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Pressure and volume are inversely related - when volume decreases, pressure increases, and vice versa. This is described by Boyle's Law, which states that the pressure of a gas is inversely proportional to its volume when temperature is kept constant.

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What two variables change in boyles law?

In Boyle's Law, pressure and volume change inversely proportional to each other. This means that as pressure decreases, volume increases, and vice versa. The relationship between pressure and volume is described by the equation P1V1 = P2V2, where P represents pressure and V represents volume.


What happens to volume if pressure remains the same and temperature goes up?

If pressure remains the same and temperature increases, the volume of a gas will also increase. This is because the particles in the gas gain energy and move more rapidly, causing them to push outwards on the walls of the container, resulting in an increase in volume.


The relationship between the pressure and volume of a gas at constant temperature is given by?

P V = n R TThe product of (pressure) x (volume) is directly proportional to absolute temperature.So at constant temperature, they have to be inversely proportional to each other.In other words, if, at constant temperature, you increase either the pressure orthe volume of a sample of gas, the other one must decrease by the same factor.


How do density, mass, and volume relate to each other?

Density, mass, and volume are related through the formula density mass/volume. Density is the amount of mass in a given volume, so as mass increases or volume decreases, density also increases.


What is the ideal gas law relationship and how does it explain the behavior of gases under varying conditions?

The ideal gas law states that the pressure, volume, and temperature of a gas are related by the equation PV nRT, where P is pressure, V is volume, n is the number of moles of gas, R is the gas constant, and T is temperature. This law explains how gases behave under different conditions by showing how changes in pressure, volume, and temperature affect each other. For example, if the temperature of a gas increases, its pressure and volume will also change accordingly to maintain the equilibrium described by the ideal gas law.

Related Questions

How are pressure and volume related to each other in Boyle's law?

They are inversely proportional.


Volume temperature pressure?

P1V1=P2V2 P1V1/T1=P2V2/T2 PV=nRT P=pressure V=volume n=number of moles R=the gas constant 8.31J/molK or 0.0821Latm/molK T=temperature in kelvin


How are mass and density related to each other?

mass = volume x density


When the temperature of a gas is constant will the volume increase or decrease as the pressure decreases?

When the temperature of a gas is constant and the pressure decreases, the volume will increase. This is described by Boyle's Law, which states that at constant temperature, the pressure and volume of a gas are inversely proportional to each other.


What two variables change in boyles law?

In Boyle's Law, pressure and volume change inversely proportional to each other. This means that as pressure decreases, volume increases, and vice versa. The relationship between pressure and volume is described by the equation P1V1 = P2V2, where P represents pressure and V represents volume.


According to Boyle's Law increasing the pressure of a gas will have what effect on its volume?

According to Boyle's Law, increasing the pressure of a gas will cause its volume to decrease, as long as the temperature remains constant. Boyle's Law states that pressure and volume are inversely proportional to each other.


What happens to the volume of a gas when the temperature is increased at constant pressure?

Volume and temperature are directly proportional to each other and so when temperature is increased the volume also increase and vise virsa


When the pressure of a gas at a constant temperature is increased the volume of a gas?

Volume and temperature are directly proportional to each other and so when temperature is increased the volume also increase and vise virsa


When the pressure of a gas is increases at constant temperature what happens to the volume?

Volume and temperature are directly proportional to each other and so when temperature is increased the volume also increase and vise virsa


What happens to volume if pressure remains the same and temperature goes up?

If pressure remains the same and temperature increases, the volume of a gas will also increase. This is because the particles in the gas gain energy and move more rapidly, causing them to push outwards on the walls of the container, resulting in an increase in volume.


As pressure increase what does volume do?

since PV=nRT and we assume that the number of moles and temperature remains constant, we can assume that PV=R as R the gas constant will not change, if pressure is increased, then volume must decrease to counteract the change in pressure


Is pressure directly or inversely related to volume?

Pressure is usually inversly proportional to volume, but proportional to temperature. All other things being equal, higher temperatures result in higher pressure, wheras higher volumes result in lower pressure.