A radio catches waves in the air. 
A radio is a special tool. 
A radio receiver is a tool that catches waves. 

First, an antenna catches the waves. An antenna is a metal part. It turns the waves into tiny electrical currents. But many waves hit the antenna at once.
Next, the receiver uses a bandpass filter. This part lets only one station pass through. It blocks all the other signals. This helps the radio stay on one station.
Then, the signal goes to an amplifier. An amplifier makes the signal much stronger.
Finally, the receiver uses a demodulator. A demodulator is a part that pulls the information out.
A radio receiver is an amazing electronic tool. It catches invisible radio waves moving through the air. 

How does a receiver work? It starts with an antenna made of metal.
Different types of radio signals need different tools. An AM receiver uses an envelope detector to find sound.
Radio signals change based on where they travel. AM waves can follow the curve of the Earth. This lets them travel hundreds of miles to reach you.
We use radio receivers every single day. You might hear one in a simple clock radio. 
A radio receiver is an electronic device designed to capture radio waves. 

The process begins with an antenna made of metal conductors.
Once the signal enters the receiver, it must undergo bandpass filtering. Many different radio signals pass through the air at the same time. Each transmitter uses a different frequency to keep signals separate. A bandpass filter allows only the desired frequency to pass through. It blocks all other unwanted signals. This filter uses resonant circuits to achieve this goal. When the signal matches the resonant frequency, the circuit has high impedance. This allows the signal to move to the next stage. At other frequencies, the circuit has low impedance and sends signals to the ground.
To select a specific station, a user must "tune" the receiver. Tuning involves adjusting the receiver's passband to match the transmitter's frequency. This is often done by turning a knob or using a digital display. The width of the frequency range allowed through is called the bandwidth. A filter must be wide enough to let the signal's sidebands pass. However, it must be narrow enough to maintain selectivity. Selectivity is the ability to reject nearby unwanted stations. Modern devices often use quartz crystals or ceramic resonators for sharper selectivity.
Because radio waves lose strength over distance, the signal is often very weak. Even powerful stations may only deliver picowatts or femtowatts to an antenna. An amplifier is used to increase the signal's power.
The final major step is demodulation, which extracts the information from the carrier wave.
Radio waves behave differently depending on their frequency and type. AM broadcast waves travel as ground waves that follow the Earth's contour. This allows them to reach distances of hundreds of miles. FM signals behave differently because they travel by line of sight. This means they generally cannot travel beyond the visual horizon. Their range is often limited to about 40 miles or 64 kilometers. Hills and other geography can also block FM signals. However, FM offers higher fidelity and less interference than AM. This makes FM better for music, while AM is often used for news and talk radio.
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