Showing posts with label Thermometers. Show all posts
Showing posts with label Thermometers. Show all posts

Friday, February 5, 2021

HOW A THERMOMETER MEASURES AIR TEMPERATURE - A thermometer -- an instrument used to measure air temperature—easily tells us this, but how it tells us is another question entirely. To understand how a thermometer works, we need to keep one thing in mind from physics: that a liquid expands in volume (the amount of space it takes up) when its temperature warms and decreases in volume when its temperature cools. When a thermometer is exposed to the atmosphere, the surrounding air's temperature will permeate it, eventually balancing the thermometer's temperature with its own — a process whose fancy scientific name is "thermodynamic equilibrium." If the thermometer and it's inside liquid must warm to reach this equilibrium, the liquid (which will take up more space when warmed) will rise because it is trapped inside of a narrow tube and has nowhere to go but up. Likewise, if the thermometer's liquid must cool to reach the air's temperature, the liquid will shrink in volume and lower down the tube. Once the thermometer's temperature balances that of the surrounding air, its liquid will stop moving. The physical rise and fall of the liquid inside of a thermometer is only part of what makes it work. Yes, this action tells you that a temperature change is occurring, but without a numerical scale to quantify it, you'd be unable to measure just what the temperature change is.

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How Does a Thermometer Measure Air Temperature?

By Tiffany Means


 

How warm is it outside?

How cold will it be tonight?

A thermometer -- an instrument used to measure air temperature—easily tells us this, but how it tells us is another question entirely.

To understand how a thermometer works, we need to keep one thing in mind from physics: that a liquid expands in volume (the amount of space it takes up) when its temperature warms and decreases in volume when its temperature cools.

When a thermometer is exposed to the atmosphere, the surrounding air's temperature will permeate it, eventually balancing the thermometer's temperature with its own — a process whose fancy scientific name is "thermodynamic equilibrium."

If the thermometer and it's inside liquid must warm to reach this equilibrium, the liquid (which will take up more space when warmed) will rise because it is trapped inside of a narrow tube and has nowhere to go but up.

Likewise, if the thermometer's liquid must cool to reach the air's temperature, the liquid will shrink in volume and lower down the tube.

Once the thermometer's temperature balances that of the surrounding air, its liquid will stop moving.

The physical rise and fall of the liquid inside of a thermometer is only part of what makes it work.

Yes, this action tells you that a temperature change is occurring, but without a numerical scale to quantify it, you'd be unable to measure just what the temperature change is.

In this way, the temperatures attached to a thermometer's glass play a key (albeit passive) role.

Who invented it: Fahrenheit or Galileo?

When it comes to the question of who invented the thermometer, the list of names is endless.

That's because the thermometer developed from a compilation of ideas through the 16th to 18th centuries, starting in the late 1500s when Galileo Galilei developed a device using a water-filled glass tube with weighted glass buoys that would float high in the tube or sink depending on the hotness or coldness of air outside of it (sort of like a lava lamp). His invention was the world's first "thermoscope."

In the early 1600s, Venetian scientist and friend to Galileo, Santorio, added a scale to Galileo's thermoscope so that the value of temperature change could be interpreted.

In doing so, he invented the world's first primitive thermometer.

The thermometer didn't take on the shape we use today until Ferdinando I de' Medici redesigned it as a sealed tube having a bulb and stem (and filled with alcohol) in the mid-1600s.

Finally, in the 1720s, Fahrenheit took this design and "bettered it" when he began using mercury (instead of alcohol or water) and fastened his own temperature scale to it.

By using mercury (which has a lower freezing point, and whose expansion and contraction is more visible than water's or alcohol's), Fahrenheit's thermometer allowed temperatures below freezing to be observed and more precise measurements to be observed.

And so, Fahrenheit's model was accepted as the best.

What kind of weather thermometer do you use?

Including Fahrenheit's glass thermometer, there are 4 main types of thermometers used to take air temperatures:

Liquid-in-glass. Also called bulb thermometers, these basic thermometers are still used in Stevenson Screen weather stations nationwide by National Weather Service Cooperative Weather Observers when taking the daily maximum and minimum temperature observations.

They're made of a glass tube (the "stem") with a round chamber (the "bulb") at one end that houses the liquid used to measure the temperature.

