The volume decrease only when the external pressure increase.
When the heater is turned off, the air inside the balloon cools down, causing it to contract and the volume of the balloon to decrease. This decrease in volume creates less lift, causing the balloon to descend.
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.
The ideal gas law describes the relationship between volume, pressure, and temperature of a gas. When a balloon is taken to a mountaintop, where the atmospheric pressure is lower, the volume of the balloon increases because the pressure on the balloon decreases. This change in volume is in accordance with Boyle's law, a special case of the ideal gas law.
Decrease the pressure of the surrounding environment. Thus, the force acting on the balloon from the outside decreases, allowing the air pressure that creates a force inside the balloon to have less of a counteracting force.
The volume decrease.
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.
Decrease
When the heater is turned off, the air inside the balloon cools down, causing it to contract and the volume of the balloon to decrease. This decrease in volume creates less lift, causing the balloon to descend.
the balloon's volume would decrease!!!
Balloons deflate in the cold because cold air causes the gas inside the balloon to contract and decrease in volume. This decrease in volume leads to a decrease in pressure inside the balloon, causing it to deflate.
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.
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.
the balloon's volume would decrease!!!
the balloon's volume would decrease!!!
The volume of air inside the balloon will decrease as the temperature drops in the refrigerator, causing the balloon to slightly shrink. When the balloon is taken out of the refrigerator and warms up, the air inside will expand again and the balloon will return to its original size.
volume decreases to one half of the original volume
Compression