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      1. The Institut Supérieur d'Electronique de Paris, located in the heart of Paris, next to the "Quartier Latin," was created in 1955, just where Edouard Branly, Teacher of Physics at the "Catholic University of Paris" (21 Rue d'Assas), discovered in 1890 the radio conductors which would lead to the invention of the French Television. Classrooms, Labs, and Administration of the school are located in a building built in 1988 and located at the 28, rue Notre-Dame-des-Champs, Paris. The ISEP master's degree is recognized by the engineering accreditation institution (CTI) since 1960. In 1969, the school formed an association with 19 other schools (27 until today) of the catholic private sector. This association is named FESIC (Engineer and Management Graduate Schools Federation). In 1971, the school was recognized by the French government. In 2014, ISEP opened a new campus at Issy-les-Moulineaux. SEP is a French engineering graduate school in digital technology, known as a "Grande École d'Ingénieurs." ISEP trains very high-level graduate engineers who receive thorough training in Electronics, Telecommunications & Networks, Software Engineering, Signal-Image Processing, and Humanities, providing them with the required knowledge and skills to meet the needs of businesses. Since 2008, ISEP has been offering an international program taught entirely in English, which allows international students to obtain the Engineering Master Degree. Digital technology is everywhere: from complicated industrial equipment to daily objects (mobile phones, transportation, household appliances, etc.). It holds an essential place in a globalized economy and opens up new hiring opportunities for our graduates. There is a shortage of engineers in our country: every year, nearly 37,000 engineers are trained in France, but actually, the French job market requires 42,000 Engineers. ISEP engineers are active in different IT-related business sectors: computer consulting, software, hardware, aerospace and automotive, banks, insurance, pharmaceutical, etc. Basing on the survey of the French magazine Usine Nouvelle, ISEP is ranked among the top French graduate engineering institutions: France's 1st private engineering school and 11th out of 106 best engineering graduate schools. ISEP welcomes a diverse range of international students at both undergraduate and postgraduate levels. International students with a Bachelor's degree or equivalent in related fields (e.g., computer engineering, electrical engineering, electronic engineering, telecommunications, computer science) can apply for the Engineering Master Degree program, entirely taught in English: 3 specializations are proposed: Embedded Sytems, Software Engineering and Wireless Telecommunication and IoT Systems. Step international team will help you get started and keep you informed of every necessary step, from the beginning to your successful academic achievement. Here you will find some useful and practical information to prepare (and enjoy) your stay at ISEP.
      2. Welcome to ESIEA, the Graduate University that provides high-level engineering training and develops the personal abilities of our students, giving them life skills that make all the difference! ESIEA was founded in 1958. It is a Great University of Engineering Science and Digital Technology. Recognized p ar the state, the University has 7,200 graduates. ESIEA is authorized since 1986 by the Engineering Title Commission (ITC) to deliver the engineering degree and has the EUR-ACE Label Bachelor levels Master facilitating international mobility of students. ESIEA is a member: - of the Conference des Grandes Ecoles (CGE) - the Union of Independent Grandes Ecoles (UGEI). ESIEA trains engineers of digital science and technology, adaptable to their environment technique and human, and different industries' requirements. It has more than 1000 students and offers courses in five years on the same two sites (Paris and Laval). ESIEA is managed voluntarily as an association by its 7 200 former students, who invest all resources in the teachings and Research. Its modular education (several custom courses in fourth and 5th year after a solid general foundation in computing and electronics) and through action leaves room for motivations and students skills they practice in different projects, both in science and technology in human formation. in the first year, the search is at the heart of teaching and ESIEA. It is structured around two cross-cutting research themes Paris / Laval: The laboratory "Digital Trust and Safety" (CNS) deals with the application of technologies and methods of information security and systems as part of a comprehensive approach to safety and security of data, applications, networks, systems, and infrastructure. It adopts as its primary methodological approach the vision of the attacker. The laboratory "Digital Interactions, Health and Disability" (Insh) deals with the contribution of virtual reality technologies and embedded systems, and more generally interactive digital systems in the field of health and disability. It involves the design of models and methods for disability support and the integration of technologies to develop tools and interfaces.