As the temperature changes, the volume of liquid either expands, causing it to climb up into the stem; or contracts, forcing it to shrink back down out of the stem toward the bulb.

Hate how fragile these old-fashioned thermometers are?

Their glass is actually made very thin on purpose. The thinner the glass, the less material there is for the heat or cold to pass through, and the quicker the liquid responds to that heat or cold — that is, there's less lag.

Bi-metallic or spring. The dial thermometer mounted on your house, barn, or in your backyard is a type of bi-metal thermometer. (Your oven and refrigerator thermometers and furnace thermostat are other examples, too.)

It uses a strip of two different metals (usually steel and copper) which expand at different rates to sense temperatures.

The metals' two different expansion rates force the strip to bend one way if heated above its initial temperature, and in the opposite direction if cooled below it.

The temperature can be determined by how much the strip/coil has bent.

Thermoelectric. Thermoelectric thermometers are digital devices that use an electronic sensor (called a "thermistor") to generate an electric voltage.

As the electric current travels along a wire, its electrical resistance will change as temperature changes.

By measuring this change in resistance the temperature can be calculated. 

Unlike their glass and bi-metallic cousins, thermoelectric thermometers are rugged, respond fast, and don't need to be read by human eyes, which makes them perfect for automated use.

That's why they're the thermometer of choice for automated airport weather stations. (The National Weather Service uses data from these AWOS and ASOS stations to bring you your current local temperatures.)

Wireless personal weather stations also use the thermoelectric technique.

Infrared. Infrared thermometers are able to measure the temperature at a distance by detecting how much heat energy (in the invisible infrared wavelength of the light spectrum) an object gives off and calculating a temperature from it.

Infrared (IR) satellite imagery — which shows the highest and coldest clouds as a bright white, and low, warm clouds as gray — can be thought of as a kind of cloud thermometer.

Now that you know how a thermometer works, watch it closely at these times each day to see what your highest and lowest air temperatures will be.

Tiffany Means

Meteorology Expert

Education

B.S., Atmospheric Sciences and Meteorology, University of North Carolina

Introduction

Studied atmospheric sciences and meteorology at the University of North Carolina

Former administrative assistant for the National Oceanic and Atmospheric Administration

Member of the American Meteorological Society

Experience

Tiffany Means is a former writer for ThoughtCo who contributed articles about weather for five years. She has interned with the domestic and international weather departments at CNN, written monthly climate reports for NOAA’s National Centers for Environmental Prediction, and participated in a number of science outreach events, including the Science Olympiad Competition. Means has personally experienced such weather greats as the Blizzard of 1993 and the floods of Hurricane Francis (2004) and Ivan (2004).

Education

Bachelor's degree in atmospheric sciences and meteorology from the University of North Carolina at Asheville

ThoughtCo and Dotdash

ThoughtCo is a premier reference site focusing on expert-created education content. We are one of the top-10 information sites in the world as rated by comScore, a leading Internet measurement company. Every month, more than 13 million readers seek answers to their questions on ThoughtCo.

For more than 20 years, Dotdash brands have been helping people find answers, solve problems, and get inspired. We are one of the top-20 largest content publishers on the Internet according to comScore, and reach more than 30% of the U.S. population monthly. Our brands collectively have won more than 20 industry awards in the last year alone, and recently Dotdash was named Publisher of the Year by Digiday, a leading industry publication.

https://www.thoughtco.com/how-does-a-thermometer-work-3444248


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https://puricare.blogspot.com/2017/10/ambient-air-temperature-it-simply-tells.html

Thursday, December 24, 2020

WHAT IS HUMIDITY? - How is it measured?- Easily stated humidity is simply the amount of water vapor held in the air. Water vapor is the gaseous state of water. As the temperature of the air increases more water vapor can be held since the movement of molecules at higher temperatures prevents condensation from occurring. There are three main measurements of humidity: relative, absolute and specific. Absolute humidity (units are grams of water vapor per cubic meter volume of air) is a measure of the actual amount of water vapor in the air, regardless of the air's temperature. The higher the amount of water vapor, the higher the absolute humidity. For example, a maximum of about 30 grams of water vapor can exist in a cubic meter volume of air with a temperature in the middle 80s. Relative humidity, expressed as a percent, is a measure of the amount of water vapor that air is holding compared the amount it can hold at a specific temperature. Warm air can possess more water vapor (moisture) than cold air, so with the same amount of absolute/specific humidity, air will have a higher relative humidity. A relative humidity of 50% means the air holds on that day (specific temperature) holds 50% of water needed for the air to be saturated. Saturated air has a relative humidity of 100%. The relative humidity of an air-water mixture is also defined as the ratio of the partial pressure of water vapor in the mixture to the saturated vapor pressure of water at a given temperature (See what is vapor pressure). Thus the relative humidity of air is a function of both water content and temperature. Specific humidity refers to the weight of water vapor contained in a unit weight of air.

