Using Newton's Divided Difference, the interpolating polynomial of the points (xo.Yo) = (- 2,1), (x1,V1)=(-1,3), (x2.Y2) = (0,2) , (x3.Y3) = (1, – 2) , and (x4.Y4) = (2, – 1) can be represented by p(x) = Co + C1P1(x) + C2P2(x) + C3P3(x) + C4Pa(x). Now, compute Pa(3) . А) 40 B 60 20 D 120
Using Newton's Divided Difference, the interpolating polynomial of the points (xo.Yo) = (- 2,1), (x1,V1)=(-1,3), (x2.Y2) = (0,2) , (x3.Y3) = (1, – 2) , and (x4.Y4) = (2, – 1) can be represented by p(x) = Co + C1P1(x) + C2P2(x) + C3P3(x) + C4Pa(x). Now, compute Pa(3) . А) 40 B 60 20 D 120
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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