[Numerical Integration]. Show manual calculation. The force on a sailboat mast can be represented by the following function f(2)= 200 (5) e-2/ where z = the elevation above the deck and H= the height of the mast. The total force F exerted on the mast can be determined by integrating this function over the height of the mast F="f(3) dz Compute F for the case where H = 20 (n-3) using (a) Composite Trapezoidal Rule (b) Composite Simpson's 1/3 rule.

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ISBN:9780470458365
Author:Erwin Kreyszig
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Chapter2: Second-order Linear Odes
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[Numerical Integration]. Show manual calculation.
The force on a sailboat mast can be represented by the following function.
-2:/
f(z) = 200 (5+₂) e-²/"
where z = the elevation above the deck and H= the height of the mast. The
total force F exerted on the mast can be determined by integrating this
function over the height of the mast
F=
=ff(z
f(z) dz
Compute F for the case where H = 20 (n-3) using
(a) Composite Trapezoidal Rule
(b) Composite Simpson's 1/3 rule.
Transcribed Image Text:[Numerical Integration]. Show manual calculation. The force on a sailboat mast can be represented by the following function. -2:/ f(z) = 200 (5+₂) e-²/" where z = the elevation above the deck and H= the height of the mast. The total force F exerted on the mast can be determined by integrating this function over the height of the mast F= =ff(z f(z) dz Compute F for the case where H = 20 (n-3) using (a) Composite Trapezoidal Rule (b) Composite Simpson's 1/3 rule.
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