      3. Located in Tonantzintla, Puebla, the Instituto Nacional de Astrofísica, Óptica y Electrónica (INAOE) was founded by presidential decree on November 12, 1971. It is a decentralized organization that focuses on public interest; it also has judicial independence and assets. As an institution, the INAOE has the following goals: To train researchers, specialized professors, experts, and technicians in astrophysics, optics, and electronics. To solve scientific and technological problems within those fields. To drive educative and research activities that aim for the solution of specific problems in México. To give courses and award degrees (masters and doctorates) in the fields mentioned. The INAOE is part of a long-standing scientific tradition that dates back to 1942 when Luis Enrique Erro founded the Observatorio Astrofísico Nacional de Tonantzintla. This town, Tonantzintla, is an ideal location for an observatory because of clear skies during the night and a strategic geographical position. It also has minimal light pollution, a quality that Mexico's capital does not possess. The observatory paved the way for modern astrophysics in México and Latin America (at the inauguration of the observatory, there was a Schmidt Camera). Important astronomers have worked at the Observatorio Astrofísico Nacional de Tonantzintla: founder Luis Enrique Erro, Guillermo Haro, Luis Rivera Terrazas, and astronomer Enrique Chavira. The observatory has helped the country to bridge international scientific borders. The INAOE has a collection of over 15,000 photographic plates obtained from the Schmidt Camera from different sky regions, mainly from within the following constellations: Orion, Taurus, Cancer, Scorpius, Sagittarius, Ursa Major, and Ursa Minor, among others. Many discoveries were made with this camera. The most important is the discovery of Herbig-Haro objects, which are considered star formation indicators. Novae and supernovae were also discovered along with blue galaxies and countless flare stars and the Haro-Chavira comet, discovered in 1954 in the Taurus region. Dr. Guillermo Haro replaced Erro as director. Under Haro's direction, the observatory became one of the essential astronomy sites in Latin America due to its scientific work quality. In 1971, Haro decided to create the INAOE, as he realized how vital optics and electronics were for México. The Optics Department was founded in, and two years later, the Electronics Department started its activities. Since its creation, one of the INAOE's goals is to shape young researchers capable of identifying and solving scientific and technological problems in astrophysics, optics, and electronics. Master in Optics studies started in 1972 and, in 1974, Electronics studies were created. The Optics Doctorate program started in 1984, and the Electronics Doctorate program started in 1993, along with the Astrophysics Master and Doctorate studies programs. The Computer Science Master and Doctorate programs were created in 1998. Full dedication is expected of our students to develop their abilities and create an excellent work environment. The INAOE provides them with work areas, labs, computers and supports them in all efforts to merit scholarships as visiting students at other national and international institutes. To contribute to the generation, advancement, and dissemination of knowledge for Mexico and humanity's development by identifying and solving scientific and technological problems and training specialists in astrophysics, optics, electronics, computer science, and related areas. INAOE is a Public Investigation Center with high international leadership in the field of scientific investigations. Our goal is to impulse technological and human resource development in the fields of Astrophysics, Optics, Electronics, and Computer Sciences. We are also committed to national growth by promoting social values like solidarity, creativity, and competitiveness.
