Chart 1: : Boyle's Law Experment Helium: t = 50 °C 5.000 intercept: 1.599 L-atm slope: 0.0007 L 4.000 . Helium: t = 30 °C intercept: 1.500 L-atm slope: 0.0007 L 3.000 PV(L-atm) 2.000 曲d o Argon: t 30 °C intercept: 2.101 L-atm slope: -0.0012 L 1.000 5.00 10.00 15.00 P(atm) Argon: t= 50 °C intercept: 2.240 L-atm slope: -0.0009L close Calculations. Formula: N= intercept/RT
Chart 1: : Boyle's Law Experment Helium: t = 50 °C 5.000 intercept: 1.599 L-atm slope: 0.0007 L 4.000 . Helium: t = 30 °C intercept: 1.500 L-atm slope: 0.0007 L 3.000 PV(L-atm) 2.000 曲d o Argon: t 30 °C intercept: 2.101 L-atm slope: -0.0012 L 1.000 5.00 10.00 15.00 P(atm) Argon: t= 50 °C intercept: 2.240 L-atm slope: -0.0009L close Calculations. Formula: N= intercept/RT
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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Question
Record the information about the lines you have generated. Calculate the number of moles:
(n = intercept / RT) for each set of data.

Transcribed Image Text:Chart 1: Boyle's Law Expenment
· Helium: t = 50 °C
intercept: 1.599 L-atm
slope: 0.0007L
5.000
4.000
Helium: t = 30 °C
3.000
intercept: 1.500 L-atm
slope: 0.0007 L
PV(L-atm)
* **
2.000
謝d 。
Argon: t 30 °C
intercept: 2.101 L-atm
slope: -0.0012 L
1.000
5.00
10.00
15.00
P(atm)
Argon: t = 50 °C
intercept: 2.240 L-atm
slope: -0.0009 L
close
Calculations:
Formula: N= intercept/RT
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