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New gaps between zeros of fourth-order differential equations via Opial inequalities

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TLDR
In this paper, for a fourth-order differential equation, the authors established lower bounds for the distance between zeros of a nontrivial solution and their derivatives, and for the boundary value problems in the theory of bending of beams.
Abstract
In this paper, for a fourth-order differential equation, we will establish some lower bounds for the distance between zeros of a nontrivial solution and also lower bounds for the distance between zeros of a solution and/or its derivatives. We also give some new results related to some boundary value problems in the theory of bending of beams. The main results will be proved by making use of some generalizations of Opial and Wirtinger-type inequalities. Some examples are considered to illustrate the main results. MSC: 34K11; 34C10

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Journal ArticleDOI

Discrete, Continuous, Delta, Nabla, and Diamond-Alpha Opial Inequalities

TL;DR: In this article, the authors proved diamond-alpha dynamic inequalities of Opial type with one and two weight functions on time scales, which contain as special cases improvements of results given in the literature, and these improvements are new even in the important discrete case.
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A General Dynamic Inequality of Opial Type

TL;DR: In this paper, the authors present a new general dynamic inequality of Opial type, which is new even in both the continuous and discrete cases and is proved by making use of a recently introduced new technique for Opial dynamic inequalities, the time scales integration by parts formula.
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Distribution of zeros of solutions of self-adjoint fourth order differential equations

TL;DR: In this article, lower bounds on the distance between zeros of a nontrivial solution and their derivatives were established for self-adjoint fourth-order differential equations, by making use of some generalizations of Hardy, Opial and Wirtinger type inequalities.
References
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Inequalities related to the zeros of solutions of certain second order differential equations

TL;DR: In this article, some new inequalities related to the zeros of the solutions of certain second order differential equations were established by using elementary analysis, which can be used as handy tools in the study of qualitative behavior of solutions of the associated equations.
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On the distance between zeroes

TL;DR: In this article, it was shown that if the above equation is oscillatory and if q (t) e LP[O. oe], 1 (b a) 2/4 > (t a)(b t) for t E (a, b), equation (2) that (ba)2 fb q + q(t) dt >(b a),
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Some dynamic wirtinger-type inequalities and their applications

TL;DR: In this article, the authors presented new continuous and discrete Wirtinger-type inequalities on time scales for a class of half-linear dynamic equations on which disconjugacy is possible.
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