Because PV = nRT, if temperature increases, so does pressure.
When liquid nitrogen is poured on a balloon, the air inside the balloon quickly cools and contracts, causing the balloon to deflate. The extreme cold of the liquid nitrogen causes the gas particles inside the balloon to lose energy and move closer together, resulting in a decrease in pressure that makes the balloon shrink.
When an inflated balloon is exposed to cold air, provided pressure is constant, the volume will decrease. Bring the balloon back to a warmer spot, and the gas gains kinetic energy from the warm air, and the balloon will plump back up.
When the volume of a confined gas is reduced by half at a constant temperature, the pressure of the gas will double according to Boyle's Law. This is because the product of pressure and volume is constant for a given amount of gas at constant temperature. When the volume decreases, the pressure increases to maintain this equilibrium.
kinetic energy increases with the increase in temperature is a postulate in kinetic molecular theory of matter.if the pressure is kept constant when temperature decreases the kinetic energy of the molecules decreases resulting in decrease in the volume of the gas. Charle's Law state's that For a given mass of dry gas at constant pressure ,volume is directionally proportional to temperature ie V~T
The solubility of gases generally decreases with an increase in temperature. This is because elevated temperatures disrupt the intermolecular forces holding the gas molecules in the liquid solvent, making it easier for the gas to escape into the atmosphere.
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.
Temperature and volume vary directly, so if temperature decreases, so does volume. Volume decreases because the measure of the average kinetic energy of the gas particles (temperature) is decreasing also. When that happens, a gas cannot expand, and will decrease.
volume decreases considering the pressure is constant
The temperature decreases
As a balloon rises, the air pressure decreases, causing the gas inside the balloon to expand. This expansion of gas makes the balloon's volume increase, causing it to rise further. Additionally, the decrease in temperature also affects the density of the gas inside the balloon, contributing to its ascent.
When a balloon is cooled, the air inside it contracts and takes up less space, causing the balloon to shrink. This is because the volume of a gas decreases as its temperature decreases, following the ideal gas law.
== == According to Charles's Law, "At constant pressure, the volume of a given mass of an ideal gas increases or decreases by the same factor as its temperature (in Kelvin) increases or decreases." Therefore, if the temperature of the gas is decreased, the volume of the gas will decrease proportionally, and the balloon will contract.
It decreases.
The balloon would shrink because the average kinetic energy of the gas molecules in the balloon decreases when the temperate decreases. Go and try it is a pretty fun!
When a balloon has a leak, the pressure inside the balloon decreases as the gas molecules escape through the leak. This results in the balloon deflating and becoming smaller in size.
The rate decreases.
The pressure of the gas would also decrease.