
Maglev | Facts, Operation, & Systems | Britannica
Dec 17, 2025 · A maglev is a floating vehicle for land transportation that is supported by either electromagnetic attraction or repulsion. Maglevs use magnetic forces—like poles repel each other, …
Maglev - Wikipedia
Maglev train systems use powerful electromagnets to float the trains over a guideway, instead of the old steel wheel and track system. A system called electromagnetic suspension suspends, guides, and …
How Maglev Trains Work - HowStuffWorks
In the 21st century there are a few countries using powerful electromagnets to develop high-speed trains, called maglev trains. These trains float over guideways using the basic principles of magnets …
How Maglev Works - Department of Energy
Jun 14, 2016 · In Maglev, superconducting magnets suspend a train car above a U-shaped concrete guideway. Like ordinary magnets, these magnets repel one another when matching poles face each …
Maglev Trains - Physics Book
Dec 5, 2015 · Maglev trains are high-speed trains that use principles of electromagnetism as well as electromagnetic propulsion to run.
Maglev trains use magnetic forces to create a cushion of space between a vehicle and its guideway, reducing friction and permitting top speeds in excess of 300 miles per hour, which are not achievable …
Maglev train - New World Encyclopedia
Magnetic levitation transport, or maglev, is a form of transportation that suspends, guides and propels vehicles (particularly trains) through the harnessing of electromagnetic force.
How maglev trains work – and why they’re so fast - YouTube
6 days ago · China recently ran a test of a maglev train which reached speeds of 700 km/h. Watch this short animation explaining how maglev trains work. #maglev #aerospac...
Magnetic levitation trains, or maglev trains, are high-speed AI-enhanced trains that move by gliding above dedicated magnetic guideways without making any contact with the tracks.
China’s Astonishing Maglev Train Is Faster Than Most Planes
Jul 13, 2025 · Maglev technology uses opposing magnetic fields to lift the train off its track, which reduces friction and allows for smoother, quieter, and faster movement.