Use a numerical solver and Euler's method to obtain a four-decimal approximation of the indicated value. Use a step size h = 0.2 y'=y-y², y(0)=0.8; y(1) a. y(1) ≈ 0.9418 b. y(1) 0.9118 C. y(1) ≈ 0.9318 d. y(1) 0.9218 e. y(1) ≈ 0.9204

Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
Publisher:Erwin Kreyszig
Chapter2: Second-order Linear Odes
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Use a numerical solver and Euler's method to obtain a four-decimal
approximation of the indicated value. Use a step size h = 0.2
y'=y-y², y(0)=0.8; y(1)
a. y(1) ≈ 0.9418
b.
y(1) 0.9118
C. y(1) ≈ 0.9318
d.
e.
y(1)
0.9218
y(1) ≈ 0.9204
Transcribed Image Text:Use a numerical solver and Euler's method to obtain a four-decimal approximation of the indicated value. Use a step size h = 0.2 y'=y-y², y(0)=0.8; y(1) a. y(1) ≈ 0.9418 b. y(1) 0.9118 C. y(1) ≈ 0.9318 d. e. y(1) 0.9218 y(1) ≈ 0.9204
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