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Sper Scientific Sling Psychrometer to Measure Humidity 
 Top is wet bulb -- Bottom is dry bulb

What is  humidity?

How is it measured?

edinformatics.com


 

What is Humidity?

Easily stated humidity is simply the amount of water vapor held in the air.

Water vapor is the gaseous state of water.

As the temperature of the air increases more water vapor can be held since the movement of molecules at higher temperatures prevents condensation from occurring.

There are three main measurements of humidity: relative, absolute and specific.

Absolute humidity (units are grams of water vapor per cubic meter volume of air) is a measure of the actual amount of water vapor in the air, regardless of the air's temperature.

The higher the amount of water vapor, the higher the absolute humidity.

For example, a maximum of about 30 grams of water vapor can exist in a cubic meter volume of air with a temperature in the middle 80s.

Relative humidity, expressed as a percent, is a measure of the amount of water vapor that air is holding compared the amount it can hold at a specific temperature.

Warm air can possess more water vapor (moisture) than cold air, so with the same amount of absolute/specific humidity, air will have a higher relative humidity.

A relative humidity of 50% means the air holds on that day (specific temperature) holds 50% of water needed for the air to be saturated.

Saturated air has a relative humidity of 100%.

The relative humidity of an air-water mixture is also defined as the ratio of the partial pressure of water vapor in the mixture to the saturated vapor pressure of water at a given temperature (See what is vapor pressure).

Thus the relative humidity of air is a function of both water content and temperature.

Specific humidity refers to the weight of water vapor contained in a unit weight (amount) of air (expressed as grams of water vapor per kilogram of air).

Absolute and specific humidity are quite similar in concept.

What is Dew Point?

Dew Point is the temperature at which air is saturated with water and condensation begins. The higher the dew point rises, the greater the amount of moisture in the air.

What is the relationship between Dew Point and Relative Humidity?

Compared to relative humidity, dew point is frequently cited as a more accurate way of measuring the humidity and comfort of the air, since it is an absolute measurement (unlike relative humidity).

The relative humidity is 100 percent when the dew point and the temperature are the same.

If the temperature drops any further, condensation will result, and liquid water will begin to form.

If the relative humidity is 100 percent (i.e., dew point temperature and actual air temperature are the same), this does not necessarily mean that precipitation will occur.

It simply means that the maximum amount of moisture is in the air at the particular temperature the air is at.

Saturation may result in fog on the ground and clouds aloft (which consist of tiny water droplets suspended in the air).

While dew point gives one a quick idea of moisture content in the air, relative humidity does not since the humidity is relative to the air temperature.

In other words, relative humidity cannot be determined from knowing the dew point alone, the actual air temperature must also be known.

Relative humidity is also approximately the ratio of the actual to the saturation vapor pressure.

RH = (Actual Vapor Pressure) / (Saturation Vapor Pressure) X 100%

Where actual vapor pressure is a measurement of the amount of water vapor in a volume of air, and increases as the amount of water vapor increases.

Saturated vapor pressure is the maximum VP that can exist at any given temperature.

Air which is at 100% relative humidity (RH) contains water vapor whose VP is its SVP at the given temperature. This corresponds to air which is in equilibrium with liquid water.

RH is the ratio VP/SVP expressed as a percentage. 'Dry' air will contain water vapor with a VP which is less than the SVP at the given temperature.

How is humidity measured?

A device to measure relative humidity is called a hygrometer.

The simplest hygrometer - a sling psychrometer - consists of two thermometers mounted together with a handle attached on a chain.

One thermometer is ordinary. The other has a cloth wick over its bulb and is called a wet-bulb thermometer.

How does a psychrometer measure relative humidity?

A psychrometer also called a sling psychrometer has two thermometers attached.

