y (ft) 35⁰° a (ft) the formulas that you enter below, keep two decimal places of accuracy for all numerical fficients. d the formula for velocity, (t), assuming constant acceleration a(t) = (0, -32.2) ft/s². v (t) = X X d the formula for position, (t), assuming the launch position was 7(0) = (0,40) ft. F(t) ere does the object land? Give just the x-coordinate, accurate to one decimal place.

Algebra and Trigonometry (6th Edition)
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ISBN:9780134463216
Author:Robert F. Blitzer
Publisher:Robert F. Blitzer
ChapterP: Prerequisites: Fundamental Concepts Of Algebra
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Problem 1MCCP: In Exercises 1-25, simplify the given expression or perform the indicated operation (and simplify,...
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Pretty confused, I know this has something to do with anti-derivatives. But that 0 in the start is getting me and I can't figure out what to do there. Thank you!!
An object is fired into the air at an angle of 35° and a speed of 65 ft/s. (See figure below.)
v (ft)
35°
z (ft)
In the formulas that you enter below, keep two decimal places of accuracy for all numerical
coefficients.
Find the formula for velocity, (t), assuming constant acceleration a(t) = (0, -32.2) ft/s².
v(t)=
X
X
Find the formula for position, (t), assuming the launch position was 7(0) = (0,40) ft.
F(t)
X,
Where does the object land? Give just the x-coordinate, accurate to one decimal place.
X
Transcribed Image Text:An object is fired into the air at an angle of 35° and a speed of 65 ft/s. (See figure below.) v (ft) 35° z (ft) In the formulas that you enter below, keep two decimal places of accuracy for all numerical coefficients. Find the formula for velocity, (t), assuming constant acceleration a(t) = (0, -32.2) ft/s². v(t)= X X Find the formula for position, (t), assuming the launch position was 7(0) = (0,40) ft. F(t) X, Where does the object land? Give just the x-coordinate, accurate to one decimal place. X
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