Use the Euler's and classical RK-4 methods to solve the following differential equation: 3x²y" - xy +y = 0; y(1) = 4, y (1) = 2 On the interval [1,2] with h = 0.2. (A) y = VX. Solve it to get a true solution using the following substitution method:

Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
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Chapter2: Second-order Linear Odes
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Use the Euler's and classical RK-4 methods to solve the following differential equation:
3x²y" - xy +y = 0;
y(1) = 4, y (1) = 2
On the interval [1,2] with h = 0.2.
(A)
y = VX.
Solve it to get a true solution using the following substitution method:
Transcribed Image Text:Use the Euler's and classical RK-4 methods to solve the following differential equation: 3x²y" - xy +y = 0; y(1) = 4, y (1) = 2 On the interval [1,2] with h = 0.2. (A) y = VX. Solve it to get a true solution using the following substitution method:
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