A quarterback is set up to throw the football to a receiver who is running with a constant velocity, directly away from

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A quarterback is set up to throw the football to a receiver who is running with a constant velocity, directly away from

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A Quarterback Is Set Up To Throw The Football To A Receiver Who Is Running With A Constant Velocity Directly Away From 1
A Quarterback Is Set Up To Throw The Football To A Receiver Who Is Running With A Constant Velocity Directly Away From 1 (37.77 KiB) Viewed 42 times
A Quarterback Is Set Up To Throw The Football To A Receiver Who Is Running With A Constant Velocity Directly Away From 2
A Quarterback Is Set Up To Throw The Football To A Receiver Who Is Running With A Constant Velocity Directly Away From 2 (37.47 KiB) Viewed 42 times
A Quarterback Is Set Up To Throw The Football To A Receiver Who Is Running With A Constant Velocity Directly Away From 3
A Quarterback Is Set Up To Throw The Football To A Receiver Who Is Running With A Constant Velocity Directly Away From 3 (41.51 KiB) Viewed 42 times
A quarterback is set up to throw the football to a receiver who is running with a constant velocity, directly away from the quarterback and is now a distance Daway from the quarterback. The quarterback figures that the ball must be thrown at an angle @ to the horizontal and he estimates that the receiver must catch the ball a time interval f, after it is thrown to avoid having opposition players prevent the receiver from making the catch. In the following you may assume that the ball is thrown and caught at the same height above the level playing field. Assume that the y coordinate of the ball at the instant it is thrown or caught is y=0 and that the horizontal position of the quarterback is 2-0. (Figure 1) Use g for the magnitude of the acceleration due to gravity, and use the pictured inertial coordinate system when solving the problem. Figure 1 of 1 Y Part A Find toy, the vertical component of the velocity of the ball when the quarterback releases it. Express voy In terms of te and g. View Available Hint(s) Voy=1 . Submit ✓ Correct Part B Previous Answers Find te the initial horizontal component of velocity of the ball. Express your answer for to in terms of D, f., and v. > View Available Hint(s) PO + Previous Answers ✓ Correct
A quarterback is not up to throw the football to a receiver who is running with a constant velocity , directly away from the quarterback and is now a distanco D away from the quarterback. The quarterback figures that the ball must be thrown at an angle @ to the horizontal and he estimates that the receiver must catch the ball a time interval , after it is thrown to avoid having opposition players prevent the receiver from making the catch. In the following you may assume that the ball is thrown and caught at the same height above the level playing field. Assume that the y coordinate of the ball at the instant it is thrown or caught is y= 0 and that the horizontal position -0. (Floure 1) of the quarterback is a Use g for the magnitude of the acceleration due to gravity, and use the pictured inertial coordinate system when solving the problem Figure Sit 1 of 1 Part C Find the speed to with which the quarterback must throw the ball Answer in terms of D, fe and g. ▸ View Available Hint(s) VAL x₁ √ √ Part D Submit Previous Anamera 4 You have already submitted this answer. Enter a new answer No credit lost. Try again. ? 10 Assuming that the quarterback throws the ball with speed y, find the angle above the horizontal at which he should throw it Your solution should contain an inverse trig function (entered as axis, aces, or atan). Give your answer in terms of already known quantities, and
A quarterback is set up to throw the football to a receiver who is running with a constant velocity , directly away from the quarterback and is now a distance D away from the quarterback. The quarterback figures that the ball must be thrown at an angle @ to the horizontal and he estimates that the receiver must catch the ball a time interval f, after it is thrown to avoid having opposition players prevent the receiver from making the catch. In t the following you may assume that the ball is thrown and caught at the same height above the level playing field. Assume that the y coordinate of the ball at the instant it is thrown or caught is y= 0 and that the horizontal position of the quarterback is a 0. (Eigure 1) Use g for the magnitude of the acceleration due to gravity, and use the pictured inertial coordinate system when solving the problem. Figure 1 of 1 L. Part D Assuming that the quarterback throws the ball with speed to find the angle & above the horizontal at which he should throw it Your solution should contain an Inverse trig function (entered as asin, acos, or stan). Give your answer in terms of already known quantities, to ty, and t View Available int(s) 8 19ΕΙ ΑΣΦΑ a A B V AP Submit Y 6 » 6 4 Previous Answers E Ω 4 11 h 0 X E K W X Incorrect; Try Again; 5 attempts remaining i The correct answer does not depend on D. gleite A (0) ? H E
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