Particles in a balloon decrease at cold temperatures because the gas inside the balloon contracts as it cools down, resulting in a decrease in volume and therefore a decrease in the number of gas particles.
I am assuming that a rubber balloon is meant here not a hot air balloon! Squeezing a balloon will give rise to a decrease in volume and a subsequent increase in internal pressure which may not be too large as the balloon expands in another part to compensate. Using the kinetic theory of gases (which shouldn't strictly be applied to this case but provides insights) the average energy of the particles inside depends on the temperature- the particles don't go any faster they just hit the inside of the balloon more often because of the decrease in volume.
The particles in the balloon slow down as the temperature decreases cause it to deflate
If you remove gas particles from a balloon, the pressure inside the balloon would decrease. This is because pressure is directly related to the number of gas particles colliding with the walls of the balloon; fewer particles result in fewer collisions. As a consequence, the balloon may also shrink in size as the internal pressure drops.
When you leave a balloon in the freezer overnight, the air inside the balloon cools down and contracts, causing the balloon to shrink. The particles in the air inside the balloon lose kinetic energy and move more slowly, resulting in a decrease in pressure and volume inside the balloon.
When you put a balloon in the freezer, the particles of the air inside the balloon will lose energy and slow down, causing them to contract and the balloon to shrink. This is because the cold temperature reduces the kinetic energy of the air molecules, leading to a decrease in pressure inside the balloon.
Pressure (such as air in a balloon) can increase with higher temps and decrease with lower temps.
An increase in temperature, causing the gas particles to move faster and spread out more, resulting in decreased density. Additionally, a decrease in the number of gas particles in the balloon could also lead to a decrease in density.
When the temperature is colder the particles in the balloon travel slower, making the balloon not able to increase in size it decreases.When the temperature is hot it allows the balloon to expand because the particles in the balloon are moving rapidly. in conclusion the the cold makes the balloon decrease in size and the heat allows it to expand.
Yes. When you squeeze the balloon, you cause the volume to decrease. Since density is determined by dividing mass by volume, a decrease in volume will cause an increase in denisty.
Cooling the air inside a sealed balloon will cause the air particles to slow down and lose energy, resulting in a decrease in pressure. As a result, the balloon will shrink in size due to the decrease in pressure exerted by the air particles on the balloon walls.
The speed of the particles inside the air-filled balloon increases as the temperature increases. This is because higher temperatures provide more thermal energy to the particles, causing them to move faster.
The kinetic energy of the particles inside the balloon increase. This then expands the volume of the balloon.
When a balloon is exposed to cold temperatures, the air molecules inside lose kinetic energy and move more slowly, causing the volume of the air inside the balloon to decrease. This decrease in volume leads to a decrease in pressure inside the balloon, causing it to deflate.
I am assuming that a rubber balloon is meant here not a hot air balloon! Squeezing a balloon will give rise to a decrease in volume and a subsequent increase in internal pressure which may not be too large as the balloon expands in another part to compensate. Using the kinetic theory of gases (which shouldn't strictly be applied to this case but provides insights) the average energy of the particles inside depends on the temperature- the particles don't go any faster they just hit the inside of the balloon more often because of the decrease in volume.
A) The air particles inside the balloon lose kinetic energy when exposed to low temperatures in the deep freezer. This causes the particles to move slower and come closer together, resulting in a decrease in volume and shrinkage of the balloon.
The particles in the balloon slow down as the temperature decreases cause it to deflate
If you remove gas particles from a balloon, the pressure inside the balloon would decrease. This is because pressure is directly related to the number of gas particles colliding with the walls of the balloon; fewer particles result in fewer collisions. As a consequence, the balloon may also shrink in size as the internal pressure drops.