A player located 11.7 ft from the basket launches a successful jump shot from a height of 10 ft (level with the rim of the basket), at an angle 0 = 29° and initial velocity of v = 21 ft/s. Find the change of distance As of the toss if the angle changes by an amount Að (in degrees). Hint: Use the following fact derived from Newton's Laws: An object released at an angle 0 with initial velocity v ft/s travels a total distance s = zu° sin(20) ft. (Use decimal notation. Give your answer to three decimal places.) As 2 A0 ft
A player located 11.7 ft from the basket launches a successful jump shot from a height of 10 ft (level with the rim of the basket), at an angle 0 = 29° and initial velocity of v = 21 ft/s. Find the change of distance As of the toss if the angle changes by an amount Að (in degrees). Hint: Use the following fact derived from Newton's Laws: An object released at an angle 0 with initial velocity v ft/s travels a total distance s = zu° sin(20) ft. (Use decimal notation. Give your answer to three decimal places.) As 2 A0 ft
College Physics
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ISBN:9781305952300
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Chapter1: Units, Trigonometry. And Vectors
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Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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A player located 11.7 ft from the basket launches a successful jump shot from a height of 10 ft (level with the rim of the basket), at an angle ?=29∘
Find the change of distance Δ? of the toss if the angle changes by an amount Δ? (in degrees).
Hint: Use the following fact derived from Newton's Laws: An object released at an angle ?θ with initial velocity ? ft/sv ft/s travels a total distance ?=132?2sin(2?) ft.
(Use decimal notation. Give your answer to three decimal places.)
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