They show more deviation from ideal behaviour as the power of intermolecular forces increase.
If the pressure on a sample of gas is raised three times and the temperature is kept constant, according to Boyle's Law, the volume of the gas will decrease proportionally to maintain a constant temperature. This means the gas will be compressed and occupy a smaller volume.
If the temperature is raised, the equilibrium will shift towards the endothermic direction. This will lead to an increase in the equilibrium concentration of PCl5, resulting in an increase in the ratio of the partial pressures of PCl5 to PCl3.
If the temperature of the liquid is raised, more molecules escape to the vapor until equilibrium is once again established. The vapor pressure of a liquid, therefore, increases with increasing temperature.
If nonsalt water is placed in a closed system (for example an automotive cooling system) then for every pound of pressure the system can handle (ex. radiator cap) the boiling point of water (normally being 212f) is raised by 3 degrees. Thus, if said system can handle only 1 pound pressure before the water boils the temperature of the water when it boils should be 215F. Or so I understand.
The molar heat of vaporization can be estimated by using the Clausius-Clapeyron equation, which relates the vapor pressure of a substance to its temperature and molar heat of vaporization. By knowing the temperature change and the corresponding increase in vapor pressure, calculations can be made to determine the molar heat of vaporization.
It is called condensation, and usually occurs as temperature is lowered, or pressure is raised.
When temperature is lowered, the solubility of most salts decreases because the solubility of solids generally decreases with decreasing temperature. Conversely, when temperature is raised, the solubility of most salts increases as the solubility of solids typically increases with increasing temperature.
When temperature is raised, the cellular event affected in cardiac tissue is an increase in heart rate due to a higher metabolic rate. Conversely, when temperature is lowered, the cellular event influenced is a decrease in heart rate as a result of reduced metabolic activity. These temperature shifts can impact the heart's functioning and electrical activity.
the flag is raised and lowered when you first walk in the flag is raised and lowered when you first walk in
The volume become one third.
an adjustable chair can be raised and lowered.
First it is raised and then it is lowered. short and simple.
The air either side of a weather front will have a different temperature so the passing of a front over you will cause a change in temperature.
Gas pressure and temperature have a direct relationship. If the pressure is raised, then the temperature will also raise, and vice versa.
Raised.
If the pressure on a sample of gas is raised three times and the temperature is kept constant, according to Boyle's Law, the volume of the gas will decrease proportionally to maintain a constant temperature. This means the gas will be compressed and occupy a smaller volume.
When the temperature of a gas is raised while keeping its pressure constant, the volume of the gas will also increase. This 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.