Votre navigateur est obsolète !

Pour une expériencenet et une sécurité optimale, mettez à jour votre navigateur. Mettre à jour maintenant

×

Hassane AZZI

Backend Development Engineer C++ / Java / Python

Mobility: Île-de-France, Toulouse, Bordeaux
Activities: Software Development, Operations Research, Optimization, Machine Learning
Defense clearance: Secret Defense (currently valid)
Employed Open to opportunities
Professional Profile
Computer Science Engineer, option: Operations Research & Optimization (M2INFO_RO - 2016) from ENAC (Ecole Nationale de l'Aviation Civile), I apply my expertise in operations research, advanced algorithms, and software development (C++, Java, Python) to projects across various industrial sectors. My combined scientific and technical skills enable me to develop robust and optimized solutions tailored to challenges of performance, reliability, and operational efficiency.

Applied Data Science

Columbia Engineering & Emeritus Institute of Management

January 2019 to May 2019
Training in Data Science and Machine Learning:
-Data analysis and visualization;
-Use of Python Frameworks (NumPy, Pandas, Scikit-Learn, Matplotlib);
-Study of some Machine Learning algorithms: Random Forest, Text Mining, Linear Regression, Decision Trees, K-Means, SVM, Gradient Descent, Neurals Networks.

Master's degree in Computer Science: Operations Research & Optimization (M2INFO_RO)

ENAC | ENSEEIHT | ISAE-SUPAERO | INSA | Université Toulouse III - Paul Sabatier

September 2016 to September 2018
A master's degree in Operations Research (M2RO) at ENAC (École Nationale de l'Aviation Civile) is a high-level program specializing in modeling, optimization, operations research and the solving of complex problems related to transportation, aeronautics, logistics, and other industrial sectors.

Modules & courses
Applied Mathematics · Operations Research · Optimization · Mathematical modeling · Linear programming · Combinatorial Optimization · Mathematical Programming · Graphs and networks · Optimization applications in the air transportation · Constraint programming · Optimization under uncertainty · Algorithmic complexity · Air Traffic Management (ATM) · Machine Learning Algorithms