the pressure of the gas is directly proportional to its temperature in Kelvin e2020 lol
The graph that represents the relationship between pressure and the amount of air added to a tire, assuming constant temperature, would show a linear increase in pressure. This follows Boyle's Law, which states that for a given amount of gas at constant temperature, pressure is directly proportional to the volume. As more air is added, the volume of gas decreases, leading to an increase in pressure until the tire reaches its appropriate inflation level.
No, pressure is dependent on temperature. As temperature increases, the pressure of a gas also increases, assuming volume remains constant (Boyle's Law). If volume is not constant, then pressure and temperature are directly proportional (Charles's Law).
Boyle's Law states that the pressure of a gas is inversely proportional to its volume when temperature is kept constant. Mathematically, it can be expressed as (P_1 \times V_1 = P_2 \times V_2), where (P) represents pressure and (V) represents volume.
Assuming the volume is kept constant, the pressure will also decrease in this case.
Boyle's Law states that the pressure of a gas is inversely proportional to its volume, assuming temperature and amount of gas remain constant. This means that as pressure increases, volume decreases, and vice versa. Mathematically, it can be expressed as P1V1 = P2V2, where P represents pressure and V represents volume.
To determine the volume of a gas using pressure and temperature, you can use the ideal gas law equation, which is PV nRT. In this equation, P represents pressure, V represents volume, n represents the number of moles of gas, R is the ideal gas constant, and T represents temperature. By rearranging the equation to solve for V, you can calculate the volume of the gas by plugging in the given values for pressure, temperature, and the gas constant.
When the volume of a gas is increased, the pressure of the gas decreases while the temperature remains constant, assuming the gas is behaving ideally. This relationship is described by Boyle's Law, which states that pressure is inversely proportional to volume at constant temperature.
Pressure. An isochore represents constant volume, while an isobar represents constant pressure.
Boyle's Law, which states that pressure and volume are inversely proportional at a constant temperature, expressed as PV = constant. Mathematically, this can be written as P1V1 = P2V2, where P represents pressure and V represents volume at different points in the process.
Assuming that pressure and the amount of matter are constant (meaning they do not change), volume will increase as temperature increases.
Liquids. By assuming that temperature and pressure are constant so that volume does not change.