Knowra Levitation (physics) Levitation (physics) Levitation is the suspension of an object against gravity without visible mechanical support. It occurs when forces such as magnetism, sound, or electrostatics balance the object's weight.
Magnetic levitation : Suspension of an object by magnetic forces that counteract gravity. Magnetic fields can support objects through attraction, repulsion, or induced currents.
Gravitational force : The attractive interaction between masses, responsible for an object's weight near Earth. Levitation must provide an opposing force equal to the object's weight.
Maglev train : A train that uses magnetic forces for suspension and, in many designs, propulsion. It scales magnetic levitation to carry vehicles along a guideway.
Buoyancy : The upward force exerted by a fluid on an immersed or floating object. Floating can look like levitation, but it depends on support from a surrounding fluid.
Acoustic levitation : Suspension of small objects using forces from intense sound waves. Acoustic radiation pressure can balance gravity without magnetic or electrical charge.
Normal force : A contact force exerted by a surface perpendicular to that surface. Ordinary support comes from contact, unlike the noncontact forces used in levitation.
Diamagnetic levitation : Suspension produced when a diamagnetic material is repelled by a magnetic field gradient. It can levitate small objects, including water-rich biological samples, without active feedback.
Aerodynamic lift : An aerodynamic force perpendicular to fluid flow that can support an aircraft in flight. Flight balances weight through moving air and is not usually called levitation.
Electrostatic levitation : Suspension of a charged object by electric forces from applied fields. Electric fields supply the upward force, often with active control to stabilize the object.
Magnetic field : A field produced by magnets, electric currents, and changing electric fields that acts on magnetic materials and moving charges. Its spatial pattern determines the strength and direction of magnetic support.
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