Consider xy' = y(lnx-lny) with y(1) = 4. Using Runge-Kutta method with h=0.1, the k3 in the computation of y(1.4) is of the form 4 In (²). Compute In (). (a) - 0.77006 (b)-0.77600 (c) - 0.70706 (d) -0.70067

Advanced Engineering Mathematics
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Chapter2: Second-order Linear Odes
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Consider xy' = y(ln x – In y) with y(1) = 4. Using Runge-Kutta method
with h=0.1, the k3 in the computation of y(1.4) is of the form In (). Compute
In -).
(а) — 0.77006
(b) – 0.77600
(c) – 0.70706
(d) – 0.70067
Transcribed Image Text:Consider xy' = y(ln x – In y) with y(1) = 4. Using Runge-Kutta method with h=0.1, the k3 in the computation of y(1.4) is of the form In (). Compute In -). (а) — 0.77006 (b) – 0.77600 (c) – 0.70706 (d) – 0.70067
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