- The Sorbonne University is one of the leading engineering schools in France.
- It offers natural, technological, formal and experimental science and engineering studies.
- It has an R&D oriented study approach.
- The programs are multidisciplinary.
- The faculty has 6 departments.
If a budding engineer wants to study abroad, they should choose BTech at Sorbonne University. The Faculty of Science and Engineering at the Sorbonne University brings together an extensive and comprehensive range of formal, experimental, natural and technological studies. Its establishment is supported by strong scientific themes.
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BTech at the Sorbonne University
The list of BTech programs offered at Sorbonne University is given below:
- Course “Electronics – Computer Science for Embedded Systems”.
- Electronics – Computer Science Industrial computer science course
- mechanical engineering
- Applied mathematics and computer science
- Geosciences: planning, risks, geoenergies
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The requirements for BTech at Sorbonne University are given below:
|BTech Admission Requirements at Sorbonne University|
No specific shutdown mentioned
No specific shutdown mentioned
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What is PeiP?
The PeiP is a two-year study program to prepare for the Polytech engineering course. It provides them with a basic multidisciplinary scientific education with an engineering-oriented job profile.
PeiP students have direct access to engineering studies in all specialties of the Polytech programs. Polytech Engineering at the Sorbonne is three years in duration. Integration into the engineering program follows the national process, which is consistent across all Polytech engineering schools.
The PeiP candidate can opt for the engineering stream of their choice. It takes into account the result of the candidate in the first three semesters of the PeiP.
BTech programs at the Sorbonne University
For detailed information on the BTech programs offered at Sorbonne University please see below:
The Agrifood Engineering program offers strong skills in food science, industrial management and biotechnology. The project has an approach of a teaching aid. It allows candidates to adapt to a wide range of fields and operations.
The students are trained to deal with the issues of the agricultural and food sector, such as e.g.:
- Verify food safety while not harming the environment
- Ensure the nutritional and hygienic quality of food
- Reduce health and environmental risks
- Develop healthy food while ensuring sustainable development and paying attention to resource scarcity
Course “Electronics – Computer Science for Embedded Systems”.
The embedded systems have built a new industrial age. It uses the miniaturization of electronic chips to make everyday devices more efficient. It supports the Internet of Things.
In the Electronics – Computing Embedded Systems engineering course, candidates learn:
- Manage the limited disk space and create lightweight operating systems
- Optimize the programs and make them processor efficient
- Device with low energy consumption
- Fast time response
- Create encrypted algorithms for data protection
Electronics – Computer Science Industrial computer science course
The Electronic-Computing Industrial Computing program trains candidates to specialize in electronic computing systems such as intelligent systems, connected objects, embedded systems, etc. The curriculum is based on the implementation of applications through academic projects and operations carried out by companies. The projects gain in complexity and autonomy as the course progresses.
The acquisition of specialist skills makes it easier for candidates to enter the professional field quickly.
The mechanical engineering course is used in many sectors. It is used in designing or creating manufactured products. The aim of the program at the Sorbonne is to offer future engineers skills in multidisciplinary fields in mechanical engineering organizations.
The skills offered by the Mechanical Engineering degree are:
- Being able to design new products or develop old products to meet customers’ requirements.
- Improve the life cycle of a product while ensuring compliance with health, environmental and safety standards at all stages.
- Recognize the industrial activities as a total component, integrating the technological, technical, social and economic dimensions.
Applied mathematics and computer science
The Applied Mathematics and Computer Science engineering degree aims to train candidates with a solid knowledge of computer science and applied mathematics. Students can interact with experts, overcome their limitations and apply techniques of digital simulation, data analysis, modelling, high-performance computing or cryptography. It aims to analyze or predict models that are both relevant and efficient.
The engineering program plays an essential role in the fields of energy, telecommunications, transportation, embedded systems, agri-food, and engineering and security. They help a company respond to market demands and provide effective and reliable decision-making tools.
The Materials Engineering program trains candidates with extensive theoretical, applied knowledge and technical skills in the field of materials.
The curriculum is based on two main points:
- Physics-chemistry transdisciplinary
- Innovation and autonomy through collective work
The Robotics Engineering program is among the only engineering courses in France that give importance to robotics in all three years of study. It trains candidates in multidisciplinary studies capable of understanding the formation of a robotic system.
Robotics education aims for innovation and cutting-edge technology. It is based on the fundamentals of mechanics, computer science and electronics. The program is unique in the country and offers an integrative approach to engineering studies. It has been modified to meet the needs of organizations developing intelligent systems for the future. The students are able to design and develop complex systems.
The program is research and development oriented. Students can lead teams of multidisciplinary or technical projects. The training offers experimental learning and the realization of projects. The skills acquired by engineering graduates enable them to contribute all engineering skills beyond the field of robotics.
Geosciences: planning, risks, geoenergies
The engineering course Earth Sciences: Planning, Risks, Geoenergies offers its students the scientific and technical skills for sustainable spatial development, adaptation to and avoidance of environmental and climate change by dealing with questions of the energy transition. The issues addressed are:
- Regional planning: major structures, roads, networks and infrastructure, geotechnical and underground structures and works.
- Natural and Industrial Risks: Prevention of natural hazards and control of polluted soils and sites
- Geo-energies: Use of renewable energies such as water resources, geothermal energy and underground storage of resources.
About Engineering at Sorbonne
Engineering programs at Sorbonne University cover a range of subjects in science and technology. Its faculty attaches great importance to promoting research in all its disciplines and promoting multidisciplinary approaches to meet the challenges of the present.
The scientific excellence of the faculty is supported by its scientists, whose projects contribute to the quality of the faculty’s range of courses. The above qualities make it one of the most popular engineering schools in France.
It has 6 departments:
- mechanical engineering
- Earth Sciences, Environment and Biodiversity
The faculty also has 3 naval stations in:
- The Ecole Polytech Sorbonne
- The Paris Institute for Astrophysics
- The Henri Poincaré Institute