      4. The Moscow Institute of Electronics and Mathematics (MIEM) was incorporated into the HSE structure on December 30, 2011, as a subdivision specializing in educating highly qualified engineers and scientists. Miami's mission is to acquire fundamental knowledge and develop applied technologies in the electronics, engineering, and aerospace industries. Since its founding in 1962, MIEM has been one of the leading Russian technical universities conducting top-level research in applied mathematics, physics, electronics, I.T., and robotics. Today, MIEM trains specialists to work in high-tech industries by providing a full-cycle higher education through its undergraduate, Masters's, and doctoral programs. Project-oriented educational programs provide our students with the opportunity to participate in professional teams at MIEM's partner organizations, which include the largest scientific and industrial corporations, institutes of the Russian Academy of Sciences (RAS), and IT-companies: S.P. Korolev Rocket and Space Corporation Energia, Khrunichev State Research and Production Space Centre, Lavochkin Research and Production Association, Vega Radio Engineering Corporation, Gazprom Space Systems, All-Russian Research Institute for Optical and Physical Measurements Federal State Unitary Enterprise (VIII), Kapitza Institute for Physical Problems RAS, RAS Computing Centre, RAS Institute of Space Research, Centre for Scientific Research in Chernogolovka, JSC ЕС-leasing, I-Teco Company, and InterTrust Company. Authorized centers of leading software companies such as IBM, Mentor Graphics, Autodesk, Motorola, QNAP, and ZyXel are based at the Institute. MIEM is organized into three schools (School of Applied Mathematics, School of Computer Engineering, School of Electronic Engineering), seven joint departments, and six research laboratories. It has approximately 200 faculty members and more than 1,500 undergraduate and graduate students. Faculty members include 9 Academicians and Corresponding Members of the Russian Academy of Sciences and 34 Russian State Prize Laureates. MIEM offers undergraduate programs in: Computer Science and Engineering, Applied Mathematics, Cybersecurity, Info communication Technologies and Communication Systems. Current research and education areas include mathematical and computer simulation, control systems and information processing, cybersecurity and cryptology, computational systems and networks, 3D-visualization and computer graphics technologies, intelligent control systems and robotics, Big Data, electronics and nanoelectronics, condensed matter physics, information and communication devices, and communication systems. MIEM is regularly one of the six leading technical universities in Russia in university rankings by admission quality. A study carried out in 2015 by the SuperJob recruitment agency and the Russian Ministry of Education and Science showed that the average monthly salary for MIEM graduates one year after graduation is 97,000 roubles.MIEM graduates are in demand and work at large international companies, such as Microsoft, Intel, IBM, АМD Boeing, and Airbus, in the defense industry and at research centers, in RAS institutes and leading Russian ICT companies, such as Yandex, Kaspersky Lab, I-Teco, and others.
      5. Welcome to the London Electronics College web site. Our goal is to provide you with useful information about the college. We hope this makes it easier for you to select us as your place to study. The London Electronics College is a center of adult learning providing technical training since it was established in 1892. Courses have moved with the times - several new courses have been introduced in the last few years, more this year. Small classes and a friendly environment help make learning enjoyable and rewarding. The college is very close to the exhibition center in Earls Court and a twenty-minute walk from Olympia and Holland Park. The area is well served by both buses, the tube, and rail. View full university
      6. Welcome to the London Electronics College web site. Our goal is to provide you with useful information about the college. We hope this makes it easier for you to select us as your place to study. The London Electronics College is a center of adult learning providing technical training since it was established in 1892. Courses have moved with the times - several new courses have been introduced in the last few years, more this year. Small classes and a friendly environment help make learning enjoyable and rewarding. The college is very close to the exhibition center in Earls Court and a twenty-minute walk from Olympia and Holland Park. The area is well served by both buses, the tube, and rail.