One is dry (often called the dry bulb thermometer) and measures the actual air temperature.

The other called the wet bulb thermometer has a wet cloth at the tip.

As water molecules evaporate from the surface of the wet bulb they will take heat with them lowering the reading on the thermometer.

The rate of evaporation depends on the vapor pressure or amount of water vapor in the air.

At 100% relative humidity no water will evaporate from the wet bulb and the readings on both thermometers will be the same.

Comparing the two temperatures in a chart will give the relative humidity.

ABOUT THE EDINFORMATICS SCIENCE CHALLENGE

Intermediate school is designed to provide a strong foundation for students in science in order to prepare them for the high school science sequence consisting of biology, chemistry and physics. Although there is some controversy that students are being over-tested on a yearly basis, an eighth grade science test should remain a cornerstone in science assessment.

https://www.edinformatics.com/math_science/what-is-humidity.html


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Monday, November 2, 2020

INFRARED THERMOMETERS - Infrared thermometers measure temperature from a distance. This distance can be many miles or a fraction of an inch. Infrared thermometers are often used in circumstances when other sorts of thermometers are not practical. If an object is very fragile or dangerous to be near, for example, an infrared thermometer is a good way to get a temperature from a safe distance. Infrared thermometers work based on a phenomenon called black body radiation. Anything at a temperature above absolute zero has molecules inside of it moving around. The higher the temperature, the faster the molecules move. As they move, the molecules emit infrared radiation -- a type of electromagnetic radiation below the visible spectrum of light. As they get hotter, they emit more infrared, and even start to emit visible light. That is why heated metal can glow red or even white. Infrared thermometers detect and measure this radiation. Infrared light works like visible light -- it can be focused, reflected or absorbed. Infrared thermometers usually use a lens to focus infrared light from one object onto a detector called a thermopile. The thermopile absorbs the infrared radiation and turns it into heat. The more infrared energy, the hotter the thermopile gets. This heat is turned into electricity. The electricity is sent to a detector, which uses it to determine the temperature of whatever the thermometer is pointed at. The more electricity, the hotter the object is. Ear thermometers are infrared thermometers. The ear drum has about the same temperature as the inside of the body, but it is very sensitive.

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Infrared Thermometers

How Do Infrared Thermometers Work?

By Isaiah David

 

Infrared Thermometer Basics

Infrared thermometers measure temperature from a distance. This distance can be many miles or a fraction of an inch.

Infrared thermometers are often used in circumstances when other sorts of thermometers are not practical.

If an object is very fragile or dangerous to be near, for example, an infrared thermometer is a good way to get a temperature from a safe distance.

What Infrared Thermometers Do

Infrared thermometers work based on a phenomenon called black body radiation.

Anything at a temperature above absolute zero has molecules inside of it moving around. The higher the temperature, the faster the molecules move.

As they move, the molecules emit infrared radiation -- a type of electromagnetic radiation below the visible spectrum of light.

As they get hotter, they emit more infrared, and even start to emit visible light. That is why heated metal can glow red or even white.

Infrared thermometers detect and measure this radiation.

How Infrared Thermometers Work

Infrared light works like visible light -- it can be focused, reflected or absorbed.

Infrared thermometers usually use a lens to focus infrared light from one object onto a detector called a thermopile.

The thermopile absorbs the infrared radiation and turns it into heat. The more infrared energy, the hotter the thermopile gets.

This heat is turned into electricity. The electricity is sent to a detector, which uses it to determine the temperature of whatever the thermometer is pointed at.

The more electricity, the hotter the object is.

Infrared Thermometer Uses

Ear thermometers are infrared thermometers. The ear drum has about the same temperature as the inside of the body, but it is very sensitive.

Touching the ear drum could damage it, so an infrared thermometer measures its temperature from close by -- less than an inch away.

Infrared thermometers are also used by fire fighters to detect "hot spots" where the fire is burning fiercely.

They are even used in manufacturing.

Infrared thermometers can help control the machines that put together delicate, temperature sensitive products like electronics to make sure the components are not accidentally damaged.

Isaiah David is a freelance writer and musician living in Portland, Ore. He has over five years experience as a professional writer and has been published on various online outlets. He holds a degree in creative writing from the University of Michigan.

https://sciencing.com/infrared-thermometers-work-4965130.html


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