Internal problem ID [5876]
Book: THEORY OF DIFFERENTIAL EQUATIONS IN ENGINEERING AND MECHANICS.
K.T. CHAU, CRC Press. Boca Raton, FL. 2018
Section: Chapter 3. Ordinary Differential Equations. Section 3.6 Summary and Problems. Page
218
Problem number: Problem 3.2.
ODE order: 1.
ODE degree: 2.
CAS Maple gives this as type [_quadrature]
\[ \boxed {{y^{\prime }}^{2}+y^{2}=a^{2}} \]
✓ Solution by Maple
Time used: 0.094 (sec). Leaf size: 68
dsolve(diff(y(x),x)^2=a^2-y(x)^2,y(x), singsol=all)
\begin{align*} y \left (x \right ) = -a y \left (x \right ) = a y \left (x \right ) = -\tan \left (-x +c_{1} \right ) \sqrt {\frac {a^{2}}{\tan \left (-x +c_{1} \right )^{2}+1}} y \left (x \right ) = \tan \left (-x +c_{1} \right ) \sqrt {\frac {a^{2}}{\tan \left (-x +c_{1} \right )^{2}+1}} \end{align*}
✓ Solution by Mathematica
Time used: 3.336 (sec). Leaf size: 111
DSolve[(y'[x])^2==a^2-y[x]^2,y[x],x,IncludeSingularSolutions -> True]
\begin{align*} y(x)\to -\frac {a \tan (x-c_1)}{\sqrt {\sec ^2(x-c_1)}} y(x)\to \frac {a \tan (x-c_1)}{\sqrt {\sec ^2(x-c_1)}} y(x)\to -\frac {a \tan (x+c_1)}{\sqrt {\sec ^2(x+c_1)}} y(x)\to \frac {a \tan (x+c_1)}{\sqrt {\sec ^2(x+c_1)}} y(x)\to -a y(x)\to a \end{align*}