Radio sends sound through the air. 
Radio sends sound through the air. 
In the 1920s, it became very popular. 
This was a special time called the Golden Age. Radio was the main way to listen. Then, people started using TV.
AM radio can travel a long way. It works well at night. 
Today, we have many new ways to hear things. But AM radio is still used. It is a very old tool.
AM radio was the first way to send sound through the air. 
Early radio used dots and dashes called Morse code. It was hard to send voices at first. An inventor named Reginald Fessenden helped fix this. He used a machine called an alternator. This made a steady signal. He could then add sound to that signal. In 1906, he sent speech 18 kilometers to a listening site. 
AM radio became very popular in the 1920s. 
AM signals can travel very long distances at night. This happens because they can bounce off the sky. 
AM broadcasting is a way to send sound through the air using radio waves. It uses a method called amplitude modulation, which is why we call it AM. This was the very first way people learned to broadcast audio signals. Today, it is still used all over the world. Most people hear AM on the medium wave band. It also works on the longwave and shortwave bands. 
To understand how it works, we look at the radio wave itself. Early radio used spark-gap transmitters to send Morse code dots and dashes. These signals were bumpy and could not carry clear voices. An inventor named Reginald Fessenden found a better way. He used a machine called an alternator to create a steady, continuous wave. He then used a carbon microphone to change the strength of that wave. This process is called modulation. The wave carries the sound to the listener. 
People have been working on these ideas for a long time. In 1901, Fessenden applied for a patent for his new method. By 1906, he gave a big demonstration in Brant Rock, Massachusetts. He sent speech 18 kilometers to a site in Plymouth, Massachusetts. This was a huge step for wireless technology. In the 1920s, new vacuum tube tools made broadcasting much easier. This helped radio move from experiments to something everyone could use. 
Radio changed how people lived during a time called the "Golden Age of Radio." This lasted for about 30 years until the 1950s. During this time, AM radio was the main way to hear news and music. Families often sat together to listen to programs. 
AM radio has some very special traits. It is more expensive to run because it needs high power. It also requires very large antennas because of the low frequencies. However, AM signals can travel very long distances at night. This happens because the signals can bounce off the ionosphere in the sky. 

AM broadcasting is a method of radio communication that uses amplitude modulation. This technique allows for the transmission of audio signals, such as speech and music, through the air via radio waves. It was the very first method developed for making audio radio transmissions. Today, it remains in use worldwide. Most AM transmissions occur on the medium wave band. However, the technology is also used on longwave and shortwave radio bands. 
To understand how AM works, we must look at the process of modulation. Early radio technology used spark-gap transmitters to send Morse code. These produced discontinuous pulses known as damped waves. These waves were impractical for carrying clear audio. An inventor named Reginald Fessenden realized that a steady signal was required. He sought to create continuous wave transmissions. By using a high-speed alternator, he could generate steady waves. He then used a carbon microphone to modulate the carrier wave. Modulation means changing the strength of the wave to reflect sound. This allows the wave to carry audio information to a receiver. 
The development of AM technology involved several important stages and components. Initially, researchers used high-frequency spark transmitters as a temporary measure. Fessenden found that higher spark rates produced waves closer to continuous waves. Later, the development of the alternator-transmitter provided a more stable solution. This machine used an alternating-current dynamo to produce pure sine waves. In 1906, Ernst F. W. Alexanderson improved this model. His version operated at a frequency of approximately 50 kHz. Although it was low power, it successfully transmitted quality audio signals. 
The history of broadcasting is marked by several key milestones and inventors. In 1901, Fessenden applied for a patent for his continuous-wave method. In the fall of 1900, he reportedly transmitted speech over 1.6 kilometers. This is considered one of the first successful audio transmissions using radio signals. On December 21, 1906, Fessenden conducted a major demonstration in Brant Rock, Massachusetts. He transmitted speech 18 kilometers to a site in Plymouth, Massachusetts. Widespread broadcasting did not truly begin until the 1920s. This was made possible by the invention of vacuum tube receivers and transmitters. 
AM radio experienced a period of immense influence known as the "Golden Age of Radio." This era lasted for approximately 30 years. During this time, AM was the dominant method for broadcasting. It remained the primary medium until the 1950s. At that time, television broadcasting became widespread. Television began to take much of the programming that previously belonged to radio. Since then, AM audiences have declined significantly. They face heavy competition from FM radio and digital radio. Other competitors include satellite radio, internet radio, music streaming, and podcasting. 
AM broadcasting has specific technical characteristics that affect its use today. Transmitting AM signals can be more expensive than FM or digital transmissions. This is because stations must transmit a high power carrier wave. This high power is necessary to overcome ground losses. Additionally, the low broadcast frequencies require very large antenna radiators. Despite these costs, AM has a unique advantage. Signals can be sent over very long distances at night. This happens because the waves can travel via the ionosphere. 
Because of its technical nature, AM radio is often used for specific types of content. AM transmissions are more susceptible to interference than other methods. They also often have lower audio fidelity, which refers to sound quality. Because of this, music formats are usually reserved for FM and digital stations. Most AM broadcasters now specialize in spoken-word formats. Common examples include talk radio, all-news radio, and sports radio. This allows the medium to remain useful even in a world of high-fidelity digital sound.
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