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  1. The objective of this lab is to investigate projectile mo-tion, first when a projectile is fired horizontally, and then when a projectile is fired from a non-zero angle of elevation. Theory Projectile motion is an example of motion with a con-stant acceleration, with an initial velocity in any direc-tion (horizontal, vertical, or at an angle).

  2. Calculate the launch speed based on the following formula: Determine the ranges to which the ball is shot when you vary 0 in 5 degree steps from 20o to 75o. Measure the distance between the launcher and the box with the carbon paper.

  3. The purpose of this experiment is to measure the initial velocity of a ball that is fired from a projectile launcher (spring gun) by measuring its horizontal and vertical displacement.

  4. 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.

  5. Explore the interactive simulation of projectile motion, learning about kinematics and air resistance factors.

  6. locity of a projectile when fired from a spring gun hori-zontally (part 1) and to predict the landing point when the projectile is fired at a non-zero angle of elevation (part 2). Theory Projectile motion is an example of motion with a con-stant acceleration, with an initial velocity in any direc-tion (horizontal, vertical, or at an angle).

  7. The purpose of this lab is to study the properties of projectile motion. From the motion of a steel ball projected horizontally, the initial velocity of the ball can be determined from the measured range.

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