AbstractWe present a new algorithm for computing exponential solutions of differential operators with rational function coefficients. We use a combination of local and modular computations, which allows us to reduce the number of possibilities in the combinatorial part of the algorithm. We also show how unnecessarily large algebraic extensions of the constants can be avoided in the algorithm
We are interested in the approximation of the exponential function on a real interval by a particula...
A power series being given as the solution of a linear differential equation with appropriate initia...
A power series being given as the solution of a linear differential equation with appropriate initia...
AbstractWe present a new algorithm for computing exponential solutions of differential operators wit...
AbstractWe present an algorithm for computing rational solutions of linear differential equations wi...
AbstractWe present an algorithm for computing rational solutions of linear differential equations wi...
AbstractLet K be a field of characteristic zero and M(Y) =N a system of linear differential equation...
Despite recent advances in speeding up many arithmetic and algebraic algorithms plus an increased co...
The objective of this paper is twofold. First, we describe a method to solve large systems of polyno...
The objective of this paper is twofold. First, we describe a method to solve large systems of polyno...
The objective of this paper is twofold. First, we describe a method to solve large systems of polyno...
In this work, we consider a rational approximation of the exponential function to design an algorith...
In this work, we consider a rational approximation of the exponential function to design an algorith...
In this work, we consider a rational approximation of the exponential function to design an algorith...
In this work, we consider a rational approximation of the exponential function to design an algorith...
We are interested in the approximation of the exponential function on a real interval by a particula...
A power series being given as the solution of a linear differential equation with appropriate initia...
A power series being given as the solution of a linear differential equation with appropriate initia...
AbstractWe present a new algorithm for computing exponential solutions of differential operators wit...
AbstractWe present an algorithm for computing rational solutions of linear differential equations wi...
AbstractWe present an algorithm for computing rational solutions of linear differential equations wi...
AbstractLet K be a field of characteristic zero and M(Y) =N a system of linear differential equation...
Despite recent advances in speeding up many arithmetic and algebraic algorithms plus an increased co...
The objective of this paper is twofold. First, we describe a method to solve large systems of polyno...
The objective of this paper is twofold. First, we describe a method to solve large systems of polyno...
The objective of this paper is twofold. First, we describe a method to solve large systems of polyno...
In this work, we consider a rational approximation of the exponential function to design an algorith...
In this work, we consider a rational approximation of the exponential function to design an algorith...
In this work, we consider a rational approximation of the exponential function to design an algorith...
In this work, we consider a rational approximation of the exponential function to design an algorith...
We are interested in the approximation of the exponential function on a real interval by a particula...
A power series being given as the solution of a linear differential equation with appropriate initia...
A power series being given as the solution of a linear differential equation with appropriate initia...