| 1. | A method to settle special answer for the linear differential equation with constant coefficient 阶常数非齐次微分方程特解的新方法 |
| 2. | Special integral form of order 2 constant coefficient innomogeneous linear differential equation 二阶常系数非齐次线性微分方程特解形式 |
| 3. | The method to solve particular solution for a class of n order constant coefficient nonhomogeneour diefferential equation 阶常系数非齐次微分方程特解的计算 |
| 4. | The new method of solving special integral of n order linear inhomogeneous differential equation with constant coefficients 阶常系数线性一般非齐次微分方程特解公式 |
| 5. | Some methods to find particular solutions to second - order constant coefficient inhomogenous linear differential equation 二阶常系数非齐次线性微分方程特解的一些求法 |
| 6. | The particular solution of n - th order general inhomogeneous linear ordinary differential equation with constant coefficient 一种求常系数非齐次线性微分方程特解的方法 |
| 7. | The specified solution formula derivation of second order non - homogeneous linear differential equation with constant coefficients 二阶常系数非齐次线性微分方程特解公式的推导 |
| 8. | This paper introduces three methods to find solutions to second - order constant coefficient inhomogenous linear differential equation , namely multinomial method , ascending order method and integration method 摘要求二阶常系数线性微分方程特解的方法虽然有许多种,但用多项式法、阶数上升法、积分法求二阶常系数线性微分方程的特解是比较简便的。 |