      7. The Moscow Institute of Electronics and Mathematics (MIEM) was incorporated into the HSE structure on December 30, 2011, as a subdivision specializing in educating highly qualified engineers and scientists. Miami's mission is to acquire fundamental knowledge and develop applied technologies in the electronics, engineering, and aerospace industries. Since its founding in 1962, MIEM has been one of the leading Russian technical universities conducting top-level research in applied mathematics, physics, electronics, I.T., and robotics. Today, MIEM trains specialists to work in high-tech industries by providing a full-cycle higher education through its undergraduate, Masters's, and doctoral programs. Project-oriented educational programs provide our students with the opportunity to participate in professional teams at MIEM's partner organizations, which include the largest scientific and industrial corporations, institutes of the Russian Academy of Sciences (RAS), and IT-companies: S.P. Korolev Rocket and Space Corporation Energia, Khrunichev State Research and Production Space Centre, Lavochkin Research and Production Association, Vega Radio Engineering Corporation, Gazprom Space Systems, All-Russian Research Institute for Optical and Physical Measurements Federal State Unitary Enterprise (VIII), Kapitza Institute for Physical Problems RAS, RAS Computing Centre, RAS Institute of Space Research, Centre for Scientific Research in Chernogolovka, JSC ЕС-leasing, I-Teco Company, and InterTrust Company. Authorized centers of leading software companies such as IBM, Mentor Graphics, Autodesk, Motorola, QNAP, and ZyXel are based at the Institute. MIEM is organized into three schools (School of Applied Mathematics, School of Computer Engineering, School of Electronic Engineering), seven joint departments, and six research laboratories. It has approximately 200 faculty members and more than 1,500 undergraduate and graduate students. Faculty members include 9 Academicians and Corresponding Members of the Russian Academy of Sciences and 34 Russian State Prize Laureates. MIEM offers undergraduate programs in: Computer Science and Engineering, Applied Mathematics, Cybersecurity, Info communication Technologies and Communication Systems. Current research and education areas include mathematical and computer simulation, control systems and information processing, cybersecurity and cryptology, computational systems and networks, 3D-visualization and computer graphics technologies, intelligent control systems and robotics, Big Data, electronics and nanoelectronics, condensed matter physics, information and communication devices, and communication systems. MIEM is regularly one of the six leading technical universities in Russia in university rankings by admission quality. A study carried out in 2015 by the SuperJob recruitment agency and the Russian Ministry of Education and Science showed that the average monthly salary for MIEM graduates one year after graduation is 97,000 roubles.MIEM graduates are in demand and work at large international companies, such as Microsoft, Intel, IBM, АМD Boeing, and Airbus, in the defense industry and at research centers, in RAS institutes and leading Russian ICT companies, such as Yandex, Kaspersky Lab, I-Teco, and others. View full university
      8. Located in Tonantzintla, Puebla, the Instituto Nacional de Astrofísica, Óptica y Electrónica (INAOE) was founded by presidential decree on November 12, 1971. It is a decentralized organization that focuses on public interest; it also has judicial independence and assets. As an institution, the INAOE has the following goals: To train researchers, specialized professors, experts, and technicians in astrophysics, optics, and electronics. To solve scientific and technological problems within those fields. To drive educative and research activities that aim for the solution of specific problems in México. To give courses and award degrees (masters and doctorates) in the fields mentioned. The INAOE is part of a long-standing scientific tradition that dates back to 1942 when Luis Enrique Erro founded the Observatorio Astrofísico Nacional de Tonantzintla. This town, Tonantzintla, is an ideal location for an observatory because of clear skies during the night and a strategic geographical position. It also has minimal light pollution, a quality that Mexico's capital does not possess. The observatory paved the way for modern astrophysics in México and Latin America (at the inauguration of the observatory, there was a Schmidt Camera). Important astronomers have worked at the Observatorio Astrofísico Nacional de Tonantzintla: founder Luis Enrique Erro, Guillermo Haro, Luis Rivera Terrazas, and astronomer Enrique Chavira. The observatory has helped the country to bridge international scientific borders. The INAOE has a collection of over 15,000 photographic plates obtained from the Schmidt Camera from different sky regions, mainly from within the following constellations: Orion, Taurus, Cancer, Scorpius, Sagittarius, Ursa Major, and Ursa Minor, among others. Many discoveries were made with this camera. The most important is the discovery of Herbig-Haro objects, which are considered star formation indicators. Novae and supernovae were also discovered along with blue galaxies and countless flare stars and the Haro-Chavira comet, discovered in 1954 in the Taurus region. Dr. Guillermo Haro replaced Erro as director. Under Haro's direction, the observatory became one of the essential astronomy sites in Latin America due to its scientific work quality. In 1971, Haro decided to create the INAOE, as he realized how vital optics and electronics were for México. The Optics Department was founded in, and two years later, the Electronics Department started