Exam 3 - Kinetic Molecular Theory Flashcards

1
Q

The kinetic molecular theory…

A

…Describes why gases behave like they do

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2
Q

Forces between gas molecules are negligible

A

True

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3
Q

Collisions between gas molecules are elastic

A

True

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4
Q

Pressure is proportional to…

A

…the number of collisions and the speed of collisions

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5
Q

Temperature and the average velocity of the molecules in a gas are…

A

…directly proportional to each other

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6
Q

Speed and average kinetic energy are…

A

…directly proportional to each other

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7
Q

What happens if there is an increase in volume at a constant temperature?

A

When volume increases, the number of collisions per unit time decreases, leading to a decrease in pressure

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8
Q

What happens if there is an increase in temperature at a constant volume?

A

When temperature increases, the velocity of the gas molecules increases, so there will be more collisions with the container per wall per unit time, leading to an increase in pressure.

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9
Q

What is effusion?

A

It is the escape of a gas through a hole into an evacuated space

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10
Q

What is diffusion?

A

It is the spread of a substance through a space or another substance.

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11
Q

What happens if two gas containers are opened?

A

The lighter molecules will diffuse faster

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12
Q

What two conditions affect diffusion?

A

Speed of the gas molecules and collisions with other molecules

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13
Q

Gas molecules are very slow; that is why it takes a long time for them to travel a significant distance.

A

False. They are quite fast (average velocity at 500m/s), but the collisions between the molecules will increase their travelling time.

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14
Q

What is the distance travelled by a molecule before colliding with another molecule called?

A

Mean Free Path; it is the distance between collisions

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15
Q

A gas molecule trajectory is not affected by the collision with other molecules.

A

False. Upon a collision, they change directions

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16
Q

Gases behave more ideally at higher temperatures because…

A

…Increased velocity at higher temperature overcomes attraction between molecules