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The position-time graph below represents the motion of a police car, P, * 4 points chasing a motorcycle, M. Use the image below to solve
The position-time graph below represents the motion of a police car, P, * 4 points chasing a motorcycle, M. Use the image below to solve the following problems: a) What is the motorcycles total displacement ( /1T) b) Does the police car catch the motorcycle during the 16 second chase? ( /1T) c) What is the average velocity of the motorcycle during the first 12 seconds of the chase. ( /2T) Position vs. Time 2 ( m ) [N] 600 450 M 300 P 150 t (s) 0 2 4 6 8 10 12 14 16 1 Add fileShown below is a velocity-time graph that represents the motion of a * 7 points motorcycle. Use the image below to solve the following problems: a) Determine the velocity of the motorcycle at t = 5 s ( /1T) b) Determine the time when the motorcycle changes its direction of travel from North to South. (/1T) c) During what time interval is the motorcycle accelerating in the North direction. (/1T) d) Calculate the motorcycles rate of acceleration between t = 10 s and t = 14 s. (/2T) e) Calculate the motorcycles displacement from t = 0 s and t = 10 s ( /2T V vs t graph 10- V (m/s) [N] time (seconds) 0 10 15 -10- 1 Add file Earl E. Bird travels at 15.0 m/s for 10.0 seconds. He then accelerates 3.00 * 8 points m/s^2 for 5.00 seconds. a) Construct a velocity-time graph for Earl E. Bird's motion. Be sure to label the graph appropriately (/5A) b) Use the graph to calculate the traveler's total distance travelled ( /3A) 1 Add file
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