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  2. Birkeland current - Wikipedia

    en.wikipedia.org/wiki/Birkeland_current

    Birkeland currents are also one of a class of plasma phenomena called a z-pinch, so named because the azimuthal magnetic fields produced by the current pinches the current into a filamentary cable. This can also twist, producing a helical pinch that spirals like a twisted or braided rope, and this most closely corresponds to a Birkeland current.

  3. Magnetization - Wikipedia

    en.wikipedia.org/wiki/Magnetization

    Accordingly, physicists and engineers usually define magnetization as the quantity of magnetic moment per unit volume. [1] It is represented by a pseudovector M . Magnetization can be compared to electric polarization , which is the measure of the corresponding response of a material to an electric field in electrostatics .

  4. Biconic cusp - Wikipedia

    en.wikipedia.org/wiki/Biconic_cusp

    The magnetic fields in this system were made by electromagnets placed close together. This was a theoretical construct used to model how to contain plasma. The fields were made by two coils of wire facing one another. These electromagnets had poles which faced one another and in the center was a null point in the magnetic field. This was also ...

  5. Scientists unlock mysteries of magnetars, the most magnetic ...

    www.aol.com/news/star-could-form-super-magnetic...

    A new study reveals a brand new type of star that could be key to understanding the formation of magnetars, a bizarre and perplexing celestial phenomenon.

  6. Pitch angle (particle motion) - Wikipedia

    en.wikipedia.org/wiki/Pitch_angle_(particle_motion)

    It is customary to discuss the direction a particle is heading by its pitch angle. A pitch angle of 0 degrees is a particle whose parallel motion is perfectly along the local magnetic field. In the northern hemisphere this particle would be heading down toward the Earth (and the opposite in the southern hemisphere).

  7. Ancient bricks baked when Nebuchadnezzar II was king ... - AOL

    www.aol.com/ancient-bricks-reveal-clues-massive...

    Retrieving that fingerprint involves a series of magnetic experiments that repeatedly heat and cool the object, exposing it to magnetic fields and then removing them.

  8. Ferrofluid - Wikipedia

    en.wikipedia.org/wiki/Ferrofluid

    In the corrugated configuration, the magnetic field is concentrated in the peaks; since the fluid is more easily magnetized than the air, this lowers the magnetic energy. In consequence the spikes of fluid ride the field lines out into space until there is a balance of the forces involved. [12]

  9. Electromagnetic lock - Wikipedia

    en.wikipedia.org/wiki/Electromagnetic_lock

    Quick to operate: Magnetic locks unlock instantly when the power is cut, allowing for quick release in comparison to other locks; Sturdy: Magnetic locks may also suffer less damage from multiple blows than do conventional locks. If a magnetic lock is forced open with a crowbar, it will often do little or no damage to the door or lock.