f(x) = x sin(x) + x cos(x) + 10 Use an approximate percentage relative error of...
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f(x) = x³ sin(x) + x² cos(x) + 10 Use an approximate percentage relative error of 10% as a termination criterion. 2. Determine the root of the function cos(x² + 7) + sin(3x² - 1)-3(x-1) in the interval [02] using Bisection method i Newton's Method Secant Method You can use MATLAB or a calculator for the calculations, but you need to show the steps of your work. The accuracy of your solution f(x) should be less than 10 3. Use Newton's method to find the real roots of the following polynomials: . 1. Use Bisection method, False Position, Secant, and Newton's methods to find a solution to f(x) in the interval [2,4] . . x³-5x² +7x-3=0 x49x3³ +24x² - 36x + 80 = 0 Use an approximate percentage relative error of 10 as a termination criterion of 4. Solve the equation e* - 2x - 2 = 0 by the secant method. Use x = 1 and 2 as starting values. Use an appropriate termination criterion. 5. Solve the same equation in problem 4 using the False position method. Compare your results for both problems, 4 and 5. f(x) = x³ sin(x) + x² cos(x) + 10 Use an approximate percentage relative error of 10% as a termination criterion. 2. Determine the root of the function cos(x² + 7) + sin(3x² - 1)-3(x-1) in the interval [02] using Bisection method i Newton's Method Secant Method You can use MATLAB or a calculator for the calculations, but you need to show the steps of your work. The accuracy of your solution f(x) should be less than 10 3. Use Newton's method to find the real roots of the following polynomials: . 1. Use Bisection method, False Position, Secant, and Newton's methods to find a solution to f(x) in the interval [2,4] . . x³-5x² +7x-3=0 x49x3³ +24x² - 36x + 80 = 0 Use an approximate percentage relative error of 10 as a termination criterion of 4. Solve the equation e* - 2x - 2 = 0 by the secant method. Use x = 1 and 2 as starting values. Use an appropriate termination criterion. 5. Solve the same equation in problem 4 using the False position method. Compare your results for both problems, 4 and 5.
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1 Using the Bisection Method to find a solution to fx xsinx cosx 10 in the interval 2 4 Initialization a 2 b 4 01 100 10 approximate percentage relative error Bisection Method Step 1 Compute the midpo... View the full answer
Related Book For
Applied Numerical Methods With MATLAB For Engineers And Scientists
ISBN: 9781259027437
3rd Edition
Authors: Steven C. Chapra
Posted Date:
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