Problem B.3. The integral of "e¯ax* is easier to evaluate when n is odd. (a) Evaluate -az? re dx. (No computation allowed!) (b) Evaluate the indefinite integral (i.e., the antiderivative) of re simple substitution. xe-az? using a (c) Evaluate -ar dx. xe e da. -ax? (d) Differentiate the previous result to evaluate

Advanced Engineering Mathematics
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Chapter2: Second-order Linear Odes
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Problem B.3. The integral of x"e¯ax* is easier to evaluate when n is odd.
(a) Evaluate
-az²
xe
dx. (No computation allowed!)
(b) Evaluate the indefinite integral (i.e., the antiderivative) of xe-aæ*,
simple substitution.
using a
(c)
Evaluate 1
-ar?
dr.
3,-ar dr.
(d) Differentiate the previous result to evaluate
Transcribed Image Text:Problem B.3. The integral of x"e¯ax* is easier to evaluate when n is odd. (a) Evaluate -az² xe dx. (No computation allowed!) (b) Evaluate the indefinite integral (i.e., the antiderivative) of xe-aæ*, simple substitution. using a (c) Evaluate 1 -ar? dr. 3,-ar dr. (d) Differentiate the previous result to evaluate
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