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- Ordinary differential equation arnold v. I. 常微分方程。
- Do you know how to solve the differential equation? 你知道如何解這個(gè)微分方程嗎?
- Newton's second law can be expressed as a differential equation. 牛頓第二定律可表達成微分方程。
- On the basis of the differential equation for decline of production by Arps, J. 本文從Arps;J.
- Inversion of differential equation is applied in many areas of science. 研究了在試井中應用微分方程反演理論的可能性。
- Numerical solution of differential equations. 微分方程的數值解。
- The set of all solutions of a differential equation is called the complete or general solution. 一個(gè)微分方程所有解的集合稱(chēng)為方程的全解或通解。
- An important case is the linear homogeneous second-order differential equation with constant coefficients. 一種重要的情形是常系數二階線(xiàn)性齊次微分方程。
- The continuum equation and kinematics differential equation composed the dynamic model of mixed traffic flow. 連續性方程和運動(dòng)微分方程構成了混合交通流的動(dòng)力學(xué)模型。
- The exponent of the derivative of highest order in a differential equation in standard form. 次標準形式下的微分方程里最高次序的微商的冪
- An analog computer used to solve differential equations. 用來(lái)解微分方程的一種模擬計算機。
- This is called a normal system of differential equations. 這稱(chēng)為正規微分方程組。
- To some extent, his work pays dividends in differential equations. 他的工作在某種程度上給微分方程帶來(lái)了好處。
- The analog computers were designed to solve differential equations. 模擬計算機是被設計解決微分方程的。
- Euler then shows how he can get the differential equation whose solutions are called cylinderical waves. 然后,尤拉展示他怎樣得到其解稱(chēng)為圓柱波的微分方程。
- Differential Equations and Their Applications 4th ed. 微分方程及其應用第4版。
- The method of undetermined coefficients is the general method of solving a linear differential equation with constant coefficients of the second order. 摘要二階常系數線(xiàn)性微分方程可用常規方法待定系數法求解。
- Numerical solution of second order differential equations. 二階微分方程的數值解。
- The Basic Theory of Stability of Functional Differential Equations. 泛函微分方程(超中立型)穩定性的基本理論
- TPBVP Solution reconciliation partial differential equations. 詳細說(shuō)明: 內容包括:解線(xiàn)性代數方程組、插值、數值積分、待殊函數、函數逼近、隨機數、排序、特征值問(wèn)題、數據擬合、方程求根和非線(xiàn)性方程組求解、函數的極值和最優(yōu)化、傅里葉變換譜方法、數據的統計描述、解常微分方程組、兩點(diǎn)邊值問(wèn)題的解法和解偏微分方程組。