The volume of the balloon will decrease when taken outside on a cold winter day. This is because the cold temperature causes the air inside the balloon to contract, making it occupy less space.
The temperature of the air inside the balloon will decrease, causing the volume of the air to decrease as well. This is because the air molecules move more slowly in the cold, creating less pressure inside the balloon.
When a balloon is squeezed, the volume of the balloon decreases. This causes the gas inside the balloon to be compressed, increasing the pressure of the gas.
When you leave a balloon in the freezer, the air inside it will cool and contract, causing the balloon to shrink in size. This happens because the volume of gases decreases when they are cooled, causing the balloon to deflate.
As a balloon rises in the air, the volume or size of the balloon increases. This is because the atmospheric pressure decreases as the balloon gains altitude, causing the air inside the balloon to expand and the balloon to inflate.
When a balloon is heated, the air molecules inside the balloon gain kinetic energy and move faster, causing them to spread out and take up more space. This increase in volume leads to the balloon expanding.
The temperature of the air inside the balloon will decrease, causing the volume of the air to decrease as well. This is because the air molecules move more slowly in the cold, creating less pressure inside the balloon.
The air will expand, increasing the volume
Taking a balloon outside on a cold day demonstrates Charles's law, which states that the volume of a gas is directly proportional to its temperature at constant pressure. As the temperature decreases outside, the air inside the balloon also cools down, causing its volume to decrease and the balloon to shrink.
It would increase. The balloon would expand because when temperature increases, volume increases as well.
It is reduced by haft
When a balloon is squeezed, the volume of the balloon decreases. This causes the gas inside the balloon to be compressed, increasing the pressure of the gas.
When you leave a balloon in the freezer, the air inside it will cool and contract, causing the balloon to shrink in size. This happens because the volume of gases decreases when they are cooled, causing the balloon to deflate.
As a balloon rises in the air, the volume or size of the balloon increases. This is because the atmospheric pressure decreases as the balloon gains altitude, causing the air inside the balloon to expand and the balloon to inflate.
When a balloon is heated, the air molecules inside the balloon gain kinetic energy and move faster, causing them to spread out and take up more space. This increase in volume leads to the balloon expanding.
When a balloon is submerged in cold water, the air inside the balloon cools and contracts, leading to a decrease in volume. This causes the balloon to shrink in size.
The volume of air inside a balloon decreases as the balloon is deflated or contracts. This is because the space available for the air to occupy shrinks as the balloon's surface area reduces, causing the air molecules to be more densely packed.
The volume decreases because the air molecules slow down and pack closer together.