Charles' Law
Boyle's Law (APEX)
When a fixed sample of gas increases in volume, its pressure decreases because the gas particles have more space to move around, resulting in fewer collisions with the container walls. The temperature of the gas typically remains constant.
Volume and pressure vary indirectly, which means that when one goes up, the other goes down. If the pressure goes up, the volume goes down. If the volume goes up, the pressure goes down.Mathematically:P1V1 = P2V2The left side represents the beginning conditions, and the right side represents the pressure and temperature that have changed. Note that this formula assumes constant mass and temperature.
Temperature must be in Kelvin when using Charles's law, as it is a gas law that states that the volume of a gas is directly proportional to its absolute temperature when pressure and amount of gas are constant.
Yes, the pressure of oxygen-free nitrogen is affected by temperature. As temperature increases, the pressure of a gas also increases if the volume and amount of gas are constant, according to the ideal gas law. Conversely, as temperature decreases, the pressure decreases.
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Boyle's law assumes that temperature is constant, the gas is behaving ideally, and the amount of gas is fixed. It also assumes that the pressure and volume of the gas are inversely proportional to each other.
The volume of a fixed amount of gas increases as the temperature of the gas increases, assuming pressure is held constant. This relationship is described by Charles's Law, a gas law that states that volume is directly proportional to temperature.
Charles's Law assumes that the pressure remains constant, the amount of gas stays the same, and the temperature is measured in Kelvin. It states that at constant pressure, the volume of a gas is directly proportional to its temperature.
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yes is your answer
boyles law is the status in which fixed amount of gas at given temperature and inversly proportional to applied pressure
The state of matter that obeys Boyle's Law is gas. This law states that "For a fixed amount of an ideal gas kept at a fixed temperature, pressure and volume are inversely proportional".
When the temperature of a fixed sample of gas changes, its particles will gain or lose kinetic energy, leading to a change in their speed and collisions. This results in a change in pressure and volume of the gas, according to the ideal gas law.
As the temperature of a liquid decreases the amount of gas that can be dissolved increases.
decrease
This describes Charles's Law, which states that the volume of a gas is directly proportional to its temperature when pressure is constant. In other words, as the temperature of a gas increases, its volume also increases, and vice versa.
no, no gas does, it depends on temperature and pressure.