The differen equation y + 3y® (y' + 5x) y' can be written in differential form: M(x, y) dx + N(x,y) dy = 0 where M(x, y) = and N(x, y) The term M(x, y) dx + N(x,y) dy becomes an exact differential if the left hand side above is divided by y°. Integrating that new equation, the solution of the differential equation is = C.

Calculus: Early Transcendentals
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Chapter1: Functions And Models
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"0 © 5 51% i16:56
45G
webwork.yeditepe.edu.tr
18
INCAL IIUN ICITI
The differential equation
y + 3y° = (y' + 5x) y'
can be written in differential form:
М(а, у) da + N(л, у) dy — 0
where
M(x, y)
and N(x, y)
6.
The term M(x, y) dx + N(x, y) dy
becomes an exact differential if the left hand
side above is divided by y°. Integrating that
new equation, the solution of the differential
equation is
= C.
Transcribed Image Text:"0 © 5 51% i16:56 45G webwork.yeditepe.edu.tr 18 INCAL IIUN ICITI The differential equation y + 3y° = (y' + 5x) y' can be written in differential form: М(а, у) da + N(л, у) dy — 0 where M(x, y) and N(x, y) 6. The term M(x, y) dx + N(x, y) dy becomes an exact differential if the left hand side above is divided by y°. Integrating that new equation, the solution of the differential equation is = C.
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