5. Use Euler's method to compute an approximation X(0.65) to the solution x(0.65) of the initial value problem. d³x d²x de3+ dez (x-t) + x(0.5) = -1, dx 2 -x²=0 d²x (0.5) = 1, using step size of h = 0.05 (0.5) = 2

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5. Use Euler's method to compute an approximation X(0.65) to the solution x(0.65) of the initial
value problem.
d³x d²x
de3+ dez (x-t) +
x(0.5) = -1,
dx
dt
2
(0.5) = 1,
-x²=0
dez (05) = 2
using step size of h = 0.05
Transcribed Image Text:5. Use Euler's method to compute an approximation X(0.65) to the solution x(0.65) of the initial value problem. d³x d²x de3+ dez (x-t) + x(0.5) = -1, dx dt 2 (0.5) = 1, -x²=0 dez (05) = 2 using step size of h = 0.05
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