MA The S Pr Exploring the Properties of Gases. 1. For each of the four parts of the experiment, write an equation using the two variables and a proportionality constant, k (e.g., for Part I, P = k× V if direct, or P = k/V if inverse). Data Analysis %3D bns 2. Calculate the constant, k, for each of the four gas laws that you tested. This value can be an average for each of the data pairs in each part of the experiment. TABLE ११. ५० 295.1 Part I. Part II. Pressure and Volume Pressure and Absolute Temperature Temperature (K) 295.1 K a95.5 K २१४.३ x 300.2K 302.1k 304.2 K 306.1K 308.0K 310.0 K 312.1 K Volume (mL) 20.0 mL 19.0 mL 18.0 17.0mL 16.0mL 15.0mL 14.0mL 13.0m 148.19KPQ 12.0m4 11.0m 173.23 KPa Pressure (kPa) 99.40 kPa 99.44kPa 99.98 100.38HPa 100.78KPa 101.25 KPa 101.79 K Pa 102.20 KPa 102.58KPa 103.15 KPa Pressure (kPa) 99.0 kPa 104.15 KPa 109.15 KPa 115.38kPa 122.73xPd 129.07KPd 137.08kPa L 158.99 KPa Part III. Part IV. Volume and Pressure and Absolute Temperature Temperature (K) Volume (mL) 32K 318.4 K 314.5K 307.9K 297.9K 290.2 K Number of Molecules Number of Molecules Pressure (kPa) 104.20kPa 109.76 KPa 115.93 hPa 122.77 KPa 129.67 Kla 85ML 0.0 82.5mL 80 mL 15 mL 70 mL 10.0 20.0 30.0 40.0 50.0 165 mL 23

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Chapter1: Chemical Foundations
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Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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MA
The S
Pr
Exploring the Properties of Gases.
1. For each of the four parts of the experiment, write an equation using the two variables and a
proportionality constant, k (e.g., for Part I, P = k× V if direct, or P = k/V if inverse).
Data Analysis
%3D
bns
2.
Calculate the constant, k, for each of the four gas laws that you tested. This value can be an
average for each of the data pairs in each part of the experiment.
Transcribed Image Text:MA The S Pr Exploring the Properties of Gases. 1. For each of the four parts of the experiment, write an equation using the two variables and a proportionality constant, k (e.g., for Part I, P = k× V if direct, or P = k/V if inverse). Data Analysis %3D bns 2. Calculate the constant, k, for each of the four gas laws that you tested. This value can be an average for each of the data pairs in each part of the experiment.
TABLE
११. ५०
295.1
Part I.
Part II.
Pressure and Volume
Pressure and Absolute Temperature
Temperature (K)
295.1 K
a95.5 K
२१४.३ x
300.2K
302.1k
304.2 K
306.1K
308.0K
310.0 K
312.1 K
Volume (mL)
20.0 mL
19.0 mL
18.0
17.0mL
16.0mL
15.0mL
14.0mL
13.0m 148.19KPQ
12.0m4
11.0m 173.23 KPa
Pressure (kPa)
99.40 kPa
99.44kPa
99.98
100.38HPa
100.78KPa
101.25 KPa
101.79 K Pa
102.20 KPa
102.58KPa
103.15 KPa
Pressure (kPa)
99.0 kPa
104.15 KPa
109.15 KPa
115.38kPa
122.73xPd
129.07KPd
137.08kPa
L
158.99 KPa
Part III.
Part IV.
Volume and
Pressure and
Absolute Temperature
Temperature (K) Volume (mL)
32K
318.4 K
314.5K
307.9K
297.9K
290.2 K
Number of Molecules
Number of Molecules
Pressure (kPa)
104.20kPa
109.76 KPa
115.93 hPa
122.77 KPa
129.67 Kla
85ML
0.0
82.5mL
80 mL
15 mL
70 mL
10.0
20.0
30.0
40.0
50.0
165 mL
23
Transcribed Image Text:TABLE ११. ५० 295.1 Part I. Part II. Pressure and Volume Pressure and Absolute Temperature Temperature (K) 295.1 K a95.5 K २१४.३ x 300.2K 302.1k 304.2 K 306.1K 308.0K 310.0 K 312.1 K Volume (mL) 20.0 mL 19.0 mL 18.0 17.0mL 16.0mL 15.0mL 14.0mL 13.0m 148.19KPQ 12.0m4 11.0m 173.23 KPa Pressure (kPa) 99.40 kPa 99.44kPa 99.98 100.38HPa 100.78KPa 101.25 KPa 101.79 K Pa 102.20 KPa 102.58KPa 103.15 KPa Pressure (kPa) 99.0 kPa 104.15 KPa 109.15 KPa 115.38kPa 122.73xPd 129.07KPd 137.08kPa L 158.99 KPa Part III. Part IV. Volume and Pressure and Absolute Temperature Temperature (K) Volume (mL) 32K 318.4 K 314.5K 307.9K 297.9K 290.2 K Number of Molecules Number of Molecules Pressure (kPa) 104.20kPa 109.76 KPa 115.93 hPa 122.77 KPa 129.67 Kla 85ML 0.0 82.5mL 80 mL 15 mL 70 mL 10.0 20.0 30.0 40.0 50.0 165 mL 23
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