Master's Degree in Environmental Engineering in Nantes in France

View Masters Programs in Environmental Engineering 2017 in Nantes in France

Environmental Engineering

A master's degree is a postgraduate academic degree. One must already have an undergraduate degree to apply for a master's program. Most master's degree program would require students to complete a master's thesis or research paper.

Environmental engineering is a subset of engineering that focuses on helping to save the environment by lessening the effects of pollution, climate change and waste contamination. Individuals who work as environmental engineers create, design and implement solutions to current as well as future ecological problems.

France is currently among the 20 best performing countries in terms of the economy due to their excellent results-oriented higher education learning. Most of the courses at universities are offered in the French language. France has 60 public and 100 private universities.

Nantes is located on the Loire River in the West France. With a headcount of more than 550,000 residents, the city is the 6th largest in France. It has several areas of leisure and hosts several annual festivals. Nantes has 2 universities and numerous of colleges around the city.

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Master in Hydrodynamics and Ocean engineering

Centrale Nantes
Campus Full time 2 years September 2017 France Nantes

The aim of this program is to give students and advanced training on typical problems of hydrodynamics applied to ocean and offshore engineering: ship resistance, seakeeping, water waves and marine environment. Physical, modelling and numerical aspects are studied. [+]

The Master in Hydrodynamics and Ocean engineering

 

This Master is internationally recognized and accredited by the French Ministry of Higher Education.

The quality of the courses has been recognized within the prestigious Erasmus Mundus framework of the European commission through the EMship Master.

A large part of the training is dedicated to practical use of softwares to solve problems defined above a large variety of numerical methods: boundary elements or spectral methods under potential flow theory, finite-difference or finite-volume techniques in solvers for viscous flows, Smooth Particles Hydrodynamics (SPH).  

 

 

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