Coordinator: Ramesh Gautam, Mathematical Biology Research Centre (MBRC), Nepal
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Applied Mathematics for Real-Life Phenomenon
Coordinators: Gourav Arora (India), Youcef Mammeri (France)
Branching Processes and their applications fr
Ibrahima Drame
Summary: In this course, we will study Galton- Watson processes, which are the simplest prototype of branching processes and are characterized by the fact that time is discrete and represents successive generations. On the other hand, we will consider branching processes in continuous time, that is, populations that reproduce and die at random times, continuously over time.
Clone of Clone of Clone of Clone of Clone of Clone of Clone of Clone of Clone of Clone of Clone of Clone of Clone of Clone of Clone of Clone of Clone of Clone of Introduction to real dynamical systems with applications
Jorge Mozo Fernández
Summary: The idea of this course is to give an introduction to the theory of real dynamical systems from scratch, focusing on the main elements of qualitative theory: equilibria, periodic orbits, limit cycles, … An outline of the contents is as follows:
Clone of Clone of Clone of Clone of Clone of Clone of Clone of Clone of Clone of Clone of Clone of Clone of Clone of Clone of Clone of Clone of Clone of Introduction to real dynamical systems with applications
Jorge Mozo Fernández
Summary: The idea of this course is to give an introduction to the theory of real dynamical systems from scratch, focusing on the main elements of qualitative theory: equilibria, periodic orbits, limit cycles, … An outline of the contents is as follows:
Clone of Clone of Clone of Clone of Clone of Clone of Clone of Clone of Clone of Clone of Clone of Clone of Clone of Clone of Clone of Clone of Introduction to real dynamical systems with applications
Jorge Mozo Fernández
Summary: The idea of this course is to give an introduction to the theory of real dynamical systems from scratch, focusing on the main elements of qualitative theory: equilibria, periodic orbits, limit cycles, … An outline of the contents is as follows:
Clone of Clone of Clone of Clone of Clone of Clone of Clone of Clone of Clone of Clone of Clone of Clone of Clone of Clone of Clone of Introduction to real dynamical systems with applications
Jorge Mozo Fernández
Summary: The idea of this course is to give an introduction to the theory of real dynamical systems from scratch, focusing on the main elements of qualitative theory: equilibria, periodic orbits, limit cycles, … An outline of the contents is as follows:
Clone of Clone of Clone of Clone of Clone of Clone of Clone of Clone of Clone of Clone of Clone of Clone of Clone of Clone of Introduction to real dynamical systems with applications
Jorge Mozo Fernández
Summary: The idea of this course is to give an introduction to the theory of real dynamical systems from scratch, focusing on the main elements of qualitative theory: equilibria, periodic orbits, limit cycles, … An outline of the contents is as follows:
Clone of Clone of Clone of Clone of Clone of Clone of Clone of Clone of Clone of Clone of Clone of Clone of Introduction to real dynamical systems with applications
Jorge Mozo Fernández
Summary: The idea of this course is to give an introduction to the theory of real dynamical systems from scratch, focusing on the main elements of qualitative theory: equilibria, periodic orbits, limit cycles, … An outline of the contents is as follows:
Clone of Clone of Clone of Clone of Clone of Clone of Clone of Clone of Clone of Clone of Clone of Clone of Introduction to real dynamical systems with applications
Jorge Mozo Fernández
Summary: The idea of this course is to give an introduction to the theory of real dynamical systems from scratch, focusing on the main elements of qualitative theory: equilibria, periodic orbits, limit cycles, … An outline of the contents is as follows: