4) One of the solution of the equation y"(x) + p(x)y' (x) + q(x)y(x) = 0 is given by yı (x) = sinh(2x). Moreover, the Wronskian of two independent solutions is always constant. Find another solution to the equation that is independent of y1 (x)for x > 0

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) One of the solution of the equation y"(x) + p(x)y' (x) + q(x)y(x) = 0 is given by yı (x) =
sinh(2x). Moreover, the Wronskian of two independent solutions is always constant. Find another
solution to the equation that is independent of y1 (x)for x > 0
Transcribed Image Text:4) One of the solution of the equation y"(x) + p(x)y' (x) + q(x)y(x) = 0 is given by yı (x) = sinh(2x). Moreover, the Wronskian of two independent solutions is always constant. Find another solution to the equation that is independent of y1 (x)for x > 0
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