(xy+y)dx+(xy+x)dy=0

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Solution for (xy+y)dx+(xy+x)dy=0 equation:


Simplifying
(xy + y) * dx + (xy + x) * dy = 0

Reorder the terms for easier multiplication:
dx(xy + y) + (xy + x) * dy = 0
(xy * dx + y * dx) + (xy + x) * dy = 0

Reorder the terms:
(dxy + dx2y) + (xy + x) * dy = 0
(dxy + dx2y) + (xy + x) * dy = 0

Reorder the terms:
dxy + dx2y + (x + xy) * dy = 0

Reorder the terms for easier multiplication:
dxy + dx2y + dy(x + xy) = 0
dxy + dx2y + (x * dy + xy * dy) = 0
dxy + dx2y + (dxy + dxy2) = 0

Reorder the terms:
dxy + dxy + dxy2 + dx2y = 0

Combine like terms: dxy + dxy = 2dxy
2dxy + dxy2 + dx2y = 0

Solving
2dxy + dxy2 + dx2y = 0

Solving for variable 'd'.

Move all terms containing d to the left, all other terms to the right.

Factor out the Greatest Common Factor (GCF), 'dxy'.
dxy(2 + y + x) = 0

Subproblem 1

Set the factor 'dxy' equal to zero and attempt to solve: Simplifying dxy = 0 Solving dxy = 0 Move all terms containing d to the left, all other terms to the right. Simplifying dxy = 0 The solution to this equation could not be determined. This subproblem is being ignored because a solution could not be determined.

Subproblem 2

Set the factor '(2 + y + x)' equal to zero and attempt to solve: Simplifying 2 + y + x = 0 Reorder the terms: 2 + x + y = 0 Solving 2 + x + y = 0 Move all terms containing d to the left, all other terms to the right. Add '-2' to each side of the equation. 2 + x + -2 + y = 0 + -2 Reorder the terms: 2 + -2 + x + y = 0 + -2 Combine like terms: 2 + -2 = 0 0 + x + y = 0 + -2 x + y = 0 + -2 Combine like terms: 0 + -2 = -2 x + y = -2 Add '-1x' to each side of the equation. x + -1x + y = -2 + -1x Combine like terms: x + -1x = 0 0 + y = -2 + -1x y = -2 + -1x Add '-1y' to each side of the equation. y + -1y = -2 + -1x + -1y Combine like terms: y + -1y = 0 0 = -2 + -1x + -1y Simplifying 0 = -2 + -1x + -1y The solution to this equation could not be determined. This subproblem is being ignored because a solution could not be determined. The solution to this equation could not be determined.

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