Refer to the moving sidewalk in Sample Problem 3.3. How long will it take a passenger walking at 1.0 m/s relative to the side walk, in the opposite direction, to reach the other end of the sidewalk?
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- Answer Part B.Vectors x and y are moving with uniform velocities. If the image below is t = 0, how long will it take (in seconds) for vector x to be in the same position with vector y? How far should vector x have traveled (in meters) by the time it has overtaken the position of vector y? Show proper solution.Part (A). You are designing the radar system to track the UFOs appearing in the city.In your setup, you have two radars R1 and R2, that are 20 miles from each other. And this happens! Oneday the radars detect a UFO somewhere between them. According to the data provided, the angle ofelevation measured by R1 is 35 degrees. The angle of elevation measured by R2 is 15 degrees. What isthe elevation of the UFO? Round your answer to the nearest thousandth mile. Part (B). Now, one of your radar stations is broken. So you have only one radar. The workingradar suddenly detects another UFO. According to the data provided, the angle of elevation of the UFOfrom some point A on the ground is 60 degrees.After flying 15 seconds horizontally, the angle of elevationchanges to 30 degrees.Also, it is detected by your working radar that the UFO is flying at a speed of 200 m/s,can you find the elevation (height) at which the UFO is flying?Round your answer to the nearest thousandth meter.Please answer letter A clearly, briefly, and concisely po, especially sa #4. I think the answer to 1-3 is A>B>C>E, but for the #4 I’m quite unsure. Hope you could help me!
- 1.Write out the equation for your line of best fit. Hint: Make sure you have: Variables that match your experiment Values for the the slope and intercept Units for the slope and intercept2. 2. Does the puck have a constant velocity on the ramp? How do you know?hi ! kindly write the solutions legibly and explain it hehe thank you <3An automobile traveling 95km/h overtakes a 1.30 km long train traveling in the same direction on a track parallel to the road. If the train’s speed is 75km/h. (a) how long does it take the car to pass it?, and (b) howfar will the car have traveled in this time? See diagram. (c) What are the results if the car and train are traveling in opposite directions? ( Show your work).
- 1. How fast, in meters per second, is the boat moving at t = 4.41 s? 2. How far, in meters, is the boat from the dock at t = 4.41 s? please show work– EVEN: In a lake, two boats A and B are leaving Station1 at the same time, Boat A is directed straight to Station 2 at a constant velocity of 7m/s, while Boat B is travelling in the NorthWest direction (N450W). It takes Bost A one and half minute (90 seconds) to reach Station 2. Station 2 is located to the west 315m south of Station 1. a. What is the velocity of Boat B if it appears to a person inside it that Boat A is moving at rate of 8m/s? b. At the instant when Boat A reaches Station 2, what is the relative position (magnitude and direction) of Boat B with respect to A?Part a(Continuing Question 1) What distance (inm) does the aircraft travel during the first second?" Part b(Continuing Question 1) What distance (inm) does the aircraft travel during the last second? Part c in image please solve both
- I'm stuck on these two questions from the same example Part C If the captain of ship A fires a missile, counts 10.0 ss on his watch, and then fires a second missile, how much time Δt will the captain of ship B measure to have passed between the firing of the two missiles? Part D The captain of ship B knows that ship A uses 2-m-long missiles. She measures the length of the first missile, once it has finished accelerating, and finds it to be only 0.872 mm long. What is the speed u of the missile, relative to ship B? Use c=3×108m/s=3×108m/s.Hi. Can you solve part d only?Could you write out the kinematic variables? I can't tell which ones are x and y components. I also can't seem to place the values on a right traingle aside from the given angle.