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  2. Maglite - Wikipedia

    en.wikipedia.org/wiki/Maglite

    Maglite 2 D cell flashlight. Maglite (also spelled Mag-Lite, stylized as MAG-LITE) is a brand of flashlight manufactured in the United States by Mag Instrument, Inc. located in Ontario, California, and founded by Anthony Maglica. It was introduced in 1979. [1] [2] Constructed principally of anodized 6061 aluminum, they have a variable-focus ...

  3. Cold trap - Wikipedia

    en.wikipedia.org/wiki/Cold_trap

    Some workers prefer the opposite arrangement, where vapors flow down the wall of the trap, and are sucked up the inner tube; this reduces blockage. [1] In vacuum applications, a cold trap is a device that condenses all vapors except the permanent gases (hydrogen, oxygen, and nitrogen) into a liquid or solid.

  4. Anthony Maglica - Wikipedia

    en.wikipedia.org/wiki/Anthony_Maglica

    Anthony "Tony" Maglica (Croatian: Ante Maglica) (born 1930 [1]) is the owner and founder of Mag Instrument Inc, the company that manufactures the Maglite flashlight which was designed by Maglica. The Maglite is a powerful and durable flashlight that has become standard issue gear used by police officers in the USA.

  5. Photoresist - Wikipedia

    en.wikipedia.org/wiki/Photoresist

    A photoresist (also known simply as a resist) is a light-sensitive material used in several processes, such as photolithography and photoengraving, to form a patterned coating on a surface. This process is crucial in the electronics industry. [1] The process begins by coating a substrate with a light-sensitive organic material.

  6. Magnetic trap - Wikipedia

    en.wikipedia.org/wiki/Magnetic_trap

    Magnetic tweezers, a trap using a magnetic field to trap micrometre-seized ferromagnetic beads; Magneto-optical trap (or MOT), a trap using a magnetic gradient and laser light to trap neutral atoms; Penning trap, used to trap charged particles or ions in a combination of electrostatic potential and uniform magnetic field

  7. Dean–Stark apparatus - Wikipedia

    en.wikipedia.org/wiki/Dean–Stark_apparatus

    When their combined volume reaches the level of the side-arm, the upper, less-dense layer will begin to flow back to the reactor while the water layer will remain in the trap. The trap will eventually reach capacity when the level of the water in it reaches the level of the side-arm. At this point, the trap must be drained into the receiving flask.

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