calcolare45pj
2022-03-28
slokningol09
Beginner2022-03-29Added 6 answers
Dixie Reed
Beginner2022-03-30Added 15 answers
Step 1
For a differential equation of the form in y, y need not be differentiable at any points such that in order for the equation to be satisfied everywhere else. Hence, the domain of y must initially be assumed to be , where , and it is only extended to if the singularities are removable.
In your example equation, , y is assumed implicitly to have domain , making the domain disconnected. The equation must be separately solved for the cases . For the case of , there are three further cases to consider: , which is trivial, and . For the three cases, one has
,
respectively. These simplify to
,
which are the cases such that
.
Step 2
The cases can be collapsed into a single case, where , and .
For , the analysis is completely analogous, resulting in the most general solution to be where . Thus, the general solution family for the equation is given by
Of course, some solutions can be continuously and differentiably extended to , but this requires that . Such solutions satisfy the differential equation in .
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