Vocabulary
Temperature & Particle Motion
Pressure & Volume
Heat, Pressure & Density
Spot the Mistake
100

What term means the amount of space an object or gas takes up?

WHAT IS VOLUME

100

When temperature increases, do gas particles move faster or slower?

WHAT IS FASTER

100

If the volume of a gas decreases, what happens to its pressure?

Pressure increases

100

If the same amount of matter takes up more space, does its density increase or decrease?

WHAT IS DECREASE

100

A student says, “When temperature increases, particles move slower.” What is wrong?

WHAT IS Particles move faster when temperature increases.

200

What term describes the force of particles pushing against the walls of their container?

WHAT IS PRESSUE

200

When temperature decreases, what happens to particle motion?

WHAT IS It decreases / particles move slower

200

If the volume of a gas increases, what happens to its pressure?

WHAT IS Pressure decreases

200

If matter is squeezed into a smaller space, what happens to its density?

WHAT IS Density increases

200

A student says, “When volume decreases, pressure also decreases.” Correct the statement.

WHAT IS When volume decreases, pressure increases.

300

What term describes how much matter is packed into a certain amount of space?

WHAT IS DENSITY

300

A sealed container is heated but cannot expand. What happens to the pressure inside?

WHAT IS Pressure increases

300

Why does decreasing the volume of a gas increase its pressure?

WHAT IS Particles have less space and hit the container walls more often.

300

In general, when a substance is heated and expands, what happens to its density?

WHAT IS DENSITY DECREASES

300

A student says, “Heating a gas makes the particles stop colliding with the container.” Correct the statement.

WHAT IS Heating makes particles move faster and collide more often/with more force.

400

A gas's particles begin moving faster after being heated. What measurement increased and caused this change in particle motion?

WHAT IS TEMPERATURE 

400

A basketball is left outside on a cold night. Explain what happens to the air particles inside the ball.

WHAT IS They move slower and collide with the walls less often/with less force.

400

You push down on the plunger of a sealed syringe. What happens to the volume and pressure of the trapped air?

WHAT IS Volume decreases; pressure increases.

400

Warm air expands and its particles spread farther apart. Is the warm air more dense or less dense than before? Explain.

WHAT IS Less dense because the same matter is spread through more space.

400

A student says, “If a gas expands, the particles become closer together and density increases.” Identify both mistakes.

WHAT IS Particles spread farther apart, and density decreases.

500

A gas is squeezed into a smaller container. Its particles are now closer together and collide with the container walls more often. What two vocabulary terms describe the property that decreased and the property that increased?

WHAT IS Volume decreased; pressure increased

500

A sealed metal can is placed in a hot environment. The can cannot change size. Predict what happens to particle speed, collisions, and pressure inside the can.

WHAT IS Particle speed increases → collisions increase/become stronger → pressure increases.

500

A gas starts in a large container. It is compressed into half the space without changing its temperature. Predict what happens to particle spacing, wall collisions, and pressure.

WHAT IS Particles become closer together → wall collisions occur more often → pressure increases.

500

A sealed flexible bag of gas is taken to a place where the outside pressure is lower. The bag expands. Predict what happens to the gas's volume, particle spacing, and density.

WHAT IS Volume increases → particles spread farther apart → density decreases.

500

A student says, “A basketball left in the cold gets softer because the air particles move faster, causing pressure to increase.” Rewrite the explanation correctly.

WHAT IS Cold temperatures make particles move slower, so collisions decrease and the pressure inside the ball decreases.

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