Find the following for path B in the figure below. A 0 C 2 6 8 10 12 displacement x (m) 4 (a) the distance traveled (in m) m B (b) the magnitude of the displacement (in m) from start to finish m m (c) the displacement (in m) from start to finish
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- Component Method: With your calculator, determine the x and y components of F1 and F2. Remember that Fx = Fcos θ and Fy = F sin θ. Find the x and y components of the resultant from the sum of x and y components. Draw a right triangle with x and y components as sides, and the hypotenuse representing the resultant. Calculate the magnitude of the resultant from the square root of (Rx2 + Ry2). Calculate the direction of the resultant by using θ R = tan-1 (Ry/Rx).The a- s graph for a boat moving along a straight path is given. (Figure 1) 1 of 1 Figure a (ft/s²) 5 a = 5 + 6(√5-10)5/3 100 s (ft) If the boat starts at s = 0 when v = 0, determine its speed when it is at s = 64 ft. Express your answer using three significant figures and include the appropriate units. μA ? V = Value Units Submit Request Answer Part B Use a numerical method to determine its speed at s = 136 ft. Express your answer using three significant figures and include the appropriate units. HA ? V = Value Units Submit Request AnswerSuppose you walk 13.5 m in a direction exactly 15° south of west. You then walk24.5 m in a direction exactly 43° west of north.a. What is the x-component of the displacement in meters of your motion when you are walking south ofwest? Let east be the positive x directionb. What is the y-component of the displacement of your motion in meters when you are walking south ofwest? Let north be the positive y directionc. What is the x-component of the displacement of your motion in meters when you are walking west ofnorth? Let east be the positive x direction.d. What is the y-component of the displacement of your motion in meters when you are walking west ofnorth? Let north be the positive y direction.e. How far, in meters, are you from your starting point?
- 0 Assume that friction is so small that it can be ignored. If you think that none is correct, answer choice J. A force is applied to the car. Choose the one force graph (A through H) for the statement below which could allow the described motion of the car to continue. The car is at rest. B C F 0 I C e FOL C e O с e + + 0 0 1 + Time Time Time +A student travels along some path. Which of the following statements is true about the total distance travelled by the student and the magnitude of the displacement from their starting position to their ending position? The total distance travelled can be either larger or smaller or equal to the magnitude of the displacement. O The total distance traveled must always be equal to the magnitude of the displacement. O The total distance traveled must be smaller than or equal to the magnitude of the displacement. O The total distance travelled must be larger than or equal to the magnitude of the displacement.A runner, jogging along a straight-line path, starts at a position 60.0 m east of a milestone marker and heads west. After a short time interval he is 15.7 m west of the mile marker. Choose east to be the positive x-direction. What is the runner’s displacement from his starting point? Enter a positive value if the displacement is toward east of the milestone and a negative value if the displacement is toward west of the milestone.
- Please box all answersD = (oxt) + (1/2 * 8.93* (4.7)2) I D = 98.63 meter 5. You are about to skateboard down a long hill. Your initial velocity is 2.0 m/s south. When you reach the bottom of the hill you are travelling 6.0 m/s south. It took you 57 seconds to reach the bottom of the hill. What was your displacement?Pls help ASAP