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Humidity is the actual amount of moisture in a certain volume of air.

Relative humidity is the percentage of the maximum amount of moisture that's possible in certain volume of air for a particular temperature.

Example of Relative Humidity: Suppose a 5 ft. cube of air could could hold a maximum 10 oz. of moisture at 80 degrees. Now suppose that the cube of air actually contains 5 oz. of moisture. The Relative Humidity would be 50%.

The idea of humidity refers to how much water is mixed in with the air around us. Everywhere on Earth there is always at least some water mixed in with the air; in some places, like the desert, it's just a little; in other place, like by the ocean or in a rainforest, it's a lot.

The air can only carry around a limited amount of water vapor (evaporated water, or water in its gas form). At some point, there can be more water vapor than the air can hold, and the water turns into little droplets, which in nature is clouds, fog, or rain.

Just "humidity," also known as "absolute humidity," means "what is the concentration of water vapor (evaporated water) in the air right now?" In other words, it would give you a measurement of how much water you would get if you could take a box of air and squeeze all the water out.

This is expressed in units of mass/volume. So, for example, you could express the absolute humidity as 5 grams per liter (5 g/L) if there were 5 grams of water vapor floating around in every liter of air.

Again, the air can only carry around a limited amount of water vapor. How much it can carry is determined by the atmospheric pressure and the temperature. There is a mathematical equation that lets you figure out the maximum amount of water that the air can carry based on the pressure and temperature. Relative humidity is how much water the air is actually carrying divided by how much water the air could possibly carry. People, especially weather forecasters, usually express this as a percentage. So, if the air in a particular place is carrying exactly half the amount of water that it could theoretically carry, the relative humidity would be 50%. If it were carrying all the water it could theoretically carry, the relative humidity would be 100%. The relative humidity can never be higher than 100% or lower than 0%.

Relative humidity has no units, because it is just a fraction.

So, ways they are alike:

1. They both talk about how much water vapor is mixed with air in a particular place.

Ways they are different:

1. Humidity has units (mass/volume) but relative humidity is just a fraction or percentage.

2. Humidity doesn't care about how much water vapor it's possible for the air to have, but relative humidity does.

3. Humidity doesn't tell you anything about how close the air is to having rain or fog, but relative humidity does.

Specific humidty is the amount of water in unit amount of air by weight

and

Relative humidity is the amount of water in unit amount of air by pressure(partial pressure)
Relative humidity is one means of describing the amount of water in the air. Relative humidity describes the amount of water in the air as that precentage of the total amount air at that temperature should be able to hold.

Absolute humidity describes the amount of water in the air by saying how many grams of water per milliliter of air are present.

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If the absolute pressure of gas is 550.280 kPa it's gage pressure is?

The gauge pressure is the difference between the absolute pressure and atmospheric pressure. If atmospheric pressure is approximately 101.3 kPa, then the gauge pressure would be 448.980 kPa (550.280 kPa - 101.3 kPa).


How do you find gage pressure?

Gauge pressure is calculated by subtracting the atmospheric pressure from the absolute pressure. It is important to note that gauge pressure readings are relative to atmospheric pressure. So, to find gauge pressure, you would subtract the atmospheric pressure from the total pressure reading obtained.


What are the difference between room pressure and absolete pressure?

Room pressure refers to the pressure within a confined space like a room, which may be controlled to prevent contamination or maintain a sterile environment. Absolute pressure, on the other hand, refers to the total pressure within a system including both atmospheric pressure and any additional pressure exerted.


If a gas has a gage pressure of 206 kPa its absolute pressure is?

The absolute pressure can be calculated by adding the atmospheric pressure to the gauge pressure. If the atmospheric pressure is 101.3 kPa, then the absolute pressure of the gas would be 206 kPa + 101.3 kPa = 307.3 kPa.


Why does an air gauge that is connected to water read 3x the pressure that the water gauge read?

An air gauge measures pressure relative to the atmospheric pressure, while a water gauge measures pressure relative to its own density. Water is denser than air, so the air gauge reading will be 3 times higher than the water gauge due to the difference in reference points for each gauge.

Related Questions

What is the difference between absolute and gauge pressure?

Absolute pressure is measured relative to a perfect vacuum, while gauge pressure is measured relative to atmospheric pressure.


What is the difference between gauge pressure and absolute pressure?

Gauge pressure is the pressure measured relative to atmospheric pressure, while absolute pressure is the pressure measured relative to a perfect vacuum.


What is the difference between absolute pressure and gauge pressure?

Absolute pressure is the total pressure exerted by a fluid, including atmospheric pressure. Gauge pressure is the pressure measured above atmospheric pressure.


What are you measuring when you measure air preasure?

The difference in pressure between absolute and gauge pressure.


What is the difference between absolute and gauge pressure measurements?

Absolute pressure measurements include atmospheric pressure as a reference point, while gauge pressure measurements do not account for atmospheric pressure.


What is the difference between gauge pressure and absolute pressure, and how can one accurately gauge pressure in a system using these two measurements?

Gauge pressure is the pressure measured relative to atmospheric pressure, while absolute pressure includes atmospheric pressure as a reference point. To accurately gauge pressure in a system, one can use a gauge that measures gauge pressure and then add the atmospheric pressure to get the absolute pressure. This allows for a more precise measurement of the pressure within the system.


What is the difference between absolute pressure and gage pressure, and how do they relate to each other in terms of measuring pressure?

Absolute pressure is the total pressure exerted by a fluid, including atmospheric pressure. Gauge pressure is the pressure measured relative to atmospheric pressure. They are related by the equation: Absolute pressure Gauge pressure Atmospheric pressure.


What is the difference between normal pressure gauge and differential pressure gauge?

A pressure gauge indicates actual pressure and a differential pressure gauge indicates the difference in pressure.


If the absolute pressure of gas is 550.280 kPa it's gage pressure is?

The gauge pressure is the difference between the absolute pressure and atmospheric pressure. If atmospheric pressure is approximately 101.3 kPa, then the gauge pressure would be 448.980 kPa (550.280 kPa - 101.3 kPa).


Is gauge pressure larger, smaller, or the same as absolute pressure?

Gauge pressure is smaller than absolute pressure.


How do you calculate gauge pressure in a system?

To calculate gauge pressure in a system, subtract the atmospheric pressure from the absolute pressure within the system. Gauge pressure Absolute pressure - Atmospheric pressure.


How do you find gage pressure?

Gauge pressure is calculated by subtracting the atmospheric pressure from the absolute pressure. It is important to note that gauge pressure readings are relative to atmospheric pressure. So, to find gauge pressure, you would subtract the atmospheric pressure from the total pressure reading obtained.