Calculate the actual work done on the 200 g mass using W = mgh. Be careful to use only the change in height of the mass. How does this compare to the work done by the gas from step C? Does the gas do any work other than lifting the 200 g mass? (The pictures contain the data).
Calculate the actual work done on the 200 g mass using W = mgh. Be careful to use only the change in height of the mass. How does this compare to the work done by the gas from step C? Does the gas do any work other than lifting the 200 g mass? (The pictures contain the data).
College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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Calculate the actual work done on the 200 g mass using W = mgh. Be careful to use only the change in height of the mass. How does this compare to the work done by the gas from step C? Does the gas do any work other than lifting the 200 g mass? (The pictures contain the data).

Transcribed Image Text:II. Data and Result
AIR CALCULATIONS
Radius, m
Length, m
Volume air, m
Can
0.0235
0.11
0.000191
EXPERIMENT
Radius of piston (m) = 0.01625
GATHERED DATA
COMPUTED DATA
Position
Height of
piston, m
Pressure,
Temperature,
Vol of air
Total
Moles of air
Pa
K
inside the
volume of
present, mol
piston, m'
air, m3
A Prep
102025
282.15
0.033
0.000027
0.000218
0.009481
104400
282.15
0.025
0.000021
0.000212
0.009435
104344
361.15
0.055
0.000046
0.000237
0.008236
D
102046
361.15
0.064
0.000053
0.000244
0.008293
A End
of cycle
102025
282.15
0.033
0.000027
0.000218
0.009481
2 214
10 00
104
s 214
Figure 1. Pressure vs. Total Air Volume Diagram of the Heat Engine from SparkVue

Transcribed Image Text:Area enclosed in the graph = 0.59467
Expansion or Compression
compression
expansion
expansion
compression
Isobaric or Isothermic
Steps
ADB
BIC
isothermic
isobaric
COD
isothermic
DIA
isobaric
WORK CALCULATIONS
Work (J)
Efficiency (%)
Thermodynamic
Mechanical
0.59467 J
3.01%
0.0588 J
0.3%
Heat added from C-D, Qcd (J) = 0.7248J
Heat added from B-C, Qbc (J) =19.0631J
Total Heat Added Qu = 19.0631J
Thermodynamic Efficiency (%) = 3.01%
Useful work Energy Efficiency = 0.3%
Carnot (Ideal) Efficiency = 21.87%
%3D
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