3. Use False-Position method to solve the same problem in Number 2. Use the same lower and upper limit. Show your solution for each iteration. Use a stopping criterion for this problem of 0.5%. Follow the table below to show your answers. Iteration XL 0.1 1 XU 0.2 XR F(xl) F(xu) F(xr) Approx. Error
3. Use False-Position method to solve the same problem in Number 2. Use the same lower and upper limit. Show your solution for each iteration. Use a stopping criterion for this problem of 0.5%. Follow the table below to show your answers. Iteration XL 0.1 1 XU 0.2 XR F(xl) F(xu) F(xr) Approx. Error
Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
Publisher:Erwin Kreyszig
Chapter2: Second-order Linear Odes
Section: Chapter Questions
Problem 1RQ
Related questions
Question
solve number 3 only thank you

Transcribed Image Text:m
S
m
2. Use bisection to determine the drag coefficient needed
so that an 80kg bungee jumper has a velocity of 36 after
4s of free fall. Note: The acceleration of gravity is 9.81- s2
Start with initial guesses of x₁ = 0.1 and xy = 0.2. Use a stopping
criterion of 2%. Show your solution for each iteration and follow
the table below to show your answers.
Iteration
1
XL(put if + or -)
0.1
XU(put if + or -) XR(put if + or -)
0.2
Approx. Error

Transcribed Image Text:3. Use False-Position method to solve the
same problem in Number 2. Use the same
lower and upper limit. Show your solution for
each iteration. Use a stopping criterion for
this problem of 0.5%. Follow the table below
to show your answers.
Iteration XL
0.1
1
XU
0.2
XR
F(xl)
F(xu)
F(xr) Approx. Error
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