AIR CALCULATIONS Radius, m Length, m Volume air, m Can 0.0235 0.11 0.000191 EXPERIMENT Radius of piston (m) = 0.01625 COMPUTED DATA GATHERED DATA Temperature, K Height of piston, m Position Pressure,...


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 picture contains the data).


AIR CALCULATIONS<br>Radius, m<br>Length, m<br>Volume air, m<br>Can<br>0.0235<br>0.11<br>0.000191<br>EXPERIMENT<br>Radius of piston (m) = 0.01625<br>COMPUTED DATA<br>GATHERED DATA<br>Temperature,<br>K<br>Height of<br>piston, m<br>Position<br>Pressure,<br>Vol of air<br>Total<br>Moles of air<br>Ра<br>inside the<br>volume of<br>present, mol<br>piston, m'<br>air, m<br>A Prep<br>102025<br>282.15<br>0.033<br>0.000027<br>0.000218<br>0.009481<br>B<br>104400<br>282.15<br>0.025<br>0.000021<br>0.000212<br>0.009435<br>C<br>104344<br>361.15<br>0.055<br>0.000046<br>0.000237<br>0.008236<br>D<br>102046<br>361.15<br>0.064<br>0.000053<br>0.000244<br>0.008293<br>A End<br>of cycle<br>102025<br>282.15<br>0.033<br>0.000027<br>0.000218<br>0.009481<br>Run1<br>Run 1<br>2124<br>104400 00<br>RRun<br>237E4<br>10434400<br>244E4<br>102046.00<br>21E4<br>10200s.00<br>eeo o ooo s<br>Stan c000 000<br>Periodie<br>Figure 1. Pressure vs. Total Air Volume Diagram of the Heat Engine from SparkVue.<br>

Extracted text: AIR CALCULATIONS Radius, m Length, m Volume air, m Can 0.0235 0.11 0.000191 EXPERIMENT Radius of piston (m) = 0.01625 COMPUTED DATA GATHERED DATA Temperature, K Height of piston, m Position Pressure, Vol of air Total Moles of air Ра inside the volume of present, mol piston, m' air, m A Prep 102025 282.15 0.033 0.000027 0.000218 0.009481 B 104400 282.15 0.025 0.000021 0.000212 0.009435 C 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 Run1 Run 1 2124 104400 00 RRun 237E4 10434400 244E4 102046.00 21E4 10200s.00 eeo o ooo s Stan c000 000 Periodie Figure 1. Pressure vs. Total Air Volume Diagram of the Heat Engine from SparkVue.
Area enclosed in the graph = 0.59467<br>Steps<br>A to B<br>B to C<br>C to D<br>Expansion or Compression<br>compression<br>expansion<br>expansion<br>compression<br>Isobaric or Isothermic<br>isothermic<br>isobaric<br>isothermic<br>isobaric<br>D to A<br>WORK CALCULATIONS<br>Work (J)<br>Efficiency (%).<br>Thermodynamic<br>Mechanical<br>0.59467 J<br>3.01%<br>0.0588 J<br>0.3%<br>Heat added from C-D, Qcd (J) = 0.7248J<br>Heat added from B-C, Qbc (J) = 19.0631J<br>Total Heat Added QH = 19.0631J<br>Thermodynamic Efficiency (%)= 3.01%<br>Useful work Energy Efficiency =0.3%<br>Carnot (Ideal) Efficiency = 21.87%<br>

Extracted text: Area enclosed in the graph = 0.59467 Steps A to B B to C C to D Expansion or Compression compression expansion expansion compression Isobaric or Isothermic isothermic isobaric isothermic isobaric D to A 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 QH = 19.0631J Thermodynamic Efficiency (%)= 3.01% Useful work Energy Efficiency =0.3% Carnot (Ideal) Efficiency = 21.87%
Jun 11, 2022
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