+₁=5, apply three iterations of Ne to find a zero for h. To how many de eloes the third approximation with Neute th the true zero of h?

Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
Publisher:Erwin Kreyszig
Chapter2: Second-order Linear Odes
Section: Chapter Questions
Problem 1RQ
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ANSWER ONLY (c)

Question 1
at An arrow is shot from the ground into the air at an
initial speed of Vo = 108 Ft /s
(a) Use the formular
h = - 16t² + vot
to determine how long it will take the arrow to reach its
maximum height. What is its maximum height?
b) Determine the height of the arrow at times t=as
and t=35, and the average rate of change of the
height of the arrow over the interval a≤t≤3
( Using t₁=5, apply three iterations of Newton's
Method to find a zero for h. To how many decinal
Places does the third approximation with Newton's method
agree with the true zero of h?
di Use the Intermediate Value Theorem to show that there
exists a number CE [4,6] such that hcc) = 130
с
e) Using t₁=4, and to=6, apply five iterations of the
Bisection method to find the value of c for which hcc)=130
To how many decimal places does the fifth approximation with
the Bisection Method agree with the true value of c?
Transcribed Image Text:Question 1 at An arrow is shot from the ground into the air at an initial speed of Vo = 108 Ft /s (a) Use the formular h = - 16t² + vot to determine how long it will take the arrow to reach its maximum height. What is its maximum height? b) Determine the height of the arrow at times t=as and t=35, and the average rate of change of the height of the arrow over the interval a≤t≤3 ( Using t₁=5, apply three iterations of Newton's Method to find a zero for h. To how many decinal Places does the third approximation with Newton's method agree with the true zero of h? di Use the Intermediate Value Theorem to show that there exists a number CE [4,6] such that hcc) = 130 с e) Using t₁=4, and to=6, apply five iterations of the Bisection method to find the value of c for which hcc)=130 To how many decimal places does the fifth approximation with the Bisection Method agree with the true value of c?
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