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The airport in Tampa Florida, looks somewhat like a wagon wheel since it consists of a central hub with Spokes adiating outward from the hub.
The airport in Tampa Florida, looks somewhat like a wagon wheel since it consists of a central hub with "Spokes" adiating outward from the hub. Planes dock parallel to the spokes to allow boarding. Since the docking area is ocated at the end of each spoke, some means of transportation is needed to move the passengers to the terminal n the central hub. A system of automated trams is used for this purpose. Upon boarding a tram, passengers are told to take a seat nd prepare for some acceleration! The tram then accelerates from 0 m/s to 15 m/s in 10 seconds, travels at a constant speed for 5 seconds, and finally, with a constant acceleration, slows down to O m/s in 10 seconds. The ram pauses at the end of this trip for 60 seconds before returning. On the return trip, to the end of the spoke, his cycle is repeated in the opposite direction. 1. Construct a Velocity vs time graph for the entire motion of the tram on the attached graph paper. (hint: when is the velocity positive or negative?) 2. From the graph, calculate the slope to find the acceleration of the tram during each of the following intervals? Acceleration is a vector. Make sure your answer has the "M.U.D." Show your work for credit. Answers on back page. rise m = - _ Y2 - V1 rise Av = acceleration run * 2 - X , and run At 0 - 10 seconds 100 seconds 10 - 15 seconds 100 - 110 seconds 15 - 25 seconds What is the displacement for What 25 - 85 seconds tment for the first ab sec 85 - 95 seconds velocity during the feat Of seconds 95 - 100 seconds 100 - 110 seconds3. From the graph, find the area to calculate the displacement of the tram during each of the following intervals. Color each shape a different color. Displacement is a vector. Make sure your answer has the "M.U.D." Show your work for credit and answers are on the back page. displacement = area. = (velocity ) (time) and displacement = area. = = (velocity) (time) 0 - 10 seconds 10 - 15 seconds 15 - 25 seconds 25 - 85 seconds 85 - 95 seconds 95 - 100 seconds 100 - 110 seconds 4. What is the displacement for the first 25 seconds? 5. What is the average velocity during the first 25 seconds? 6. What is the displacement for the first 85 seconds? 7. What is the average velocity during the first 85 seconds? 8. What is the displacement for the entire cycle? 9. What is the average velocity for the entire cycle
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