=420. "X" Rays.=--In 1895, Professor Röntgen of Wurtzburg, Germany,
discovered that when the cathode rays strike the walls of the tube or
any solid within it they excite a form of invisible radiation. This
radiation is called Röntgen rays, or more commonly, "X" rays. Careful
experiments show that they travel in straight lines, and that they can
not be reflected or refracted as light waves are. They pass through
glass and opaque objects such as flesh, cardboard, cloth, leather, etc.,
but not through metallic substances. The tube in Fig. 420 has a screen
covered with crystals which become luminous when struck by the cathode
rays. On bringing a magnet near the tube the luminous line is raised or
lowered showing that the magnetic field affects the stream of cathode
rays, attracting it when in one position but repelling it when in the
reverse direction. The cathode rays which cause the bright line possess
a negative charge of electricity. They are now believed to be electrons
shot off from the surface of the cathode with speeds that may reach
100,000 miles a second. "X" rays possess no electrical charge whatever
and cannot be deflected by a magnet. They produce the same effect on a
photograph plate as light does, only more slowly. Hence, they can be
used in taking "X" ray photographs. Certain crystals, like barium
platinum cyanide, fluoresce when struck by the "X" rays. The
_fluoroscope_ is the name given to a light-tight box closed at one end
by a cardboard covered with these crystals (Fig. 421). On looking into
the fluoroscope with an opaque object such as the hand placed between
the screen and the "X" ray tube, a shadow of the bones of the hand can
be seen upon the screen of the fluoroscope. (See Fig. 422.)
[Illustration: FIG. 420.--The stream of cathode rays is deflected by a
magnet.]
[Illustration: FIG. 421.--A fluoroscope.]
[Illustration: FIG. 422.--A view of the "shadow" of a hand as seen in a
fluoroscope.]
A special form of the tube is used. (See Fig. 423.) In this tube a
platinum disc is placed at the focus of the concave cathode. This
concentrates the "X" rays in one direction. It is now generally believed
that "X" rays are waves in the ether set up by the sudden stoppage of
the cathode rays at the platinum anode.
[Illustration: FIG. 423.--An "X" ray tube.]
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