Part II: Kinetic Energy and Speed Sketch and compare the distributions for kinetic energy and speed at two different temperatures in the table below. Record your temperatures (T and 2 1 T ), set Volume as a Constant Parameter, and use roughly the same number of particles for each experiment (aim for ~100-200). Use the T temperature to examine a mixture of particles. T 1 2 = q, T₂ = □ KK Tips: The Species Information and Energy Histograms tools will 2 help. The system is dynamic so the distributions will fluctuate. Sketch the average or most common distribution that you see.

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Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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Part II: Kinetic Energy and Speed Sketch and compare the distributions for kinetic energy and
speed at two different temperatures in the table below. Record your temperatures (T and
2
1
T ), set Volume as a Constant Parameter, and use roughly the same number of particles for
each experiment (aim for ~100-200). Use the T temperature to examine a mixture of
particles. T
1
2
= q, T₂ = □ KK Tips: The Species Information and Energy Histograms tools will
2
help. The system is dynamic so the distributions will fluctuate. Sketch the average or most
common distribution that you see.
Transcribed Image Text:Part II: Kinetic Energy and Speed Sketch and compare the distributions for kinetic energy and speed at two different temperatures in the table below. Record your temperatures (T and 2 1 T ), set Volume as a Constant Parameter, and use roughly the same number of particles for each experiment (aim for ~100-200). Use the T temperature to examine a mixture of particles. T 1 2 = q, T₂ = □ KK Tips: The Species Information and Energy Histograms tools will 2 help. The system is dynamic so the distributions will fluctuate. Sketch the average or most common distribution that you see.
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