But if the physicist is justified in this belief that a number of
people can observe the “same” physical occurrence, then clearly the
physicist must be concerned with those features which the occurrence
has in common for all observers, for the others cannot be regarded
as belonging to the occurrence itself. At least, the physicist must
confine himself to the features which are common to all “equally
good” observers. The observer who uses a microscope or a telescope is
preferred to one who does not, because he sees all that the latter sees
and more too. A sensitive photographic plate may “see” still more,
and is then preferred to any eye. But such things as differences of
perspective, or differences of apparent size due to difference of
distance, are obviously not attributable to the object; they belong
solely to the point of view of the spectator. Common sense eliminates
these in judging of objects; physics has to carry the same process much
further, but the principle is the same.
I want to make it clear that I am not concerned with anything that can
be called inaccuracy. I am concerned with genuine physical differences
between occurrences each of which is a correct record of a certain
event, from its own point of view. When a man fires a gun, people who
are not quite close to him see the flash before they hear the report.
This is not due to any defect in their senses, but to the fact that
sound travels more slowly than light. Light travels so fast that, from
the point of view of phenomena on the surface of the earth, it may
be regarded as instantaneous. Anything that we can see on the earth
happens practically at the moment when we see it. In a second, light
travels 300,000 kilometers (about 186,000 miles). It travels from the
sun to the earth in about eight minutes, and from the stars to us in
anything from three to a thousand years. But of course we cannot place
a clock in the sun, and send out a flash of light from it at 12 noon,
Greenwich Mean Time, and have it received at Greenwich at 12.08 P.M.
Our methods of estimating the speed of light have to be more or less
indirect. The only direct method would be that which we apply to sound
when we use an echo. We could send a flash to a mirror, and observe how
long it took for the reflection to reach us; this would give the time
of the double journey to the mirror and back. On the earth, however,
the time would be so short that a great deal of theoretical physics
has to be utilized if this method is to be employed—more even than is
required for the employment of astronomical data.
Public-domain text, read in full here on John Shaqi.
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