13. A soccer ball is kicked at an angle of 35° and gained an initial velocity of 40 m/s. Determine the velocity along x. 14. A soccer ball is kicked at an angle of 35° and gained an initial velocity of 40 m/s. Determine the range of the projectile 15. A soccer ball is kicked at an angle of 35° and gained an initial velocity of 40 m/s. Determine the maximum height the ball will reach.

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Answer the Problem solving. This is all about General Physics 1 Kinematics: Motion in 2- Dimensions and 3 Dimensions.

Kinematics 2: Motion in 2-Dimensions and 3-Dimenstons
Problem Solving
13.
A soccer ball is kicked at an angle of 35° and gained an initial velocity of 40
m/s. Determine the velocity along x.
14.
A soccer ball is kicked at an angle of 35° and gained an initial velocity of 40
m/s. Determine the range of the projectile
15.
A soccer ball is kicked at an angle of 35° and gained an initial velocity of 40
m/s. Determine the maximum height the ball will reach.
16.
A soccer ball is kicked at an angle of 35° and gained an initial velocity of 40
m/s. Determine the total time of flight
17.
A soccer ball is kicked at an angle of 35° and gained an initial velocity of 40
m/s. Determine the x and y position and velocity at t=1.5s
Transcribed Image Text:Kinematics 2: Motion in 2-Dimensions and 3-Dimenstons Problem Solving 13. A soccer ball is kicked at an angle of 35° and gained an initial velocity of 40 m/s. Determine the velocity along x. 14. A soccer ball is kicked at an angle of 35° and gained an initial velocity of 40 m/s. Determine the range of the projectile 15. A soccer ball is kicked at an angle of 35° and gained an initial velocity of 40 m/s. Determine the maximum height the ball will reach. 16. A soccer ball is kicked at an angle of 35° and gained an initial velocity of 40 m/s. Determine the total time of flight 17. A soccer ball is kicked at an angle of 35° and gained an initial velocity of 40 m/s. Determine the x and y position and velocity at t=1.5s
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