A method for solving first order differential equation 2 5 1 3 4 t 6 Across 4 A differential equation of the form y' + p(x)y=q(x)y^n where n is real number (9) 5 A missing expression that makes a differential equation exact is referred to as factor. (11) 6 This differential equation is ensured to have a solution if it passes the test for exactness. (5) Ⓒ Down 1 Differential equation that is solvable by the substitution y =vx where v is an arbitrary function of x (11) O 2 Uses the roots of a polynomial. (9) 3 The category of differential. equations that are of the form A(x)dx+ B(y)dy = 0 (9) O

Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
Publisher:Erwin Kreyszig
Chapter2: Second-order Linear Odes
Section: Chapter Questions
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A method for solving first order differential equation
2
5
1
3
4
t
6
Across
4 A differential equation of the
form y' + p(x)y=q(x)y^n
where n is real number (9)
5 A missing expression that
makes a differential equation
exact is referred to as
factor. (11)
6 This differential equation is
ensured to have a solution if
it passes the test for
exactness. (5) Ⓒ
Down
1 Differential equation that is
solvable by the substitution y
=vx where v is an arbitrary
function of x (11) O
2 Uses the roots of a
polynomial. (9)
3 The category of differential.
equations that are of the
form A(x)dx+ B(y)dy = 0 (9)
O
Transcribed Image Text:A method for solving first order differential equation 2 5 1 3 4 t 6 Across 4 A differential equation of the form y' + p(x)y=q(x)y^n where n is real number (9) 5 A missing expression that makes a differential equation exact is referred to as factor. (11) 6 This differential equation is ensured to have a solution if it passes the test for exactness. (5) Ⓒ Down 1 Differential equation that is solvable by the substitution y =vx where v is an arbitrary function of x (11) O 2 Uses the roots of a polynomial. (9) 3 The category of differential. equations that are of the form A(x)dx+ B(y)dy = 0 (9) O
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