The curvilinear motion of a particle is defined by v, = 50 - 16t and y meters, and t is in seconds. It is also known that x = 0 when t = 0. Determine the velocity and acceleration vectors at y = 0. = 100 - 42, where v, is in meters per second, y is in
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![EXAMPLE
The curvilinear motion of a particle is defined by v, = 50 - 16t
and y = 100 - 4t², where v, is in meters per second, y is in
meters, and t is in seconds. It is also known that x = 0 when
t = 0. Determine the velocity and acceleration vectors at y = 0.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F504e4caf-a439-48e2-b220-7008ed8442a8%2F02929130-cdda-470d-8693-4f72963c291e%2Fnn3a4kq_processed.png&w=3840&q=75)
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- 4. The mouse continued its trek and headed rightward (+x) for 100 cm. Update the graph, and calculate the magnitude and direction of the mouse's displacement.#7) Use the figure for projectile motion. You are working on your jump shot. The magnitude of the initial velocity for the ball is v. = 8.0 m/s and the angle you launch it is at 32.0°. Note the ball's initial starting height is h = 1.70 m. set up the equations correctly and your algebra manipulation prior to plugging in numbers. Numbers last. Report answer to 3 sig figs. h (A) Calculate the maximum height the ball goes relative to the ground. (B) Calculate the total time the ball is in the air, from h to the time it hits the ground. (C) The maximum horizontal distance the person can throw ball given these conditions.Q1/A projectile is shot with a velocity of 100 m /s at an angle of 60 ° with the horizontal. Calculate (a) the horizontal range, (b) the maximum height, (c) the velocity and height after 10 s. Q2 / An automobile, starting from rest, reaches 60 km /hr in 15 s. (a) Calculate the average acceleration in m Imin? and the distance moved. (b) Assuming that the acceleration is constant, how many more seconds will it take for the car to reach 80 km /hr ? What has been the total distance covered?
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