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1.
A classification of classes of equivalent linear differential equations with respect to -limit sets of their canonical representations is introduced. Some consequences of this classification with respect to the oscillatory behavior of solution spaces are presented.  相似文献   

2.
Summary It is shown that a change of the basis in the solution space of a second order linear differential equation induces a covariant change in the solution space of the corresponding iterative equation. Also studied is the problem to what extent a solution of an iterative equation determines the equation.Dedicated to the memory of Alexander M. Ostrowski on the occasion of the 100th anniversary of his birth.  相似文献   

3.
The sufficient conditions are established under which the second-order linear differential equation is conjugate.  相似文献   

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Optimal in a certain sense sufficient conditions are given for the existence and uniqueness of ω-periodic solutions of the nonautonomous ordinary differential equation u (2m) =f(t,u,...,u (m-1) ), where the function f:ℝ×ℝ m →ℝ is periodic with respect to the first argument with period ω. Received: December 21, 1999; in final form: August 12, 2000?Published online: October 2, 2001  相似文献   

6.
In this paper we provide sufficient conditions for the existence of solutions to multipoint boundary value problems for nonlinear ordinary differential equations. We consider the case where the solution space of the associated linear homogeneous boundary value problem is less than 2. When this solution space is trivial, we establish existence results via the Schauder Fixed Point Theorem. In the resonance case, we use a projection scheme to provide criteria for the solvability of our nonlinear boundary value problem. We accomplish this by analyzing a link between the behavior of the nonlinearity and the solution set of the associated linear homogeneous boundary value problem.  相似文献   

7.
The periodic boundary value problem for systems of secondorder ordinary nonlinear differential equations is considered. Sufficient conditions for the existence and uniqueness of a solution are established.  相似文献   

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This paper contains new estimates for the distance between adjacent zeros of solutions of the first order delay differential equation
x(t)+p(t)x(tτ)=0  相似文献   

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Oscillatory properties of retarded and advanced functional differential equations are investigated.In the first part, the study concerns equations with piecewise constant arguments, which found applications in certain biomedical problems. Then, results of some authors are generalized for general equations with many argument deviations. Finally, applications are given to equations with linear transformations of the argument.  相似文献   

12.
Sufficient conditions are given for the existence of oscillatory proper solutions of a differential equation with quasiderivativesL n y=f(t,L 0 y, ..., L n–1 y) under the validity of the sign conditionf(t,x 1 ,...,x n )x 10,f(t,0,x 2 ,...,x n )=0 on + x n .  相似文献   

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For the differential equation
u=f(t,u)  相似文献   

15.
Using Schauder's fixed point theorem, with the help of an integral representation in ‘Sharp conditions for weighted 1-dimensional Poincaré inequalities’, Indiana Univ. Math. J., 49 (2000) 143-175, by Chua and Wheeden, we obtain existence and uniqueness theorems and ‘continuous dependence of average condition’ for average value problem:
y=F(x,y),  相似文献   

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In this paper we study by Morse theory the existence of multiple periodic solutions of a class of ordinary differential equation with double resonance at infinity between two consecutive eigenvalues and with resonance at origin.  相似文献   

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In this paper, we are concerned with oscillations in a class of forced second-order differential equations with nonlinear damping terms. By using a classical variational principle and an averaging technique, several new interval oscillation criteria for the equations are established, which improve and extend some known results. An example is also given to illustrate the results.  相似文献   

20.
The oscillation of solutions of f+Af=0f+Af=0 is discussed by focusing on four separate situations. In the complex case AA is assumed to be either analytic in the unit disc DD or entire, while in the real case AA is continuous either on (−1,1)(1,1) or on (0,∞)(0,). In all situations AA is expected to grow beyond bounds that ensure finite oscillation for all (non-trivial) solutions, and the separation between distinct zeros of solutions is considered.  相似文献   

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