AbstractThis paper presents a new method to construct explicit bounds for the solutions of second order linear differential equations of the type [p(x)y′(x)]′+q(x)y(x)=0,p(x),q(x)>0, x>x0, which complements the method described in recent papers of the authors. The method lies in the use of Beesack’s version of Opial’s inequality. Some results on asymptotics of the solution for the case p(x)=1 are also included
AbstractThis paper is devoted to studying the growth of solutions of equations of type f″+h(z)eazf′+...
AbstractThis paper presents a Lyapunov-type inequality for the second order nonlinear equation (r(x)...
AbstractIt is shown that within the scope of ordinary differential equations, the unknown solutions ...
AbstractThis paper deals with the construction of explicit bounds for solutions of second order line...
AbstractThis paper improves the algorithm for the construction of explicit bounds for the solutions ...
AbstractThis paper presents a new method to construct explicit bounds for the solutions of second or...
AbstractThis paper deals with the construction of explicit bounds for solutions of second order line...
AbstractWe give necessary and sufficient conditions for the solutions of the differential equation (...
AbstractLet y(t) be a nontrivial solution of the second order differential inequality y(t){(r(t)y′(t...
Exact upper bounds on the zeros of solutions of a certain class of second-order differential inequal...
Exact upper bounds on the zeros of solutions of a certain class of second-order differential inequal...
This paper presents an upper bound for the distance between a zero and a critical point of a solutio...
Sufficient conditions on the function f are given which ensure the boundedness of the solutions of t...
We analyze the polynomial solutions of the linear differential equation p2(x)y″+p1(x)y′+p0(x)y=0 whe...
This paper presents an upper bound for the distance between a zero and a critical point of a solutio...
AbstractThis paper is devoted to studying the growth of solutions of equations of type f″+h(z)eazf′+...
AbstractThis paper presents a Lyapunov-type inequality for the second order nonlinear equation (r(x)...
AbstractIt is shown that within the scope of ordinary differential equations, the unknown solutions ...
AbstractThis paper deals with the construction of explicit bounds for solutions of second order line...
AbstractThis paper improves the algorithm for the construction of explicit bounds for the solutions ...
AbstractThis paper presents a new method to construct explicit bounds for the solutions of second or...
AbstractThis paper deals with the construction of explicit bounds for solutions of second order line...
AbstractWe give necessary and sufficient conditions for the solutions of the differential equation (...
AbstractLet y(t) be a nontrivial solution of the second order differential inequality y(t){(r(t)y′(t...
Exact upper bounds on the zeros of solutions of a certain class of second-order differential inequal...
Exact upper bounds on the zeros of solutions of a certain class of second-order differential inequal...
This paper presents an upper bound for the distance between a zero and a critical point of a solutio...
Sufficient conditions on the function f are given which ensure the boundedness of the solutions of t...
We analyze the polynomial solutions of the linear differential equation p2(x)y″+p1(x)y′+p0(x)y=0 whe...
This paper presents an upper bound for the distance between a zero and a critical point of a solutio...
AbstractThis paper is devoted to studying the growth of solutions of equations of type f″+h(z)eazf′+...
AbstractThis paper presents a Lyapunov-type inequality for the second order nonlinear equation (r(x)...
AbstractIt is shown that within the scope of ordinary differential equations, the unknown solutions ...