Internal
problem
ID
[7797]
Book
:
Differential
Equations:
Theory,
Technique,
and
Practice
by
George
Simmons,
Steven
Krantz.
McGraw-Hill
NY.
2007.
1st
Edition.
Section
:
Chapter
1.
What
is
a
differential
equation.
Section
1.2
THE
NATURE
OF
SOLUTIONS.
Page
9
Problem
number
:
3(a)
Date
solved
:
Wednesday, March 05, 2025 at 05:06:13 AM
CAS
classification
:
[_quadrature]
With initial conditions
ode:=diff(y(x),x) = x*exp(x); ic:=y(1) = 3; dsolve([ode,ic],y(x), singsol=all);
ode=D[y[x],x]==x*Exp[x]; ic={y[1]==3}; DSolve[{ode,ic},y[x],x,IncludeSingularSolutions->True]
from sympy import * x = symbols("x") y = Function("y") ode = Eq(-x*exp(x) + Derivative(y(x), x),0) ics = {y(1): 3} dsolve(ode,func=y(x),ics=ics)