The nature of the physical worldEddington, Arthur Stanley, Sir
Philosophy
The nature of the physical world
Eddington, Arthur Stanley, Sir
Physics -- Philosophy; Science -- Philosophy
When there is no shuffling, is the Moving Finger stayed? The answer of
physics is unhesitatingly Yes. To judge of this we must examine those
operations of Nature in which no increase of the random element can
possibly occur. These fall into two groups. Firstly, we can study those
laws of Nature which control the behaviour of a single unit. Clearly
no shuffling can occur in these problems; you cannot take the King of
Spades away from the pack and shuffle him. Secondly, we can study the
processes of Nature in a crowd which is already so completely shuffled
that there is no room for any further increase of the random element.
If our contention is right, everything that occurs in these conditions
is capable of being undone. We shall consider the first condition
immediately; the second must be deferred until p. 78.
Any change occurring to a body which can be treated as a single unit
can be undone. The laws of Nature admit of the undoing as easily as
of the doing. The earth describing its orbit is controlled by laws of
motion and of gravitation; these admit of the earth’s actual motion,
but they also admit of the precisely opposite motion. In the same field
of force the earth could retrace its steps; it merely depends on how it
was started off. It may be objected that we have no right to dismiss
the starting-off as an inessential part of the problem; it may be as
much a part of the coherent scheme of Nature as the laws controlling
the subsequent motion. Indeed, astronomers have theories explaining
why the eight planets all started to move the same way round the sun.
But that is a problem of eight planets, not of a single individual—a
problem of the pack, not of the isolated card. So long as the earth’s
motion is treated as an isolated problem, no one would dream of putting
into the laws of Nature a clause requiring that it must go this
[Pg 66]
way round and not the opposite.
There is a similar reversibility of motion in fields of electric and
magnetic force. Another illustration can be given from atomic physics.
The quantum laws admit of the emission of certain kinds and quantities
of light from an atom; these laws also admit of absorption of the same
kinds and quantities, i.e. the undoing of the emission. I apologise for
an apparent poverty of illustration; it must be remembered that many
properties of a body, e.g. temperature, refer to its constitution as
a large number of separate atoms, and therefore the laws controlling
temperature cannot be regarded as controlling the behaviour of a single
individual.
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