Skip to main content
superconductor

superconductor

10 6.4
A material that carries electricity without losing energy as heat when very cold
  • noun
  • /ˌsuːpərkənˈdʌktər/
  • Specialized
translation icon : superconductor
  • Now you cool it down so that becomes a superconductor and you draw out the magnet.
  • high-temperature superconductors
  • superconductors from materials

So talking about like a new framework that's in my mind is around these room temp superconductors.

Autoplay Next

Examples

  • I own a company that dominates the world market for superconductors.

  • The superconductors have to be chilled to 270 below to work.

  • For example, imagine you could make a, a material called the superconductor that works at high temperatures.

  • Without the superconductor, they could be fried by the next solar storm.

    Fiction book (2001)
  • In a superconductor, electrons can pair up and bind together in the superconductor, very weakly bound pairs.

  • A few years ago, a new family of magnetic superconductors was discovered: the RNi2B2C series.

    Academic text (1998)
  • The trio is being recognized for their "pioneering contributions to the theory of superconductors and superfluids."

    Academic text (2003)
  • When certain materials are cooled below a critical temperature, they become superconductors, with zero electrical resistance.

  • Building practical power devices with high-temperature superconductors entailed making them into suitable wire.

  • The superconductors have to be chilled to 270 below to work.

How Conductive

superconductor
  • Specialized
10 6.4
conductor
  • Specialized
14 3.9
insulator
  • Specialized
5 4.7

Surface Forms

Morphology

superconductor = conductor (semi-transparent) = super + conductor

The components 'super' + 'conductor' clearly indicate an enhanced or exceptional conductor, but the precise scientific meaning (zero electrical resistance below a critical temperature) is specialized and not fully derivable by a general learner.

Etymology

Superconductor comes from super- meaning 'above' or 'beyond' and conduct meaning 'to carry' or 'to lead'. So a superconductor is a material that 'carries' electricity in an 'above' way, letting current flow with no resistance and so not losing energy as heat.