Increasing the the pressure the volume decrease.
The law of Boyle and Mariotte: P.V= k
Volume and temperature are directly proportional to each other and so when temperature is increased the volume also increase and vise virsa
When the temperature of a gas is increased at a constant pressure, its volume increases. When the temperature of a gas is devreased at constnt pressure, its volume decreases.
The volume decreases, in accordance to Boyle's Gas Law.
Volume and temperature are directly proportional to each other and so when temperature is increased the volume also increase and vise virsa
Increasing the the pressure the volume decrease.The law of Boyle and Mariotte: P.V= k
Increasing the the pressure the volume decrease.The law of Boyle and Mariotte: P.V= k
When the temperature of a gas is increased at constant pressure, its volume also increases. This relationship is described by Charles's Law, which states that the volume of a gas is directly proportional to its temperature when pressure is held constant. As the gas molecules gain energy with increased temperature, they move more quickly and occupy a larger volume.
Charles found that when the temperature of a gas is increased at constant pressure, its volume increases. When the temperature of a gas is decreased at constant pressure, its volume decreases.
Volume and temperature are directly proportional to each other and so when temperature is increased the volume also increase and vise virsa
When pressure is increased on a fixed mass of gas at constant temperature, the volume of the gas will decrease. This is known as Boyle's Law, which states that pressure and volume are inversely proportional when temperature is held constant.
When air is increased in volume, the pressure decreases while the temperature remains constant. This relationship is described by Boyle's Law, which states that the pressure of a gas is inversely proportional to its volume when the temperature is held constant. As the volume increases, the air molecules have more space to move around, leading to a lower pressure.
Volume & pressure are inversely proportionate, if temperature stays constant volume would decrease at a factor proporionate to the increase in pressure.