#8) A deer is running in front of Morrow Library in a straight line and then jumps in the air. For the jump her initial velocity vector has a magnitude of 13.4 m/s and makes an angle of 35.0° above the +x-axis (also called above the horizontal or horizon) answer the following questions. Use the magnitude of the acceleration due to gravity as 9.81m/s² and report answers to 3 sig figs for parts A-E. (A) Find the maximum height that the deer reaches. (B) How long did it take the deer to reach the maximum height and also come back to the ground? (C) Find the distance along the x-axis from the starting point to where the deer returned to the ground.

College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
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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#8) A deer is running in front of Morrow Library in a straight line and then jumps in the air. For the jump
her initial velocity vector has a magnitude of 13.4 m/s and makes an angle of 35.0° above the +x-axis
(also called above the horizontal or horizon) answer the following questions. Use the magnitude of the
acceleration due to gravity as 9.81m/s² and report answers to 3 sig figs for parts A-E.
(A) Find the maximum height that the deer reaches.
(B) How long did it take the deer to reach the maximum height and also come back to the ground?
(C) Find the distance along the x-axis from the starting point to where the deer returned to the
ground.
Transcribed Image Text:#8) A deer is running in front of Morrow Library in a straight line and then jumps in the air. For the jump her initial velocity vector has a magnitude of 13.4 m/s and makes an angle of 35.0° above the +x-axis (also called above the horizontal or horizon) answer the following questions. Use the magnitude of the acceleration due to gravity as 9.81m/s² and report answers to 3 sig figs for parts A-E. (A) Find the maximum height that the deer reaches. (B) How long did it take the deer to reach the maximum height and also come back to the ground? (C) Find the distance along the x-axis from the starting point to where the deer returned to the ground.
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