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Einstein's Theories of Relativity and Gravitation by Albert Einstein, is part of the HackerNoon Books Series. You can jump to any chapter in this book here. The Special Principle of Relativity
The Special Principle of Relativity
Although all unaccelerated frames of reference are equivalent for the purposes of mechanical laws, this is not the case for physical laws generally as long as the above suppositions are adhered to. Electromagnetic laws do alter their form according to the motion of the frame of reference; that is to say, if these suppositions are true, electromagnetic agencies act in different ways according to the motion of the system in which they occur. There is nothing a priori impossible in this, but it does not agree with experiment. The motion of each locality on the earth is continually changing from hour to hour but no corresponding changes occur in electromagnetic actions. It has however been ascertained that on discarding these suppositions the difficulty disappears, and electromagnetic laws retain their form under all circumstances of unaccelerated motion. According to the theory of relativity, the correct view which replaces these suppositions is deducible from the following postulates:
(1)By no experiment conducted on his own system can an observer detect the unaccelerated motion of his system.
(2)The measure of the velocity of light in vacuo is unaffected by relative motion between the observer and the source of light.
Both these postulates are well established by experiment. [172]The first may be illustrated by the familiar difficulty of determining whether a slowly moving train one happens to be sitting in, or an adjacent one, is in motion. The passenger has either to wait for bumps (that is, accelerations) or else he has to look out at some adjacent object which he knows to be fixed, such as a building (that is, he has to perform an experiment on something outside his system), before he can decide.
The second postulate is an obvious consequence of the wave theory of light. Just as waves in water, once started by a ship, travel through the water with a velocity independent of the ship, so waves in space travel onward with a speed bearing no relation to that of the body which originated them. The statement however is based on experiment, and can be proved independently of any theory of light.
It is not difficult to deduce from these postulates certain remarkable conclusions relating to the systems of two observers, A and B, in relative motion, among them the following:
(1)Objects on B’s system appear to A to be shorter in the direction of relative motion than they appear to B.
(2)This opinion is reciprocal. B thinks that A’s measurements on A’s system are too great.
(3)Similarly for times: each observer thinks that the other’s clocks have a slower rate than his own, so that B’s durations of time appear shorter to B than to A, and conversely.
(4)Events which appear simultaneous to A do not in general appear so to B, and conversely.
(5)Lengths at right angles to the direction of motion are unaffected.
(6)These effects vary with the ratio of the relative velocity to that of light. The greater the relative velocity, the greater the effects. They vanish if there is no relative velocity.
(7)For ordinary velocities the effects are so small as to escape notice. The remarkable point however is their occurrence rather than their magnitude.
(8)The observers similarly form different estimates of the velocities of bodies on each other’s systems. The velocity of light however appears the same to all observers.
Taking into account these revised views of lengths and times the mechanical principle of relativity may be extended to physical laws generally as follows: All unaccelerated frames of reference are equivalent for the statement of the general laws of physics. In this form the statement is called the Special, or Restricted, Principle of Relativity, because it is restricted to unaccelerated frames of reference. Naturally the laws of classical mechanics now require some modification, since the suppositions of unalterable lengths and times no longer apply.
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This book is part of the public domain. Albert Einstein (2020). Einstein's Theories of Relativity and Gravitation. Urbana, Illinois: Project Gutenberg. Retrieved October 2022.
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