Consider a 1.0-L container of neon gas at STP. Will the average kinetic energy, average velocity, and frequency of collisions of gas molecules with the walls container increase, decrease, or remain the same under each of the following conditions? a. The temperature is increased to 270°C. Average kinetic energy Average velocity The collision frequency b. The temperature is decreased to -60°C. Average kinetic energy M Average velocity The collision frequency c. The volume is decreased to 0.5 L. Average kinetic energy Average velocity The collision frequency d. The number of moles of neon is doubled. Average kinetic energy Average velocity The collision frequency 5

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Consider a 1.0-L container of neon gas at STP. Will the average kinetic energy, average velocity, and frequency of collisions of gas molecules with the walls
container increase, decrease, or remain the same under each of the following conditions?
a. The temperature is increased to 270°C.
Average kinetic energy
Average velocity
The collision frequency
b. The temperature is decreased to -60°C.
Average kinetic energy
Average velocity
The collision frequency
c. The volume is decreased to 0.5 L.
Average kinetic energy
Average velocity
M
The collision frequency
d. The number of moles of neon is doubled.
Average kinetic energy
Average velocity
The collision frequency
Transcribed Image Text:[References] Consider a 1.0-L container of neon gas at STP. Will the average kinetic energy, average velocity, and frequency of collisions of gas molecules with the walls container increase, decrease, or remain the same under each of the following conditions? a. The temperature is increased to 270°C. Average kinetic energy Average velocity The collision frequency b. The temperature is decreased to -60°C. Average kinetic energy Average velocity The collision frequency c. The volume is decreased to 0.5 L. Average kinetic energy Average velocity M The collision frequency d. The number of moles of neon is doubled. Average kinetic energy Average velocity The collision frequency
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