2. A projectile is launched from the edge of a 50 m high vertical cliff at an angle of 60° above horizontal. In 30 seconds the projectile hits the ground. Find: - the horizontal distance of the projectile motion, - the initial and final velocities of the projectile, - total displacement of the projectile.
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- A placekicker kicks a football at an angle of 23.0 degrees with respect to horizontal and the initial speed of the ball is 32.0 m/s. Ignore air resistance. During its trajectory, i.e. during the time right after the football is kicked and just before it hits the ground downfield, what are its maximum and minimum speeds?A projectile is launched at ground level with an intial vertical velocity of 25.0m/s and a horizontal velocity of 43.3m/s. It strikes a target above the ground 3.00 seconds later. a) How high is the target above the gound? b) How far did the projectile travel before hitting the target? c) What is the horizontal component of the velocity of the projectile right as it hits the target? d) What is the vertical component of the velocity of the projectile right as it hits the target?9. If a projectile (such as a bullet) is fired into the air with an initial velocity v at an angle of elevation of θ (see the figure), then the height h of the projectile at time t is given by
- 7. A basketball player is running at 4.80 m/s directly toward the basket when he jumps into the air to dunk the ball. He maintains his horizontal velocity. (For each answer, enter a number.) (a) What vertical velocity (in m/s) does he need to rise 0.750 meters above the floor? m/s (b) How far (in m) from the basket (measured in the horizontal direction) must he start his jump to reach his maximum height at the same time as he reaches the basket? m Submit OpcworA ball is launched from a 10.0 m building with an initial speed of 15.0 ?/?. If the ball’s speed when it reaches its maximum height is 1/3 its speed when it is at half its maximum height, determine ball’s launch angle and the ball’s angle at impact. This is all the information i was given!A projectile is shot in the air from ground level with an initial velocity of 490 m/sec at an angle of 60° with the horizontal. (a)At what time (in seconds) is the maximum range of the projectile attained? (b)What is the maximum range (in meters)?
- A projectile is fired from 3 meters height above level ground with an initial velocityequals to 20 m/s and at an angle equals to 30 degrees above the horizontal level. Notethat the air resistance is neglected. a) Determine, the horizontal displacement when the projectile hits the ground;Engineering dynamics. Don't use Artificial intelligence tools.A basketball player is running at 4.80 m/s directly toward the basket when he jumps into the air to dunk the ball. He maintains his horizontal velocity. (a) What vertical velocity (in m/s) does he need to rise 0.800 meters above the floor? m/s (b) How far (in m) from the basket (measured in the horizontal direction) must he start his jump to reach his maximum height at the same time as he reaches the basket? m
- 5) A ball is bounced off the ground directly south, with an initial velocity of 12 m/s from the ground, with an angle of elevation of 60 degrees. If the wind is blowing such that the ball has a constant acceleration of 3 m/s² to the west, where does the ball land relative to where it was bounced from? Set up the acceleration, velocity, and position vector functions to solve this problem.Use a graphing utility to obtain the path of a projectile launched from the ground (h = 0) at the specified values of θ = 35°, v0 = 300 feet per second. In the exercise, use the graph to determine the maximum height and the time at which the projectile reaches its maximum height. Also use the graph to determine the range of the projectile and the time it hits the ground. Round all answers to the nearest tenth.#3) A soccer ball is kicked in Ritter Park such that the initial velocity vector is at 56.0 degrees angle relative to the ground and the magnitude of the initial velocity vector is 30.0 m/s. What is the time of flight of the ball and how far did it go (neglect air resistance and assume the ground is infinitely flat)? Remember, equations first, algebra, numbers last. Report answer to three sig figs.