Determine whether the given function is a solution to the given differential equation. y = sin x +x°. +y= x +30x* dy and sin x+x° is substituted for y, both sides of the differential equation dx The function y= sin x+x Va solution to the differential equation + y = x" + 30x", because when the second derivative is substituted for V equivalent. is is not

Calculus: Early Transcendentals
8th Edition
ISBN:9781285741550
Author:James Stewart
Publisher:James Stewart
Chapter1: Functions And Models
Section: Chapter Questions
Problem 1RCC: (a) What is a function? What are its domain and range? (b) What is the graph of a function? (c) How...
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Determine whether the given function is a solution to the given differential equation.
d'y
+y=x° + 30x*
y = sin x+x.
dy
and sin x+x° is substituted for y, both sides of the differential equation
dx
The function y = sin x+ x"
Va solution to the differential equation
+ y = x° + 30x", because when the second derivativeis substituted for
dx
V equivalent.
is
is not
Transcribed Image Text:Determine whether the given function is a solution to the given differential equation. d'y +y=x° + 30x* y = sin x+x. dy and sin x+x° is substituted for y, both sides of the differential equation dx The function y = sin x+ x" Va solution to the differential equation + y = x° + 30x", because when the second derivativeis substituted for dx V equivalent. is is not
Determine whether the given function is a solution to the given differential equation.
y = sinx+x.
+y=x° + 30x
dy
and sin x+x° is substituted for y, both sides of the differential equation
dx
The function y = sin x+x
V a solution to the differential equation
+y=x°+ 30x, because when the second derivative is substituted for
dx
equivalent.
are
аre not
Transcribed Image Text:Determine whether the given function is a solution to the given differential equation. y = sinx+x. +y=x° + 30x dy and sin x+x° is substituted for y, both sides of the differential equation dx The function y = sin x+x V a solution to the differential equation +y=x°+ 30x, because when the second derivative is substituted for dx equivalent. are аre not
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