PRE-EXPERIMENTAL QUESTIONS 1. A sample of air is trapped in a J-tube. The atmospheric pressure on this particular day averaged out, over the duration of the experiment, to be 730.0 mm of Hg. The following data was obtained from the J-tube apparatus: Total Volume Hg (cm3) 10.30 9.50 8.20 6.40 5.15 Difference of Mercury Height( 0.0 61.5 187.0 444.0 716.0 (a) Calculate the average atmospheric pressure in kPa to 4 significant figures (760 mm Hg=101.325 kPa) (b) Using factor label method, convert 10.30 cm³ to m³ (c Using standard graph paper, plot the graph of total gas volume(VT) as a function of the total pressure (P) acting on the trapped mass of gas in the tube. Notice PT PATM+ PH Calculate the slope (K) of the curve found in (a)
PRE-EXPERIMENTAL QUESTIONS 1. A sample of air is trapped in a J-tube. The atmospheric pressure on this particular day averaged out, over the duration of the experiment, to be 730.0 mm of Hg. The following data was obtained from the J-tube apparatus: Total Volume Hg (cm3) 10.30 9.50 8.20 6.40 5.15 Difference of Mercury Height( 0.0 61.5 187.0 444.0 716.0 (a) Calculate the average atmospheric pressure in kPa to 4 significant figures (760 mm Hg=101.325 kPa) (b) Using factor label method, convert 10.30 cm³ to m³ (c Using standard graph paper, plot the graph of total gas volume(VT) as a function of the total pressure (P) acting on the trapped mass of gas in the tube. Notice PT PATM+ PH Calculate the slope (K) of the curve found in (a)
Introductory Chemistry: An Active Learning Approach
6th Edition
ISBN:9781305079250
Author:Mark S. Cracolice, Ed Peters
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Chapter4: Introduction To Gases
Section: Chapter Questions
Problem 67E: The compression ratio in an automobile engine is the ratio of the gas pressure at the end of the...
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Please solve Q1, C by drawing the correct graph.
![PRE-EXPERIMENTAL QUESTIONS
1. A sample of air is trapped in a J-tube. The atmospheric pressure on this
particular day averaged out, over the duration of the experiment, to be 730.0
mm of Hg. The following data was obtained from the J-tube apparatus:
Total Volume Hg (cm3)
10.30
9.50
8.20
6.40
5.15
Difference of Mercury Height(
0.0
61.5
187.0
444.0
716.0
(a) Calculate the average atmospheric pressure in kPa to 4 significant figures
(760 mm Hg=101.325 kPa)
(b) Using factor label method, convert 10.30 cm³ to m³
(c Using standard graph paper, plot the graph of total gas volume(VT) as a
function of the total pressure (P) acting on the trapped mass of gas in the
tube.
Notice PT PATM+ PH Calculate the slope (K) of the curve found in (a)](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F5d839a66-1c67-40ee-82a0-e57f8c6062e1%2F2f3b24b4-3855-4d15-88ba-e1287c713644%2Fmcx37r_processed.jpeg&w=3840&q=75)
Transcribed Image Text:PRE-EXPERIMENTAL QUESTIONS
1. A sample of air is trapped in a J-tube. The atmospheric pressure on this
particular day averaged out, over the duration of the experiment, to be 730.0
mm of Hg. The following data was obtained from the J-tube apparatus:
Total Volume Hg (cm3)
10.30
9.50
8.20
6.40
5.15
Difference of Mercury Height(
0.0
61.5
187.0
444.0
716.0
(a) Calculate the average atmospheric pressure in kPa to 4 significant figures
(760 mm Hg=101.325 kPa)
(b) Using factor label method, convert 10.30 cm³ to m³
(c Using standard graph paper, plot the graph of total gas volume(VT) as a
function of the total pressure (P) acting on the trapped mass of gas in the
tube.
Notice PT PATM+ PH Calculate the slope (K) of the curve found in (a)
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