activity
20152020
most citedNonlinear elliptic equations on Carnot groups

12 citations · 15 across the 5 of their papers we have counts for

collaborators

7 papers

math.OC2020

Pursuit Game for an Infinite System of First-Order Differential Equations with Negative Coefficients

Gafurjan Ibragimov, Massimiliano Ferrara, Idham Arif Alias +1

In this paper we study a linear pursuit differential game described by an infinite system of first-order differential equations in Hilbert space. The control functions of players a…

q-fin.GN2018

Geobiodynamics and Roegenian Economic Systems

Constantin Udriste, Massimiliano Ferrara, Dorel Zugravescu +2

This mathematical essay brings together ideas from Economics, Geobiodynamics and Thermodynamics. Its purpose is to obtain real models of complex evolutionary systems. More specific…

q-fin.GN2018

Phase Diagram for Roegenian Economics

Constantin Udriste, Massimiliano Ferrara, Ionel Tevy +2

We recall the similarities between the concepts and techniques of Thermodynamics and Roegenian Economics. The Phase Diagram for a Roegenian economic system highlights a triple poin…

math.AP201712 cited

Nonlinear elliptic equations on Carnot groups

Massimiliano Ferrara, Giovanni Molica Bisci, Dušan Repovš

This article concerns a class of elliptic equations on Carnot groups depending on one real positive parameter and involving a subcritical nonlinearity (for the critical case we ref…

math.OC20151 cited

A dynamic Stackelberg game for green supply chain management

Mehrnoosh Khademi, Massimiliano Ferrara, Mehdi Salimi +1

In this paper, we establish a dynamic game to allocate CSR (Corporate Social Responsibility) to the members of a supply chain. We propose a model of a three-tier supply chain in a…

math.OC2015

An infinite dimensional pursuit-evasion differential game with finite number of players

Mehdi Salimi, Massimiliano Ferrara

We study a pursuit-evasion differential game with finite number of pursuers and one evader in Hilbert space with geometric constraints on the control functions of players. We solve…