Question: 11. The tolerance is -+ 1 in the 3rd significant digit. Current Attempt in Progress A rock is shot vertically upward from the edge of

11. The tolerance is -+ 1 in the 3rd significant digit.

11. The tolerance is -+ 1 in the 3rd significant digit. CurrentAttempt in Progress A rock is shot vertically upward from the edgeof the top of a tall building. The rock reaches its maximumheight above the top ofthe building 1.90 s after being shot. Then.after barely missing the edge of the building as it falls downward.the rock strikes the ground 10.0 s after it is launched. InSI units: (a) with what upward velocity is the rock shot, (b)what maximum height above the top ofthe building is reached by therock. and (c) how tall is the building? (a) Number n Units

Current Attempt in Progress A rock is shot vertically upward from the edge of the top of a tall building. The rock reaches its maximum height above the top ofthe building 1.90 s after being shot. Then. after barely missing the edge of the building as it falls downward. the rock strikes the ground 10.0 s after it is launched. In SI units: (a) with what upward velocity is the rock shot, (b) what maximum height above the top ofthe building is reached by the rock. and (c) how tall is the building? (a) Number n Units v (b) Number n Units v (c) Number n Units v The position of a particle moving along the x axis is given in centimeters bvx = 9.37 + 1.83 t3. where t is in seconds. Calculate {a} the average velocity during the time interval t = 2.00 5 tot = 3.00 s; (b) the instantaneous velocity at t : 2.00 s; {c} the instantaneous velocity at t = 3.00 s; (d) the instantaneous velocity at t = 2.50 s; and (e) the instantaneous velocity when the particle is midway between its positions at t : 2.00 s and t : 3.00 s. {a} Number n Units v (b) Number Units v (d) Number Units V {e} Number Units v {c} Number n Units v To test the quality of a tennis ball, you drop it onto the floor from a height of 4.57 m. It rebounds to a height of 2.02 m. If the ball is in contact with the floor for 14.1 ms, what is its average acceleration during that contact? Number i UnitsA bolt is dropped from a bridge under construction, falling 85 m to the valley below the bridge. [a] Howr much time does it take to pass through the last 10 % of its fall? What is its speed (b) when it begins that last 10 % of its fall and (c) just before it reaches the ground? (a) Number n Unit v (b) Number n Unit v (c) Number n Unit v A mining cart is pulled up a hill at 18 km/h and then pulled back down the hill at 36 km/h through its original level. {The time required for the cart's reversal at the top of its climb is negligible.) What is the average speed of the cart for its round trip, from its original level back to its original level? Number n Units v A lead ball is dropped in a lake from a diving board 6.30 m above the water. It hits the water with a certain velocity and then sinks to the bottom with the same constant velocity. It reaches the bottom 4.33 5 after it is dropped. (a) How deep is the lake? (b) What is the magnitude ofthe average velocity ofthe ball for the entire fall? {c} Suppose the water is drained from the lake. The ball is now thrown from the diving board so that it again reaches the bottom in 4.33 5. What is the magnitude of the initial velocity of the ball? (a) Number n Units v (b) Number n Units V (c) Number n Units v A car moving with constant acceleration covered the distance between two points 54.5 m apart in 5.88 s. Its speed as it passes the second point was 14.2 m/s. (a) What was the speed at the first point? (b) What was the acceleration? (c) At what prior distance from the first point was the car at rest? (a) Number i Units (b) Number i Units v (c) Number Units VCar lengths in trailing. When trailing a car on a highway, you are advised to maintain a trailing distance that is often quoted in terms of car lengths, such as in "stay back by 3 car lengths." Suppose the other car suddenly stops (it hits, say. a large stationary truck]. Assume a car length l. is 4.50 m, your car speed V0 is 29.7 m/s (66.5 mi/h), your trailing distance is nl. = 10.0L, and the acceleration magnitude at which your car can brake is 8.10 m/sz. What is your speed just before colliding with the other car if {a} your reaction time Ito start braking is 0.610 s and (b) automatic braking is immediately started by your car's radar system that continuously monitors the road? What is the minimum value for n needed to avoid a collision with {c} the reaction time and (d) automatic braking? {a} Number n Units v {b} Number n Units v {c} Number n Units V {d} Number n Units v An object falls a distance h from rest. If it travels 0.500h in the last 1.00 s, find (a) the time and (b) the height of its fall. (a) Number Units (b) Number i Units v

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