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Systems of linear differential equations can be handled by using the methods of linear algebra . 線性微分方程組可以應(yīng)用線性代數(shù)中的方法求解。 The solution of the set of second-order linear differential equations (6.10) depends on the eigenvalues of a . 二階線性微分方程組(610)的解依賴于A的特征值。 Solving linear differential equations with variable substitution 用變量代換求解幾類線性微分方程 The growth of the solution of a certain linear differential equation 一類線性微分方程解的增長性 An oscillation result of higher order linear differential equation 一類高階線性微分方程解的復(fù)振蕩 Zeros of solutions of higher order linear differential equations 高階線性微分方程解的不動(dòng)點(diǎn)與零點(diǎn) Hew method to solve the second order linear differential equation 二階線性微分方程求解的一個(gè)新方法 Oscillations of even - order linear differential equation with impulses 偶數(shù)階線性脈沖微分方程解的振動(dòng)性 The growth of solutions of some higher order linear differential equation 一類高階線性微分方程解的增長性 Solution to one kind of variable coefficient linear differential equations 一類變系數(shù)線性微分方程的求解問題
In mathematics, linear differential equations are differential equations that have solutions which can be added together to form other solutions. They can be ordinary or partial.
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