Popular Scientific Recreations: in Natural Philosphy, Astronomy, Geology, Chemistry, etc., etc., etc.Tissandier, Gaston
Science
Popular Scientific Recreations: in Natural Philosphy, Astronomy, Geology, Chemistry, etc., etc., etc.
Tissandier, Gaston
Scientific recreations
The reflection and refraction of heat are ruled by the same laws as
the reflection and refraction of light. A convex lens will bring the
heat or light to a focus, and will act as a burning-glass if held in
the sunlight. Gunpowder has been ignited by a lens of ice, and more
than one house has been mysteriously set on fire at midday in summer
by the sun’s rays shining through a glass globe of water containing
gold fish, and falling upon some inflammable substance. Professor
Tyndall performed a series of experiments of a very interesting nature,
described in his book, “Heat considered as a Mode or Motion,” and
showed the transmutation of invisible heat rays into visible rays,
by passing a beam of electric light through an opaque solution, and
concentrating it upon a lens. The dark heat rays were thus brought to
a focus, all the light was cut off, and at the dark focus the heat was
found to be intense enough to melt copper and explode gunpowder. This
change of invisible heat into light is termed Calorescence.
It was Sir William Herschell who discovered that there were heat
rays beyond the red end of the spectrum. When light is split up into
its component rays, or decomposed, Sir William found that the heat
increased as the thermometer passed from violet to indigo, and so on
to blue, green, orange, and red, and the last were the hottest, while
beyond the spectrum there was heat even greater. A _Heat Spectrum_
was thus discovered, and by comparing, by means of the thermometer,
the various degrees of heat within certain limits, Professor Tyndall
found that the invisible Heat Spectrum is longer than the visible Light
Spectrum.
CHAPTER IX.
LIGHT AND ITS SOURCES—WHAT IS LIGHT?—VELOCITY OF LIGHT—REFLECTION AND
REFRACTION—RELATIVE VALUE OF LIGHTS.
The subject of Light and the science of Optics are so interesting to
all of us that some short history of light is necessary before we can
enter upon the scientific portion of the subject. The nature of the
agent (as we may term light) upon which our sight depends has employed
man’s mind from a very early period. The ancients were of opinion that
the light proceeded _from_ the eye to the object looked at. But they
discovered some of the properties of light. Ptolemy of Alexandria, who
was born A.D. 70, made some attempts to discover the law of
Refraction; and we are informed that Archimedes set the Roman fleet
on fire with burning-glasses at Syracuse. The Arabian treatise of
Alhagen, in 1100 A.D., contains a description of the eye and
its several parts; and the writer notices refraction and the effects of
magnifying glasses (or spectacles). Galen, the physician, practically
discovered the principle of the stereoscope, for he laid down the law
that our view of a solid body is made up of two pictures seen by each
eye separately.
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