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  1. The trajectory of a projectile launched from ground is given by the equation y = -0.025 x 2 + 0.5 x, where x and y are the coordinate of the projectile on a rectangular system of axes. a) Find the initial velocity and the angle at which the projectile is launched.

  2. On this page I put together a collection of projectile motion problems to help you understand projectile motion better. The required equations and background reading to solve these problems is given on the projectile motion page . I also provide hints and numerical answers for these problems.

  3. As the pitcher releases the ball, he snaps his wrist. This puts a spin on the projectile, and air resistance does the rest. As the ball moves toward the plate, its spin moves against the air, which creates an airstream moving against the trajectory of the ball itself.

  4. Real-life Examples of Projectile Motion. The following are a few common examples of projectile motion in real life. 1) A football kicked in a game. 2) A cannonball fired from a cannon. 3) A bullet fired from a gun. 4) A disc thrown in the sport of discus throw. 5) The flight of a golf ball. 6) A jet of water escaping a hose.

  5. Blast a car out of a cannon, and challenge yourself to hit a target! Learn about projectile motion by firing various objects. Set parameters such as angle, initial speed, and mass. Explore vector representations, and add air resistance to investigate the factors that influence drag.

  6. Calculate the velocity of the missile just before it hits the ground. If the missile hits the ground and bounces up at an angle of 30 with a speed of 200 m/s, how far away from the point of impact will it land? Solution: This is a projectile motion problem, a type of motion in which, without air resis-tance, we have ax = 0 and ay = −g.

  7. 22 lip 2014 · This physics homework example problem shows how to find many common variables in a projectile motion problem, such as range, altitude, time aloft and position at a set time.