Solubility (molelmole, 1 atm) Solubility (10 mol L-) (O'H6 00L/bu) kaygnjos uyu) Agnyos
What conclusions can you draw about the solubility of gases as temperature increases? Figure 3 Figure 1 Figure 2 10 NO CH, methane CO 2.0 2.0 CH, N2 oxygen CO carbon monoxide 1.0 1.0 nitrogen Не helium 10 20 30 Temperature ("C) 40 50 10 20 30 40 10 20 30 Temperature ("C) Temperature ("C) Look at axes for the graphs above and point out the similarities and the differences between them. Is the trend for solubility of gases still the same? Use the graph below to explain the behavior of noble gases in water. Why does the solubility show the trend it does in the figure below? 2.0E-04 1.5E-04 Xenon 1.0E-04 Krypton 5.0E-05 Argon Neon Helum 0.0E+00 10 20 30 Temperature (C) Solubility (molelmole, 1 atm) Solubility (10 mol L-) (O'H6 00L/bu) kaygnjos uyu) Agnyos
Chemistry
10th Edition
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
Section: Chapter Questions
Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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![What conclusions can you draw about the solubility of gases as temperature increases?
Figure 3
Figure 1
Figure 2
10
NO
CH,
methane
0,
CO
CH
N2
2.0
2.0
axygen
CO
carbon
monoxide
1.0
nitrogen
He
helium
20 30
Temperature ("C)
10
40
50
10
20
30
40
10
20
30
Temperature (C)
Temperature ("C)
Look at axes for the graphs above and point out the similarities and the differences between
them. Is the trend for solubility of gases still the same?
Use the graph below to explain the behavior of noble gases in water. Why does the solubility
show the trend it does in the figure below?
2.0E-04
1.5E-04
Xenon
1.0E-04
Krypton
5.0E-05
Argon
Neon
Hellum.
0.0E+00
10
20
30
Temperature (C)
Solubility (molelmole, 1 atm)
Solubility (10-3 mol L-)
Solubility (mg/100g H,0)
|||||
Solubility (mM)](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F068b18eb-2ded-4f14-8c36-17b083069552%2Faf154d20-1a5a-4cdf-b683-d4a6c67b6113%2Fu97ihmq_processed.jpeg&w=3840&q=75)
Transcribed Image Text:What conclusions can you draw about the solubility of gases as temperature increases?
Figure 3
Figure 1
Figure 2
10
NO
CH,
methane
0,
CO
CH
N2
2.0
2.0
axygen
CO
carbon
monoxide
1.0
nitrogen
He
helium
20 30
Temperature ("C)
10
40
50
10
20
30
40
10
20
30
Temperature (C)
Temperature ("C)
Look at axes for the graphs above and point out the similarities and the differences between
them. Is the trend for solubility of gases still the same?
Use the graph below to explain the behavior of noble gases in water. Why does the solubility
show the trend it does in the figure below?
2.0E-04
1.5E-04
Xenon
1.0E-04
Krypton
5.0E-05
Argon
Neon
Hellum.
0.0E+00
10
20
30
Temperature (C)
Solubility (molelmole, 1 atm)
Solubility (10-3 mol L-)
Solubility (mg/100g H,0)
|||||
Solubility (mM)
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