Statement D is correct. Because the gas particles in container B travel more quickly, their average kinetic energy is higher.
The average kinetic energy (KE) is defined as the one-half of the mass of each gas molecule times multiplied by the square of RMS velocity.
[tex]\rm KE = \frac{1}{2} mV_{rms}^2[/tex]
where,
KE is the kinetic energy
m is the mass of each molecule
(V)rms is the RMS velocity
The average kinetic energy of the gas particles is greater in container B because its particles move faster.
Temperature directs to the hotness or coldness of a body. In clear terms, it is the method of finding the kinetic energy of particles within an entity. Faster the motion of particles more the temperature.
The average kinetic energy of the gas particles is greater in container B because its particles move faster.
Hence option D is correct.
To learn more about the average kinetic energy refer to the link;
https://brainly.com/question/24134093
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