Apply Simpson's Rule to the following integral. It is easiest to obtain the Simpson's Rule ap Make a table showing the approximations and errors for n = 4, 8, 16, and 32. The exact valu 6 √4e-4x 0 dx = 1 -e 24 ≈1.000000

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Chapter2: Second-order Linear Odes
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Please help with table for n=8, n=16, and n=32
Apply Simpson's Rule to the following integral. It is easiest to obtain the Simpson's Rule ap
Make a table showing the approximations and errors for n = 4, 8, 16, and 32. The exact valu
6
S4e-4x
0
Complete the table below.
(Type integers or decimals. Round to six decimal places as needed.)
Absolute Error in
T(n)
S(n)
3.014909
n
4
8
dx = 1 -e-24 ≈1.000000
an example
-
Get more help -
T(n)
2.014909
Absolute Error in
Po
S(n)
Transcribed Image Text:Apply Simpson's Rule to the following integral. It is easiest to obtain the Simpson's Rule ap Make a table showing the approximations and errors for n = 4, 8, 16, and 32. The exact valu 6 S4e-4x 0 Complete the table below. (Type integers or decimals. Round to six decimal places as needed.) Absolute Error in T(n) S(n) 3.014909 n 4 8 dx = 1 -e-24 ≈1.000000 an example - Get more help - T(n) 2.014909 Absolute Error in Po S(n)
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