A ball is launched from the ground with a velocity V0 = 20 i + 30 j (m/s). To determine: a) Maximum height b) Horizontal reach
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A ball is launched from the ground with a velocity V0 = 20 i + 30 j (m/s). To determine:
a) Maximum height
b) Horizontal reach
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- a man can throw a ball a maximum horizontal distance of 58.7m the acceleration of gravity is 9.8 m/s^2 How far can he throw the same ball vertically upward with the same initial speed? answer in units of m= 17.5 m/s. The cliff is h = 32.0 m above a flat, horizontal beach as shown in the figure. A student stands at the edge of a cliff and throws a stone horizontally over the edge with a speed of х (a) What are the coordinates of the initial position of the stone? Xo = Уо- (b) What are the components of the initial velocity? Vox = m/s m/s Vov= (c) Write the equations for the x- and y-components of the velocity of the stone with time. (Use the following as necessary: t. Let the variable t be measured in seconds. Do not include units in your answer.) Vx= Vy= (d) Write the equations for the position of the stone with time, using the coordinates in the figure. (Use the following as necessary: t. Let the variable t be measured in seconds. Do not state units in your answer.) х3 (e) How long after being released does the stone strike the beach below the cliff? (f) With what speed and angle of impact does the stone land? m/s Ve= • below the horizontal Ө-Problem 2: An object is thrown off the top of a 38-m tall building with a velocity of 350 m/s at an angle of 8.2° with respect to the horizontal. Part (a) How long is the object in the air in seconds? Numeric : A numeric value is expected and not an expression. t = Part (b) What is the maximum height the object reaches above the ground in meters? Numeric : A numeric value is expected and not an expression. hmax = Part (c) What is the horizontal distance the object covers in meters? Numeric : A numeric value is expected and not an expression. Ax =.
- A student stands at the edge of a cliff and throws a stone horizontally over the edge with a speed of v, = 23.0 m/s. The cliff is h = 43.0 m above a flat, horizontal beach as shown in the figure. (a) What are the coordinates of the initial position of the stone? Yo = m (b) What are the components of the initial velocity? Vox = Voy = m/s m/s (c) Write the equations for the x- and y-components of the velocity of the stone with time. (Use the following as necessary: t. Let the variable t be measured in seconds. Do not include units in your answer.) Vx = Vy= (d) Write the equations for the position of the stone with time, using the coordinates in the figure. (Use the following as necessary: t. Let the variable t be measured in seconds. Do not state units in your answer.)A ball is launched with an initial velocity of 44.1 meters per second, at an angle of 34.4o above horizontal. When the ball reaches the ground again, what is its velocity vector? Vx→=36.4 m/s, Vy→=0 m/s Vx→=24.9 m/s, Vy→=0 m/s Vx→=−24.9 m/s, Vy→=36.4 m/s Vx→=36.4 m/s, Vy→=−24.9 m/sProblem 4 An object is launched at a velocity of 25 m/s in a direction making an angle of 20° upward with the horizontal. What is the maximum height reached by the object?
- At what speed must a basketball player leave the ground to rise 1.1 m above the floor in an attempt to get the ball?A projectile is fired from point A at the edge of a cliff, whose initial velocity components are v0x = 60.0m / s and v0y = 175m / s. The projectile rises and then falls into the sea at point P. The projectile flight time is 40.0s and it does not experience appreciable air resistance in flight. a) Make a diagram of the problem, b) Determine how far it falls, c) what is the height of the cliff? and d) at what angle was it shot?A man stands on the roof of a 15.0-m-tall building and throwsa rock with a speed of 30.0 m/s at an angle of 33.0 above the horizontal.Ignore air resistance. Calculate Draw x-t, y-t, vx-t, and vy-t graphs for the motion.