3. Perform the following integration: x'dx =? a) Then use trapezoidal rule with n = 4 to approximate the same integral. Note that there are various trapezoidal rule utilities on-line that you can use. In fact, Microsoft Excel can easily do trapezoidal rule. However, for this part, you need to provide the computational details. With n = 4, the computations can be easily done by hand. Compare your finding with the exact solution.

Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
Publisher:Erwin Kreyszig
Chapter2: Second-order Linear Odes
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3. Perform the following integration: x'dx =?
a) Then use trapezoidal rule with n =4 to approximate the same integral. Note that there are various
trapezoidal rule utilities on-line that you can use. In fact, Microsoft Excel can easily do trapezoidal rule.
However, for this part, you need to provide the computational details. With n = 4, the computations can
be easily done by hand. Compare your finding with the exact solution.
b) Now use trapezoidal rule with n = 30 to approximate the same integral. You definitely need to use a
trapezoidal rule utility on this part. Do NOT do this by hand! Compare your finding with the exact
solution.
Transcribed Image Text:3. Perform the following integration: x'dx =? a) Then use trapezoidal rule with n =4 to approximate the same integral. Note that there are various trapezoidal rule utilities on-line that you can use. In fact, Microsoft Excel can easily do trapezoidal rule. However, for this part, you need to provide the computational details. With n = 4, the computations can be easily done by hand. Compare your finding with the exact solution. b) Now use trapezoidal rule with n = 30 to approximate the same integral. You definitely need to use a trapezoidal rule utility on this part. Do NOT do this by hand! Compare your finding with the exact solution.
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