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- Find the following for path D in Figure 2.59: (a) The distance traveled. (b) The magnitude of the displacement from start to finish. (c) The displacement from start to finish.Find the following for path B in Figure 3.54: (a) the total distance traveled, and (b) the magnitude and direction of the displacement from start to finish.Find the following for path B in Figure 2.59: (a) The distance traveled. (b) The magnitude of the displacement from start to finish. (c) The displacement from start to finish.
- a. Which of the following is a motion diagram between t = 5.00 s and t = 9.00 s? (MULTOPLE CHOICE IN ATTACHEMNT) b. What is the acceleration between t = 5.00 s and t = 9.00 s? If the acceleration is to +x-direction, enter a positive value and if the acceleration is to –x-direction, enter a negative value. answer in m/s^2You get in your car and drive north, accelerating up to 60mph. Draw your velocity vector and acceleration vector some time during your acceleration. How would these change if you encountered traffic and started to brake?Problem 1. What formula for Velocity would you use? I’m not sure how to do this problem. Would you change the traditional one. I’m confused.
- what would the motion look like for a person starting some distance away from the origin and walking at constant speed to the right? Draw a graph of position vs. time for a person starting 0.4 to the right of the origin and walking at constant speed to the right. Please include explanation of your predictions.A robot has been programmed so that it has an acceleration given by a = 07 - Btj in the coordinate system below. Here is a known constant. The robot is to be placed at the point x = = 0, y A at t = 0 and given some initial velocity, 7₁, so that it can pick up some object at the point x = C, y = D. (Here A, C, and D are known.) a. What is the robot's position as a function of time? • (C, D) L A q+ b. What must be the magnitude of the robot's initial velocity if it leaves the initial point at the known angle as shown?A ball is tossed vertically from the top of a building that is 96 stories tall (approximately 864 ft) with an initial velocity of 30 ft/sec. The initial acceleration is given by a=−32 ft/sec2. 1. Write the velocity equation with t as the variable and v as velocity. 2. Write the displacement equation with t as the variable and s as the displacement. 3. Find the velocity at 2 seconds. ______ ft/s 4. Find the height above the ground at 2 seconds. ______ft
- Which of the following is INCORRECT about projectile motion with the same initial and final elevations? a. The total time of flight is twice the time to reach the maximum height. b. The magnitude of the acceleration at the maximum height is 9.8 m/s2. c. At its maximum height, the velocity of the projectile is zero. d. Only the vertical component of the motion is accelerating.Please help. This problem involves finding the velocity of a truck as it is traveling over a hill. I just need part a. Thank you.Ajetliner, traveling northward, is landing with a speed of 68.2 m/s. Once the jet touches down, it has 750 m of runway in which to reduce its speed to 7.16 m/s. Compute the average acceleration (magnitude and direction) of the plane during landing (take the direction of the plane's motion as positive). Number i Units