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1.
ALMOSTPERIODICSOLUTIONSOFNEUTRALFUNCTIONALDIFFERENTIALEQUATIONSWITHNONAUTONOMOUSOPERATOR¥YUANRONG(DepartmentofMathematics,Bei...  相似文献   

2.
BOOTSTRAP MAXIMUMLIKELIHOODESTIMATIONOFTHEPARAMETERINSPECTRALDENSITYOFSTATIONARY PROCESSESYUDAN(于丹)(InstituteofSystemsScience...  相似文献   

3.
ONTHEUPPERESTIMATESOFFUNDAMENTALSOLUTIONSOFPARABOLICEQUATIONSONRIEMANNIANMANIFOLDS¥LIJIAYU;SHAOXIN(DepartmelltofMathematics,A...  相似文献   

4.
LARGE-TIMEBEHMIOROFSOLUTIONSFORTHESYSTEMOFCOMPRESSIBLEADIABATICFLOWTHROUGHPOROUSMEDIA¥XIAOLING(L.HSIAO)D.SERRE(InstituteofMat...  相似文献   

5.
ASYMPTOTICBEHAVIOROFNONOSCILLATORYSOLUTIONSOFASECONDORDERFUNCTIONALDIFFERENTIALEQUATIONS(孟繁伟)曲阜师范大学,邮编:273165MengFanwei(QufuN...  相似文献   

6.
UNIQUENESSANDITERATIVEMETHODOFPOSITIVERADIALLYSYMMETRICSOLUTIONSFORSINGULARELLIPTICEQUATIONS¥ZhaoZengqin(赵增勤)(QufuNormalUnive...  相似文献   

7.
ANOTEONREGULARITYANDEXISTENCEOFSOLUTIONSFORACLASSOFNON-UNIFORMLYDEGENERATEELLIPTICEQUATIONS¥LIJUNJIE(Dept.ofMath.,ZhejiangUni...  相似文献   

8.
ONEXISTENCE,UNIQUENESSANDREGULARITYOFSTEADYSTATESOLUTIONSTOTHEBASICSEMICONDUCTOREQUATIONSWangYuanming(王元明)FanJishan(樊继山)(Dept...  相似文献   

9.
POSITIVESOLUTIONSTOSYSTEMSOFHEATEQUATIONSWITHASEMILINEARBOUNDARYCONDITIONLINZHIGUI(林支桂)(DepartmentofMathematics,NanjingUniver...  相似文献   

10.
ASYMPTOTICBEHAVIOROFSOLUTIONSOFRETARDEDDIFFERENTIALEQUATIONSLiJingwen(李经文)(ShaoyangTeacher'sCollege)andShiYongsheng(石永生)(Ling...  相似文献   

11.
比较了Navier-Stokes 方程和Euler方程的稳定性;并以它们的典型初值问题为例,分析了Navier-Stokes方程和Euler方程稳定性不同的原因.  相似文献   

12.
We obtain new gauge-invariant forms of two-dimensional integrable systems of nonlinear equations: the Sawada-Kotera and Kaup-Kuperschmidt system, the generalized system of dispersive long waves, and the Nizhnik-Veselov-Novikov system. We show how these forms imply both new and well-known twodimensional integrable nonlinear equations: the Sawada-Kotera equation, Kaup-Kuperschmidt equation, dispersive long-wave system, Nizhnik-Veselov-Novikov equation, and modified Nizhnik-Veselov-Novikov equation. We consider Miura-type transformations between nonlinear equations in different gauges. __________ Translated from Teoreticheskaya i Matematicheskaya Fizika, Vol. 160, No. 1, pp. 35–48, July, 2009.  相似文献   

13.
Abstract In [1], Ding et al. studied the nonhomogeneous Burgers equation ut uux = μuxx 4x.(1.1) This paper will prove that when μ → 0 the solution of (1.1) will approach the generalized solution of ut uux = 4x.(1.2) The authors notice that the equation (1.2) is beyond the scope of investigations by Oleinik O. in [2]. The solutions here are unbounded in general. The paper also studies the δ-wave phenomenon when (1.2) is jointed with some other equation.  相似文献   

14.
15.
常系数线性差分方程的微分解法   总被引:1,自引:1,他引:1  
用微分方法 ,解常系数线性差分方程  相似文献   

16.
Bethuel et al.  and  and Chiron and Rousset [3] gave very nice proofs of the fact that slow modulations in time and space of periodic wave trains of the NLS equation can approximately be described via solutions of the KdV equation associated with the wave train. Here we give a much shorter proof of a slightly weaker result avoiding the very detailed and fine analysis of ,  and . Our error estimates are based on a suitable choice of polar coordinates, a Cauchy–Kowalevskaya-like method, and energy estimates.  相似文献   

17.
李宁  套格图桑 《数学杂志》2016,36(5):1103-1110
本文研究了构造了广义Kd V方程和广义KP-Burgers方程等几种广义非线性发展方程的新解的问题.利用三种辅助方程及其新解,获得了广义Kd V方程和广义KP-Burgers方程等几种广义非线性发展方程的新解.这些解由双曲余割函数、双曲正切函数、双曲正割函数、双曲余切函数和余割函数组成.  相似文献   

18.
In the paper we examine Pexiderized ?-homogeneity equation almost everywhere. Assume that G and H are groups with zero, (X,G) and (Y,H) are a G- and an H-space, respectively. We prove, under some assumption on (Y,H), that if functions and satisfy Pexiderized ?-homogeneity equation
F1(αx)=?(α)F2(x)  相似文献   

19.
1IntroductionUnique continuation of solutions to the linear partial di?erential equations with analyticcoe?cients is well known.There are more general results in elliptic,parabolic and hyperbolicequations(cf.[8-10,12-13]and references therein).The continu…  相似文献   

20.
New oscillation and nonoscillation criteria are established for the equation
,where p :]1,+[ R is the locally integrable function. These criteria generalize and complement the well known criteria of E. Hille, Z. Nehari, A. Wintner, and P. Hartman.  相似文献   

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