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General relativity A spaceship of proper length Lp = 350 m moves past a transmitting station...

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general relativity

A spaceship of proper length Lp = 350 m moves past a transmitting station at a speed of 0.77c. (The transmitting station broadcasts signals that travel at the speed of light.) A clock is attached to the nose of the spaceship and a second clock is attached to the transmitting station. The instant that the nose of the spaceship passes the transmitter, the clock attached to the transmitter and the clock attached to the nose of the spaceship are set equal to zero. The instant that the tail of the spaceship passes the transmitter a signal is sent by the transmitter that is subsequently detected by a receiver in the nose of the spaceship.

A spaceship of proper length L 350 m moves past a transmitting station at a speed of 0.77c. (The transmitting station broadcasts signals that travel at the speed of light.) A clock is attached to the nose of the spaceship and a second dock is attached to the transmitting station. The instant that the nose of the spaceship passes the transmitter, the clock attached to the transmitter and the clock attached to the nose of the spaceship are set equal to zero. The instant that the tail of the spaceship passes the transmitter a signal is sent by the transmitter that is subsequently detected by a receiver in the nose of the spaceship. a when, according to the clock attached to the nose of the spaceship is the signal sent v us b) When, according to the clocks attached to the nose of the spaceship, is the signal received? 676 US c) when, according to the clock attached to the transmitter, is the signal received by the spaceship? d) According to an observer that works at the transmitting station, how far from the transmitter s the nose of the spaceship when the signal is received? 516 X m

A spaceship of proper length L 350 m moves past a transmitting station at a speed of 0.77c. (The transmitting station broadcasts signals that travel at the speed of light.) A clock is attached to the nose of the spaceship and a second dock is attached to the transmitting station. The instant that the nose of the spaceship passes the transmitter, the clock attached to the transmitter and the clock attached to the nose of the spaceship are set equal to zero. The instant that the tail of the spaceship passes the transmitter a signal is sent by the transmitter that is subsequently detected by a receiver in the nose of the spaceship. a when, according to the clock attached to the nose of the spaceship is the signal sent v us b) When, according to the clocks attached to the nose of the spaceship, is the signal received? 676 US c) when, according to the clock attached to the transmitter, is the signal received by the spaceship? d) According to an observer that works at the transmitting station, how far from the transmitter s the nose of the spaceship when the signal is received? 516 X m

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