increases by a factor of eight
no, no gas does, it depends on temperature and pressure.
Boyle's law is P is gas pressure, k is a constant for a given temperature, and V is the volume of the container P=k/V
Density = mass/volume so it is related to mass and volume. And Volume is related to temperature and pressure, so it is related to those as well.
To convert cubic feet (CF) to standard cubic feet (SCF), you need to account for the conditions of temperature and pressure at which the volume is measured. Standard conditions typically refer to a temperature of 60°F (15.6°C) and a pressure of 14.7 psi (atmospheric pressure). If the original measurement is taken at different conditions, you can use the ideal gas law or appropriate correction factors to adjust the volume to SCF. If conditions are the same, the conversion is straightforward: 1 CF is equivalent to 1 SCF.
because a ship has big volume and a coin has small volume hence the smaller the area the bigger the pressure,the smaller the area the big the volume
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.
If the volume of the cylinder is reduced while the temperature remains constant, the pressure inside the cylinder will increase. This relationship is described by Boyle's Law, which states that pressure and volume are inversely proportional at constant temperature.
If the volume of a gas is tripled at constant temperature, according to Boyle's Law, the pressure of the gas will decrease by a factor of 3. This is because pressure and volume are inversely proportional at constant temperature.
directly proportional to the Kelvin temperature
If the temperature of a gas is reduced by 25%, its volume decreases proportionally if the pressure and quantity of gas remain constant. This is known as Charles's Law, which states that the volume of a gas is directly proportional to its absolute temperature.
The pressure is reduced to one third of the original pressure. The pressure will stay the same you are only changing the volume
If the volume of a container of air is reduced, the pressure of the air inside the container will increase. This is because the volume and pressure of a gas are inversely proportional according to Boyle's Law. The particles inside the container will collide more frequently with the walls, leading to an increase in pressure.
If the pressure is doubled and the temperature is reduced to half, according to Boyle’s Law, the volume of the gas will decrease by half. This is because pressure and volume are inversely proportional when temperature is constant.
Gases are highly compressible. So they don't have definite volume and pressure. As volume is reduced for a given mass pressure increases. Also as temperature changes then at constant volume pressure changes considerably. Same way for a constant pressure temperature change brings a change in the volume. Moreover gasses do not have a free surface.
Gases are highly compressible. So they don't have definite volume and pressure. As volume is reduced for a given mass pressure increases. Also as temperature changes then at constant volume pressure changes considerably. Same way for a constant pressure temperature change brings a change in the volume. Moreover gasses do not have a free surface.
At constant temperature p.V=constant, so pressure INcreases when decreasing the volume.
Temperature increases as pressure increases.