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Date: 11-6-2018
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If one solution () to a second-order ordinary differential equation
(1) |
is known, the other () may be found using the so-called reduction of order method. From Abel's differential equation identity
(2) |
where
(3) |
is the Wronskian.
Integrating gives
(4) |
(5) |
and solving for gives
(6) |
But
(7) |
so combining (◇) and (◇) yields
(8) |
(9) |
Disregarding , since it is simply a multiplicative constant, and the constants and , which will contribute a solution which is not linearly independent of , leaves
(10) |
In the special case , this simplifies to
(11) |
If both general solutions to a second-order nonhomogeneous differential equation are known, variation of parameters can be used to find the particular solution.
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