Question

9 An inertial frame of reference S moving to the left with speed 25 ms moves past another inertial frame S. At time zero th

0 0
Add a comment Improve this question Transcribed image text
Answer #1

a) Velocity <sea Velocity of light So, we can solue using galetian transformation - ginen v = 25ms (t=t) x = a tut. x = 24 +

Add a comment
Know the answer?
Add Answer to:
9 An inertial frame of reference S' moving to the left with speed 25 ms' moves...
Your Answer:

Post as a guest

Your Name:

What's your source?

Earn Coins

Coins can be redeemed for fabulous gifts.

Not the answer you're looking for? Ask your own homework help question. Our experts will answer your question WITHIN MINUTES for Free.
Similar Homework Help Questions
  • Consider an event with space-time coordinates (t=2.00s,x=2.50�108m)in an inertial frame of reference S. Let S' be a se...

    Consider an event with space-time coordinates (t=2.00s,x=2.50�108m)in an inertial frame of reference S. Let S' be a second inertial frame of reference moving, in the positive x direction, with speed 2.70�108m/s relative to frame S. Find the value of gamma that will be needed to transform coordinates between frames S and S'. Use c=3�108m/s for the speed of light in vacuum. Suppose that S and S' share the same origin; that is, at t = t' = 0, x =...

  • A reference frame S' moves with a constant speed v=0.800c along the x axis relative to...

    A reference frame S' moves with a constant speed v=0.800c along the x axis relative to a second reference frame S. A particle is observed from reference frame S' to be moving with velocity 0.400c (along the positive x' axis). What would be the velocity of the particle as measured by an observer in reference frame S?

  • Consider an event with space-time coordinates (t=2.00s,x=2.50 x 108m)in an inertial frame of reference S. Let...

    Consider an event with space-time coordinates (t=2.00s,x=2.50 x 108m)in an inertial frame of reference S. Let S' be a second inertial frame of reference moving, in the positive x direction, with speed 2.70 x 108m/s relative to frame S. Find the value of gamma that will be needed to transform coordinates between frames S and S'. Use c=3 x 108m/s for the speed of light in vacuum. Suppose that S and S' share the same origin; that is, at t...

  • At t=1.3s, a firecracker explodes at x=12m in reference frame S. Four seconds later, a second...

    At t=1.3s, a firecracker explodes at x=12m in reference frame S. Four seconds later, a second firecracker explodes at x=18m. Reference frame S′ moves in the x-direction at a speed of 4.7 m/s . At time t=0 the origins of frames S and S′ coincide. A) What are the positions of these two events in frame S′? B)What are the times at which these two events occur in frame S′?

  • Q-1: (a Briefly describe () Event,(i) Inertial Frame, (i) Proper Length (b) Define briefly the Doppler...

    Q-1: (a Briefly describe () Event,(i) Inertial Frame, (i) Proper Length (b) Define briefly the Doppler Effect for waves/periodic phenomena and explain why there are four different equations for sound waves but for light (or other electromagnetic waves) there are only two? (c) (i) Roughly Sketch World-line of a Space-ship moving with a constant speed say v-0. 2 C in an Inertial Reference frame that is stationary. (ii) Also sketch S' i.e. treat space as Inertial reference frame moving with...

  • Two clocks, labelled 1 and 2, are at rest in an inertial frame , S. They...

    Two clocks, labelled 1 and 2, are at rest in an inertial frame , S. They are synchronized and separated by a distance, d, as measured in S. A third clock, 3, at rest in S', moves from clock 1 to clock 2 at constant speed, v. An observer in S' measures the distance between clocks 1 and 2 to be 0.72 d. 10 seconds elapses on clocks 1 and 2 in the time taken for clock 3 to travel...

  • observer in an inertial reference frame S sits at rest on the ground and watches a...

    observer in an inertial reference frame S sits at rest on the ground and watches a 2050 kg truck meving at a speed of 16 my's to the rightrelative to the ground) colide with a 1395 kg car sitting at rest at a stop ผ9 After the eemson, the truck and the car stick together and move at the sarme final volocty since the Law of Conervaton of Linear Mon entumis known tobe vaid n refere en freme S "...

  • A car is moving in the positive x direction in the reference frame S. The reference...

    A car is moving in the positive x direction in the reference frame S. The reference frame S' moves at a speed of 0.88c, along the x axis. The proper length of the car is 3.40 m. Calculate the length of the car according to observers in the S' frame.

  • This is wrong. PartI n an inertial frame of reference, a series of experiments is conducted....

    This is wrong. PartI n an inertial frame of reference, a series of experiments is conducted. In each experiment, two or three forces are applied to an object. The magnitudes of these forces are given. No other forces are acting on the object. In which cases may the object possibly move at a constant velocity of 256 m/s? The forces applied are as follows: Check all that apply Hints Hint 1. Using the net force In an inertial frame of...

  • The coordinate axes of the reference frame S' remain parallel to those of S, as S'...

    The coordinate axes of the reference frame S' remain parallel to those of S, as S' moves away from S at a constant velocity Vç (6.0î 9.0j 7.0k) m/s. (Express your answers in vector form. Use the following as necessary: t. Assume all positions are in meters, velocities are in m/s, accelerations are in m/s, and t is in seconds. Do not include units in your answers.) (a) If at time t 0 the origins coincide, what is the position...

ADVERTISEMENT
Free Homework Help App
Download From Google Play
Scan Your Homework
to Get Instant Free Answers
Need Online Homework Help?
Ask a Question
Get Answers For Free
Most questions answered within 3 hours.
ADVERTISEMENT
ADVERTISEMENT
ADVERTISEMENT