This kind of investigation was started more than fifty years ago. It
has been gradually developed and corrected, until now we believe that
the results must be nearly right--that we really know how hot it is
inside a star.
I mentioned just now a temperature of 6,000°; that was the temperature
near the surface--the region which we actually see. There is no serious
difficulty in determining this surface temperature by observation;
in fact the same method is often used commercially for finding the
temperature of a furnace from the outside. It is for the deep regions
out of sight that the highly theoretical method of calculation is
required. This 6,000° is only the marginal heat of the great solar
furnace giving no idea of the terrific intensity within. Going down
into the interior the temperature rises rapidly to above a million
degrees, and goes on increasing until at the sun’s centre it is about
40,000,000°.
Do not imagine that 40,000,000° is a degree of heat so extreme that
temperature has become meaningless. These stellar temperatures are to
be taken quite literally. Heat is the energy of motion of the atoms or
molecules of a substance, and temperature which indicates the degree
of heat is a way of stating how fast these atoms or molecules are
moving. For example, at the temperature of this room the molecules of
air are rushing about with an average speed of 500 yards a second; if
we heated it up to 40,000,000° the speed would be just over 100 miles
a second. That is nothing to be alarmed about; the astronomer is quite
accustomed to speeds like that. The velocities of the stars, or of the
meteors entering the earth’s atmosphere, are usually between 10 and 100
miles a second. The velocity of the earth travelling round the sun is
20 miles a second. So that for an astronomer this is the most ordinary
degree of speed that could be suggested, and he naturally considers
40,000,000° a very comfortable sort of condition to deal with. And if
the astronomer is not frightened by a speed of 100 miles a second, the
experimental physicist is quite contemptuous of it; for he is used
to handling atoms shot off from radium and similar substances with
speeds of 10,000 miles a second. Accustomed as he is to watching these
express atoms and testing what they are capable of doing, the physicist
considers the jog-trot atoms of the stars very commonplace.
Public-domain text, read in full here on John Shaqi.
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