Microwaves are waves of energy. 
Microwaves are tiny waves of energy. 
Microwaves travel in a straight line. They cannot go around hills. They also cannot bounce off the sky. This means they must see where they are going.
Sometimes, the air can stop them. Water in the air can soak up the waves. This can make the signal weak.
We use big dishes to catch them. 
Microwaves are all around us. They help our world work every day.
Microwaves are a type of wave. They are part of the electromagnetic spectrum.
These waves travel in a straight line. They move from one point to another. This is called line-of-sight. They do not go around hills. They also do not bounce off the sky. Because of this, they can only travel as far as you can see. 
Sometimes, the air stops them. Gases in the air can soak up the waves. This is called absorption. Moisture in the air can also cause rain fade. This makes the signal weak. 
Microwaves are a special kind of energy. They are part of the electromagnetic spectrum. This is a big family of waves. Microwaves sit between radio waves and infrared light.
These waves work in a very specific way. They travel in a straight line. Scientists call this line-of-sight. This means they move where they can see. Unlike radio waves, they do not bend around hills. They also do not bounce off the sky. This makes it hard to send them over long distances. They are limited by the visual horizon of the Earth. 
People have used these waves for many years. A famous system of naming waves started in World War 2. It was a top-secret way for the U.S. to label radar. This became the IEEE radar band system. It uses letters like S, C, X, Ku, and Ka.
There are many important facts about microwave bands. The S band goes from 2 to 4 GHz. It is used for things like Bluetooth and Wi-Fi. The X band goes from 8 to 12 GHz. It is great for satellite and space communication. 
You probably use microwaves every single day. They are in your kitchen to cook food. A magnetron is a part that makes these waves. 

Microwaves are a specific form of electromagnetic radiation. They occupy a unique place within the electromagnetic spectrum. This spectrum includes everything from long radio waves to short gamma rays. Microwaves sit between ordinary radio waves and infrared light.
Understanding how microwaves move is essential for engineering. Unlike lower frequency radio waves, microwaves travel via line-of-sight paths. They do not diffract, which means they cannot bend around hills or obstacles. They also do not follow the Earth's surface as ground waves. Furthermore, they do not reflect off the ionosphere like skywaves do. 
Engineers categorize microwave frequencies into specific bands. These designations often use letters to identify different ranges. One common system is the IEEE radar band designations. These include the S, C, X, Ku, K, and Ka bands. Another system used by the Radio Society of Great Britain (RSGB) provides even more detail. For example, the S band ranges from 2 to 4 GHz. This band is used for weather radar, Bluetooth, and Wi-Fi. The X band ranges from 8 to 12 GHz and is used for satellite communications. The Ku band covers 12 to 18 GHz, while the Ka band spans 26.5 to 40 GHz. These specific bands allow different technologies to work without interfering with one another.
History shows how our understanding of these bands has evolved. During World War 2, the U.S. used a top-secret classification system for radar bands. This became the foundation for the modern letter-based system. Scientists also discovered a problem while developing radar at the K band. They realized that water vapor and oxygen in the atmosphere absorb certain frequencies. To solve this, they split the original K band into two parts. They created the lower Ku band and the upper Ka band to avoid these atmospheric absorption issues.
Microwaves are used in a vast array of modern technologies. In your kitchen, a device called a magnetron generates waves to cook food. 
Because of their short wavelengths, microwave antennas can be very small. This is why your cell phone can have a tiny antenna inside it. 

Moving microwaves requires specialized hardware. At low frequencies, engineers use coaxial cables. However, at microwave frequencies, these cables lose too much power. Instead, engineers use metal pipes called waveguides to carry the signals. 
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