Suppose a car move from A to B with distance m (meter), and time t (second),as...
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Suppose a car move from A to B with distance m (meter), and time t (second),as given in the following table. m (meter) 1.000 1.100 1.300 1.500 1.900 Table 1 1- First: Using least squares polynomials t (second) 1.840 1.960 2.210 2.450 2.940 a. Find the least squares polynomials of degrees 2 b. Find absloute error for m= 1.5 2- Second Using Neville's method a. Use Neville's method to obtain the approximations for Lagrange interpolating polynomials of degrees one, two, and three, four to approximate each of the table1. 3- Third: compare P₂(1.5) between Answer in 1 (using least sequares method ) and answer in 2 (using Neville's method) degree 4. 4- Fourth : Calculate speed at distance m= 1.5 meter, using Numerical Differentiation's method ONLY. (write the method's name and formula that you will use) Suppose a car move from A to B with distance m (meter), and time t (second),as given in the following table. m (meter) 1.000 1.100 1.300 1.500 1.900 Table 1 1- First: Using least squares polynomials t (second) 1.840 1.960 2.210 2.450 2.940 a. Find the least squares polynomials of degrees 2 b. Find absloute error for m= 1.5 2- Second Using Neville's method a. Use Neville's method to obtain the approximations for Lagrange interpolating polynomials of degrees one, two, and three, four to approximate each of the table1. 3- Third: compare P₂(1.5) between Answer in 1 (using least sequares method ) and answer in 2 (using Neville's method) degree 4. 4- Fourth : Calculate speed at distance m= 1.5 meter, using Numerical Differentiation's method ONLY. (write the method's name and formula that you will use)
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Solution biven data mmeler 111 13 15 19 t Second 184 196221 245 294 we know that by least square app... View the full answer
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Operations Management Creating Value Along the Supply Chain
ISBN: 978-0470525906
7th Edition
Authors: Roberta S. Russell, Bernard W. Taylor
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