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The second-order ordinary differential equation satisfied by the Neumann polynomials O_n(x).
The second-order ordinary differential equation y^('')+k/xy^'+epsilony^'y=0.
The second-order ordinary differential equation (1+x^2)^2y^('')+lambday=0 (Hille 1969, p. 357; Zwillinger 1997, p. 122).
The second-order ordinary differential equation y^('')+[(alphaeta)/(1+eta)+(betaeta)/((1+eta)^2)+gamma]y=0, where eta=e^(deltax).
The second-order ordinary differential equation y^('')=y^(3/2)x^(-1/2).
The second-order ordinary differential equation y^('')+[A+Bcos(2x)+Ccos(4x)]y=0.
The second-order ordinary differential equation (Moon and Spencer 1961, p. 157; Zwillinger 1997, p. 166).
The second-order ordinary differential equation y^('')+alpha(x)y^'+x^2y^n=0.
An inhomogeneous linear ordinary differential equation with constant coefficients is an ordinary differential equation in which coefficients are constants (i.e., not ...
A homogeneous linear ordinary differential equation with constant coefficients is an ordinary differential equation in which coefficients are constants (i.e., not functions), ...
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