A metal detector finds metal. 
A metal detector finds metal.
It has a handle and a box. A coil at the end sends out a field. This field is like an invisible force. 
When the coil gets near metal, it makes a change. The box hears this change. It might make a sound or a light. 
People use them to find lost treasure. They also find metal in food. Some find metal in walls or floors.
These tools help keep us safe. They find weapons at airports. They also find old bombs in the ground.
A metal detector is a tool used to find metal. 
People use these tools for many jobs. Some use them to find buried treasure. Others use them to find old bombs in the ground. 

A metal detector is a special tool used to find metal. 
To understand how it works, we can look at the science of magnets. A simple detector uses an oscillator to send an alternating current through the coil. This creates an alternating magnetic field around the coil. When a piece of metal is nearby, it creates tiny electric currents called eddy currents. These eddy currents make the metal produce its own magnetic field. A second coil, called a magnetometer, measures this change in the field. This is how the machine knows something is there. 
People have been trying to find metal for a very long time. In 1841, Professor Heinrich Wilhelm Dove made a device called a differential inductor. He used glass tubes and copper wire to find metal. Later, in 1881, Alexander Graham Bell tried to find a bullet in President James Garfield. He used a special coil, but the metal bed the President lay on confused the machine. In 1915, Professor Camille Gutton made a device to find unexploded shells in France. 
Modern metal detectors became much better in the 1920s. Gerhard Fischer used radio waves to help design electronic detectors. In 1925, he was granted a patent for an electronic version. Another man named Shirl Herr also worked on hand-held detectors. During World War II, a Polish officer named Józef Stanisław Kosacki made a practical mine detector. His design was very important for many battles. It helped soldiers clear dangerous minefields safely. 
Today, we see metal detectors in many places. You might walk through a large one at an airport to keep people safe. 
A metal detector is a specialized instrument designed to sense the presence of metal nearby. These devices are essential tools for locating objects on the surface, underground, or underwater. They are used in many different ways to keep people safe or to find interesting items. For example, security teams use them at airports, courthouses, and prisons to find concealed weapons. 
To understand how a metal detector works, we must look at the relationship between electricity and magnetism. A simple detector uses an oscillator to create an alternating current. This current flows through a pickup coil, which is a loop of wire. As the current moves, it produces an alternating magnetic field around the coil. When this coil passes near an electrically conductive metal, it triggers a reaction called induction. 
This induction process creates what are known as eddy currents within the metal object. These eddy currents are small loops of electric current that move inside the metal. Because these currents are moving, they produce their own magnetic field. A second coil, acting as a magnetometer, measures the changes in the magnetic field caused by the metal. Once this change is detected, the control box sends a signal to the user. This signal might be a tone, a light, or a moving needle.
Modern machines often use a more advanced method called a tunable induction system. This system uses two coils that are electro-magnetically tuned to specific frequencies. One coil acts as a transmitter of radio frequency (RF) signals, while the other acts as a receiver. These machines can often be tuned to frequencies between 3 and 100 kHz. This tuning allows the device to use discrimination, which is the ability to tell different metals apart. This is possible because every metal has a different phase response when exposed to alternating current.
Discrimination works by choosing different wave lengths for different tasks. Longer waves, or low frequencies, can penetrate deeper into the ground. These are best for finding high-conductivity targets like silver or copper. Shorter waves, or higher frequencies, do not go as deep but are better at selecting low-conductivity targets like iron. However, using high frequencies can make the machine more sensitive to minerals in the ground. This can make it difficult to distinguish between a valuable find and a piece of scrap metal. 
The history of these devices is filled with scientific discovery and wartime necessity. Early ideas for detecting metal date back to around 1830. In 1841, Professor Heinrich Wilhelm Dove invented a "differential inductor" using glass tubes and copper coils. In the 1860s, doctors even used simple probes to find bullets in wounded soldiers. Alexander Graham Bell attempted to find a bullet in President James Garfield in 1881. He used a 2-coil induction balance, which later evolved into the popular "double D" coil used today.
Significant progress occurred during the 20th century. In 1925, Gerhard Fischer was granted a patent for an electronic metal detector. Later, during World War II, a Polish officer named Józef Stanisław Kosacki developed a practical mine detector. His design was so effective that 500 units were used by Field Marshal Montgomery during the Second Battle of El Alamein. These devices helped soldiers clear dangerous minefields during the invasions of Sicily, Italy, and Normandy. 
Today, metal detectors are highly advanced and often fully computerized. They use integrated circuit technology to allow users to control many settings. You can adjust the sensitivity, track speed, and even use notch filters to ignore certain metals. Many modern models are much lighter and use less battery power than older versions. Some even include wireless technology for earphones, GPS to track where items were found, or Bluetooth to connect to smartphone applications.
🖼️ Images & Media (5)
More to explore
✨ What else?
Related topics you might enjoy
🔬 Go deeper
More advanced topics to explore
🪜 Step back
Simpler topics to build understanding
What is Nepedia?
A free, ad-free encyclopedia for children. Every article is written at five reading levels, so the same page works for a five-year-old and a fifteen-year-old — use the level switcher above to see this one change. No account needed to read.