As the dew point decreases, the water vapor remains constant because the dew point doesn't interfer with the water vapor.
If temperature remains constant and the mixing ratio decreases, the relative humidity will increase. This is because relative humidity is the ratio of the actual water vapor content in the air to the maximum amount of water vapor the air can hold at that temperature. As the mixing ratio decreases, the air becomes closer to saturation, leading to an increase in relative humidity.
No, the total amount of water on Earth remains relatively constant due to the water cycle. Water evaporates from bodies of water, condenses into clouds, and falls back to Earth as precipitation. This cycle ensures that the overall amount of water on Earth remains constant.
Lowering air temperature will increase the relative humidity, assuming the amount of water vapor in the air remains constant. This is because colder air has a limited capacity to hold moisture, so the relative humidity will increase as the air temperature decreases.
The amount of water in the hydrosphere remains relatively constant over time due to the water cycle, which involves processes like evaporation, condensation, precipitation, and runoff. However, the distribution of water can change regionally due to factors like climate change or human activities.
The total amount of water on Earth remains relatively constant over time, so the total volume of water in the hydrosphere does not change.
It will increase? No it will decrease when the same amount of gas is held at constant temperature.
The mass of an object does not change when the amount of gravity acting on it increases. Mass is an intrinsic property of an object and remains constant regardless of the strength of gravity.
If the container decreases in size, the pressure inside the container will increase. This is because the gas molecules are more confined and collide more frequently with the walls of the container. The amount of gas remains constant, but the pressure changes due to the reduced volume.
Velocity decreases on a constant impulse, as impulse is equal to the change in momentum. When a force is applied for a certain amount of time, it results in a change in momentum which causes the velocity to decrease at a constant rate.
water on the earth remains constant.man :)
water on the earth remains constant.man :)
true
If the frequency of a wave increases, its wavelength decreases. This is because the speed of the wave remains constant, so as the frequency increases, more wave cycles occur in the same amount of time, resulting in shorter wavelengths.
If temperature remains constant and the mixing ratio decreases, the relative humidity will increase. This is because relative humidity is the ratio of the actual water vapor content in the air to the maximum amount of water vapor the air can hold at that temperature. As the mixing ratio decreases, the air becomes closer to saturation, leading to an increase in relative humidity.
the pressure is constant. This means that as the temperature of a gas increases, its volume will also increase proportionally. Conversely, when the temperature decreases, the volume will decrease accordingly, as long as the pressure remains constant.
If the force of gravity increases, weight will increase because weight is the measure of the force of gravity on an object. However, mass remains constant as it is a measure of the amount of matter in an object and does not change with gravity.
Combined gas law states:" The ratio between the pressure-volume product and the temperature of a system remains constant: p.V = k.T "k is a constant which only is proportionally depending on the amount of gas.