4. Solve the given integral equations below using Trapezoidal rule and Simpson's 3/8 rule. In each case, divide the range into nth equal subintervals and approximate to the solution. Compare your results with the exact solution. (use n = 2,4,8) cosxlogxdx a. -1 cosxdx ·So 3√x²

Advanced Engineering Mathematics
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ISBN:9780470458365
Author:Erwin Kreyszig
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Chapter2: Second-order Linear Odes
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4. Solve the given integral equations below using Trapezoidal rule and Simpson's 3/8 rule. In
each case, divide the range into nth equal subintervals and approximate to the solution. Compare
your results with the exact solution. (use n = 2,4,8)
-4πT
cosxlogxdx
a.
-1 cosxdx
b. S/². 3√x²
Transcribed Image Text:4. Solve the given integral equations below using Trapezoidal rule and Simpson's 3/8 rule. In each case, divide the range into nth equal subintervals and approximate to the solution. Compare your results with the exact solution. (use n = 2,4,8) -4πT cosxlogxdx a. -1 cosxdx b. S/². 3√x²
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