Q3. A projectile is launched from point A with the initial conditions shown in the figure. After applying the equations of projectile motion, the equation below is determined. Calculate the angle a required for the projectile to reach to point C. Take the initial guess for a as 0.5 rad. 150 m c Vo=68-m/s" 38.2 m A 400 sina cosa - 169.7 = 38.2 cos?a

Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
Publisher:Erwin Kreyszig
Chapter2: Second-order Linear Odes
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A projectile is launched from
point A with the initial conditions
shown in the figure. After applying
the equations of projectile motion,
the equation below is determined.
Calculate the angle α required for the
projectile to reach to point C. Take the
initial guess for α as 0.5 rad.
Use The methods shown in your solutions within the scope of Engineering Mathematics course. For the necessary problems, only Simpson's Rule (take the number of sections as n = 4), NewtonRaphson Method, Least Squares Method should be used.

Q3. A projectile is launched from
point A with the initial conditions
shown in the figure. After applying
the equations of projectile motion,
the equation below is determined.
Calculate the angle a required for the
projectile to reach to point C. Take the
initial guess for a as 0.5 rad.
150 m
vo= 68 m/s
38.2 m
400 sina cosa – 169.7 = 38.2 cos?a
Transcribed Image Text:Q3. A projectile is launched from point A with the initial conditions shown in the figure. After applying the equations of projectile motion, the equation below is determined. Calculate the angle a required for the projectile to reach to point C. Take the initial guess for a as 0.5 rad. 150 m vo= 68 m/s 38.2 m 400 sina cosa – 169.7 = 38.2 cos?a
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