The projectile motion of a thrown ball can be calculated using the following form Horizontal Displacement x = xo + vot cos 0 Vertical Displacement y = yo + vot sin 0 gt2 - Where x, and y, are the initial displacement horizontally and vertically. vo is the of the ball, t is the time taken to complete the projectile motion. 0 is the thro legree and a is the gravitational acceleration constant

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Using MATLAB and taking pictures directly from the application

The projectile motion of a thrown ball can be calculated using the following formula:
Horizontal Displacement
х — Хо + vot cos @
Vertical Displacement
gt?
y = yo + vot sin 0
Where x, and yo are the initial displacement horizontally and vertically. vo is the initial velocity
of the ball, t is the time taken to complete the projectile motion. 0 is the throwing angle in
degree and g is the gravitational acceleration constant.
a) Given x, = 0, yo = 0, g = 9.81, throwing angle = 75°, initial velocity = 10, build a
%3D
%3D
%3D
MATLAB
program to obtain the following:
i)
Time taken for the ball to reach 50m horizontally, x.
ii) The vertical displacement, y if the given time is 1s.
Transcribed Image Text:The projectile motion of a thrown ball can be calculated using the following formula: Horizontal Displacement х — Хо + vot cos @ Vertical Displacement gt? y = yo + vot sin 0 Where x, and yo are the initial displacement horizontally and vertically. vo is the initial velocity of the ball, t is the time taken to complete the projectile motion. 0 is the throwing angle in degree and g is the gravitational acceleration constant. a) Given x, = 0, yo = 0, g = 9.81, throwing angle = 75°, initial velocity = 10, build a %3D %3D %3D MATLAB program to obtain the following: i) Time taken for the ball to reach 50m horizontally, x. ii) The vertical displacement, y if the given time is 1s.
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