Wilber Wildcat lies down on the roof of the Gould-Simpson Building on the UA campus to...
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Wilber Wildcat lies down on the roof of the Gould-Simpson Building on the UA campus to demonstrate his understanding of gravity. Wilber borrows tennis balls from the tennis team and tosses them upward into the air. The physicists in the PAS building determine that the position of a tennis ball after is it thrown is given by P(x) = -16x+544.8x + 131, where P is measured in feet above the ground and x is the horizontal distance in feet from the roof. [NOTE: Any evidence of Calculus in your answers will result in an automatic score of 0] Sketch a HAND DRAWN graph of the trajectory of the ball described above in an appropriate window graphing window based on the context of the problem, labeling axes, scale, and all important features (maximums, minimums, x-intercepts, y-intercepts, etc). Clearly label 5 points on the graph. Round your labelled points to 3 decimal places if needed. (non-hand drawn graphs will not receive credit) (Remember to submit as a PDF) Wilber Wildcat lies down on the roof of the Gould-Simpson Building on the UA campus to demonstrate his understanding of gravity. Wilber borrows tennis balls from the tennis team and tosses them upward into the air. The physicists in the PAS building determine that the position of a tennis ball after is it thrown is given by P(x) = -16x+544.8x + 131, where P is measured in feet above the ground and x is the horizontal distance in feet from the roof. [NOTE: Any evidence of Calculus in your answers will result in an automatic score of 0] Sketch a HAND DRAWN graph of the trajectory of the ball described above in an appropriate window graphing window based on the context of the problem, labeling axes, scale, and all important features (maximums, minimums, x-intercepts, y-intercepts, etc). Clearly label 5 points on the graph. Round your labelled points to 3 decimal places if needed. (non-hand drawn graphs will not receive credit) (Remember to submit as a PDF)
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