Use Euler's method to obtain a four-decimal approximation of the indicated value. Carry out the recursion of (3) in Section 2.6 Yn + 1 = Yn + hf(xnr Yn) (3) by hand, first using h = 0.1 and then using h = 0.05. y' = 2x - 3y + 1, y(1) = 6; y(1.2) y(1.2) y(1.2) (h = 0.1) (h = 0.05)

Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
Publisher:Erwin Kreyszig
Chapter2: Second-order Linear Odes
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2.6-1

Use Euler's method to obtain a four-decimal approximation of the indicated value. Carry out the recursion of (3) in Section 2.6
Yn + 1 = Yn + hf(xn, Yn) (3)
by hand, first using h = 0.1 and then using h = 0.05.
y' = 2x - 3y + 1, y(1) = 6; y(1.2)
y(1.2)
y(1.2)
(h = 0.1)
(h = 0.05)
Transcribed Image Text:Use Euler's method to obtain a four-decimal approximation of the indicated value. Carry out the recursion of (3) in Section 2.6 Yn + 1 = Yn + hf(xn, Yn) (3) by hand, first using h = 0.1 and then using h = 0.05. y' = 2x - 3y + 1, y(1) = 6; y(1.2) y(1.2) y(1.2) (h = 0.1) (h = 0.05)
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Use Euler's method to obtain a four-decimal approximation of the indicated value. Carry out the recursion of (3) in Section 2.6
Yn + 1 = Yn + hf(xn Yn) (3)
by hand, first using h = 0.1 and then using h = 0.05.
y' = 2x - 3y + 1, y(1) = 6; y(1.2)
y(1.2) 3.47
y(1.2) 3.6372
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(h = 0.1)
(h = 0.05)
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Transcribed Image Text:Use Euler's method to obtain a four-decimal approximation of the indicated value. Carry out the recursion of (3) in Section 2.6 Yn + 1 = Yn + hf(xn Yn) (3) by hand, first using h = 0.1 and then using h = 0.05. y' = 2x - 3y + 1, y(1) = 6; y(1.2) y(1.2) 3.47 y(1.2) 3.6372 Need Help? X Read It (h = 0.1) (h = 0.05) Watch It
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