Using any of the methods discussed for both numerical differentiation and numerical integration approximation, solve for the following functions. Show the complete procedure in calculating your answer. You may use your OWN spreadsheet in getting the value. Assume a stopping criterion of Es= 0.1. Numerical Differentiation: f(x) = e = cos x 2 1. Find f(1.5) and step size of h=0.75 and 0.1

College Algebra
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ISBN:9781938168383
Author:Jay Abramson
Publisher:Jay Abramson
Chapter6: Exponential And Logarithmic Functions
Section6.1: Exponential Functions
Problem 57SE: Repeat the previous exercise to find the formula forthe APY of an account that compounds daily....
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Using any of the methods discussed for both numerical differentiation and numerical integration
approximation, solve for the following functions. Show the complete procedure in calculating your
answer. You may use your OWN spreadsheet in getting the value. Assume a stopping criterion of Es=
0.1.
Numerical Differentiation:
f(x) = e = cos x
2
1.
Find f(1.5) and step size of h=0.75 and 0.1
Transcribed Image Text:Using any of the methods discussed for both numerical differentiation and numerical integration approximation, solve for the following functions. Show the complete procedure in calculating your answer. You may use your OWN spreadsheet in getting the value. Assume a stopping criterion of Es= 0.1. Numerical Differentiation: f(x) = e = cos x 2 1. Find f(1.5) and step size of h=0.75 and 0.1
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