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强迫项的英文

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"强迫项"怎么读用"强迫项"造句

英文翻译手机手机版

  • forced term
  • forcing term

例句与用法

  • On oscillation and asymptotic behavior of a neutral delay difference equation with forcing term
    强迫项的中立型差分方程的振动性和渐进性
  • Oscillatory and asymptotic behavior of solutions for higher order neutral equations with forcing term
    强迫项的非线性高阶中立型方程解的渐进性和振动性
  • Asymptotic behavior of solutions for the higher order nonlinear difference equations with variable delay argument
    强迫项高阶非线性中立型差分方程的振动性与渐近性
  • Oscillation and asymptotic property of solutions for second order nonlinear functional differential equations with forcing term
    强迫项的二阶非线性泛函微分方程解的振动性与渐近性
  • We obtain several necessary and sufficient conditions for every solution of the equations is oscillatory or tends to zero in every condition of the coefficient of neutral term
    第一章讨论了带有强迫项的一阶变系数中立型微分方程在中立型系数的各种情形下其解振动或趋于零的充分必要条件。
  • Chapter three , we consider the forced first order difference equations with variable coefficients , and obtain some necessary and sufficient conditions for every solution of the equations is oscillatory or tends to zero
    第三章建立了带有强迫项的一阶变系数中立型差分方程解振动或趋于零的充分必要条件。
  • In this paper , asymptotic behaviour of solutions for forced nonlinear differential systems with distributed delays is discussed . the reults of 6 is extended and delightfull result is obtained
    研究了一类带有强迫项的具有连续型滞量的非线性微分方程组解的渐近性.进一步推广了文6中的主要结果,得到了系统的解趋于零的充分条件
  • In this article , we discuss the oscillation for forced first order neutral difference and differential equations with variable coefficients and the existence of nonoscillatory solutions of higher - order neutral differential equations with positive and negative coefficients . the article is composed of three chapters . chapter one , we consider the forced first , order differential equations with variable coefficients
    本文讨论了带有强迫项的一阶变系数中立型微分方程和带有强迫项的一阶变系数中立型差分方程的振动性,以及具正负系数的高阶中立型微分方程的非振动解的存在性,共分为三章。
  • In the second chapter , the high order neutral differential equation with forced term is considered , and sufficient condition and necessary condition for existence of nonoscil - latory solution x ( t ) satisfying liminf | x ( t ) | > 0 are obtained , respectively , there exist a d 0 , such that in the third chapter , the high order neutral differential equation with forced term and its special condition are considered , and necessary condition for nonoscillatory solution of ( * ) , set then ( b ) if n is even integer , > t , and ( c ) if n is odd integer , p ( t ) = l , and are obtained , respectively
    ) 0的非振动解x ( t )存在的充分条件,即存在d 0 ,使及必要条件,存在d 0 ,使在第三章中讨论带强迫项的高阶中立型微分方程及特殊情形给出方程( * )在一定条件下非振动解的必要条件。令则有及方程( * * )在一定条件下解振动的充分条件, ( a )若n为奇数,且带强迫项的高阶中立型徽分方程的振动性( b )若n为偶数,且
  • By citing a series of counterexamples , , e demonstrate in section 5 that famous indian scholar e . thandapani ' s and american scholar k . ravy ' s classification methods are essentially , rong for second order quasi - linear difference equation , ith damped term in " computers and mathematics , ith applications " , state ne , results and solve completely the problem for the classification of this kind of equation
    通过列举一系列的反例,我们在第五节指出,著名的印度学者e thandapani和美国学者k ravy在《 computersandmathematicswithapplications 》上关于具有强迫项的二阶拟线性差分方程非振动解的分类方法是根本错误的,给出了新的结论,完整地解决了这类方程的分类问题。
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