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A student fires a cannonball vertically upwards with a speed of 37.0m/s. On the descent, the cannonball lands on top of a 30.0m tall building.

A student fires a cannonball vertically upwards with a speed of 37.0m/s. On the descent, the cannonball lands on top of a 30.0m tall building. Determine all unknowns and answer the following questions. Neglect drag and horizontal motion of the cannonball.

What was the cannonball's maximum height (measured from the ground)? What was the cannonball's total flight time?

(use equations below to help solve)

image text in transcribedimage text in transcribed
C A positivephysics.org/lesson/physics/free-fall/review?courseID=1&unitID=9&skillID=50&mode=a... Of ABD G 'positivephysics Dashboard BufordB Score: 75% Reference 1 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 A student fires a cannonball vertically upwards with a speed of 37.0m/s. On the descent, the cannonball lands on top of a 30.0m tall building. Determine all unknowns and answer the following questions. Neglect drag and horizontal motion of the cannonball. What was the cannonball's maximum height (measured from the ground)? m With what speed did the cannonball strike the building? 44.24 m/s What was the cannonball's total flight time? S Finalize (After completing ALL problems) Check Answers Cannot Be Solved Unit 3: Free-Fall, Review Using g = 9.8m/$2 Keep 3+ sig figs Desmos CalculatorEquation Original Form Term Symbol Unit Average Velocity Rule V = (Vo + V+ ) / 2 Displacement 4x m Def. of Velocity Ax = vt Velocity V m/s Def. of Acceleration Vf = Vo+ at Acceleration a m/s2 Displacement Equation AX = Vot+ 1/2 at2 Time S Time-Free Equation vf2 - vo2 = 2 a Ax Gravitational Acceleration g = 9.8m/s2

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