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  2. Heel effect - Wikipedia

    en.wikipedia.org/wiki/Heel_effect

    In X-ray tubes, the heel effect or, more precisely, the anode heel effect is a variation of the intensity of X-rays emitted by the anode depending on the direction of emission along the anode-cathode axis. X-rays emitted toward the anode are less intense than those emitted perpendicular to the cathode–anode axis or toward the cathode.

  3. Line focus principle - Wikipedia

    en.wikipedia.org/wiki/Line_Focus_Principle

    The intensity of the beam from the positive anode side is lower than the intensity from the negative cathode side because the photons created when the electrons strike the target have a longer way to travel through the rotating target on the anode side. This effect is called the anode heel effect and is why thicker body parts should be placed ...

  4. Plate electrode - Wikipedia

    en.wikipedia.org/wiki/Plate_electrode

    A plate, usually called anode in Britain, is a type of electrode that forms part of a vacuum tube. [1] It is usually made of sheet metal, connected to a wire which passes through the glass envelope of the tube to a terminal in the base of the tube, where it is connected to the external circuit.

  5. File:TEM Ray Diagram with Phase Contrast Transfer Function.pdf

    en.wikipedia.org/wiki/File:TEM_Ray_Diagram_with...

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  6. Crookes tube - Wikipedia

    en.wikipedia.org/wiki/Crookes_tube

    Crookes X-ray tube from around 1910 Another Crookes x-ray tube. The device attached to the neck of the tube (right) is an "osmotic softener". When the voltage applied to a Crookes tube is high enough, around 5,000 volts or greater, [16] it can accelerate the electrons to a high enough velocity to create X-rays when they hit the anode or the glass wall of the tube.

  7. File:PAO-Diagram-09216ad 02.pdf - Wikipedia

    en.wikipedia.org/.../File:PAO-Diagram-09216ad_02.pdf

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