Predicting Position graphs from velocity graphs 19. a) For the following velocity graph, sketch (label each axis) what you think the position graph would have to look like. Then describe in words how you should move to produce this graph. V(m/s) 0.5 t(s) '3
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The position time graph for the motion describes by the given v-t graph is plotted below,
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- A stone is thrown straight upward and returns to the thrower hand after being 4.20s in the air. a) with that speed was the stone thrown. b) what maximum height did the stone reach. c) if a second stone was thrown at an angle 63.0 degrees above the horizontal, and reached the same maximum height as the first stone in part b what was the initial speed the second stone.Short computation The position of an object as a function of time is given by x(t) = bt2 - ct, where b = 2.2 m/s² and c = 7.1 m/s. What is the instantaneous velocity v of the object when t = 7.9 s? v= m/s Remember to include a "-" if the velocity turns out to be negative. Do not include a "+" for a positive value. Report your numerical answer below, assuming three significant figures.Constants You are driving home from school steadily at 94 km/h for 190 km. It then begins to rain and you slow to 61 km/h instantly. You arrive home after driving 5.0 hours. Part A How far is your hometown from school? Express your answer using two significant figures. ΑΣφ ? d = km Submit Request Answer Part B What was your average speed? Express your answer using two significant figures. ΑΣφ ? v = km/h Submit Request Answer Provide Feedback Next > P Pearson
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