its activities. Since its creation, one of the INAOE's goals is to shape young researchers capable of identifying and solving scientific and technological problems in astrophysics, optics, and electronics. Master in Optics studies started in 1972 and, in 1974, Electronics studies were created. The Optics Doctorate program started in 1984, and the Electronics Doctorate program started in 1993, along with the Astrophysics Master and Doctorate studies programs. The Computer Science Master and Doctorate programs were created in 1998. Full dedication is expected of our students to develop their abilities and create an excellent work environment. The INAOE provides them with work areas, labs, computers and supports them in all efforts to merit scholarships as visiting students at other national and international institutes. To contribute to the generation, advancement, and dissemination of knowledge for Mexico and humanity's development by identifying and solving scientific and technological problems and training specialists in astrophysics, optics, electronics, computer science, and related areas. INAOE is a Public Investigation Center with high international leadership in the field of scientific investigations. Our goal is to impulse technological and human resource development in the fields of Astrophysics, Optics, Electronics, and Computer Sciences. We are also committed to national growth by promoting social values like solidarity, creativity, and competitiveness. View full university
      9. Welcome to ESIEA, the Graduate University that provides high-level engineering training and develops the personal abilities of our students, giving them life skills that make all the difference! ESIEA was founded in 1958. It is a Great University of Engineering Science and Digital Technology. Recognized p ar the state, the University has 7,200 graduates. ESIEA is authorized since 1986 by the Engineering Title Commission (ITC) to deliver the engineering degree and has the EUR-ACE Label Bachelor levels Master facilitating international mobility of students. ESIEA is a member: - of the Conference des Grandes Ecoles (CGE) - the Union of Independent Grandes Ecoles (UGEI). ESIEA trains engineers of digital science and technology, adaptable to their environment technique and human, and different industries' requirements. It has more than 1000 students and offers courses in five years on the same two sites (Paris and Laval). ESIEA is managed voluntarily as an association by its 7 200 former students, who invest all resources in the teachings and Research. Its modular education (several custom courses in fourth and 5th year after a solid general foundation in computing and electronics) and through action leaves room for motivations and students skills they practice in different projects, both in science and technology in human formation. in the first year, the search is at the heart of teaching and ESIEA. It is structured around two cross-cutting research themes Paris / Laval: The laboratory "Digital Trust and Safety" (CNS) deals with the application of technologies and methods of information security and systems as part of a comprehensive approach to safety and security of data, applications, networks, systems, and infrastructure. It adopts as its primary methodological approach the vision of the attacker. The laboratory "Digital Interactions, Health and Disability" (Insh) deals with the contribution of virtual reality technologies and embedded systems, and more generally interactive digital systems in the field of health and disability. It involves the design of models and methods for disability support and the integration of technologies to develop tools and interfaces. View full university
      10. The Institut Supérieur d'Electronique de Paris, located in the heart of Paris, next to the "Quartier Latin," was created in 1955, just where Edouard Branly, Teacher of Physics at the "Catholic University of Paris" (21 Rue d'Assas), discovered in 1890 the radio conductors which would lead to the invention of the French Television. Classrooms, Labs, and Administration of the school are located in a building built in 1988 and located at the 28, rue Notre-Dame-des-Champs, Paris. The ISEP master's degree is recognized by the engineering accreditation institution (CTI) since 1960. In 1969, the school formed an association with 19 other schools (27 until today) of the catholic private sector. This association is named FESIC (Engineer and Management Graduate Schools Federation). In 1971, the school was recognized by the French government. In 2014, ISEP opened a new campus at Issy-les-Moulineaux. SEP is a French engineering graduate school in digital technology, known as a "Grande École d'Ingénieurs." ISEP trains very high-level graduate engineers who receive thorough training in Electronics, Telecommunications & Networks, Software Engineering, Signal-Image Processing, and Humanities, providing them with the required knowledge and skills to meet the needs of businesses. Since 2008, ISEP has been offering an international program taught entirely in English, which allows international students to obtain the Engineering Master Degree. Digital technology is everywhere: from complicated industrial equipment to daily objects (mobile phones, transportation, household appliances, etc.). It holds an essential place in a globalized economy and opens up new hiring opportunities for our graduates. There is a shortage of engineers in our country: every year, nearly 37,000 engineers are trained in France, but actually, the French job market requires 42,000 Engineers. ISEP engineers are active in different IT-related business sectors: computer consulting, software, hardware, aerospace and automotive, banks, insurance, pharmaceutical, etc. Basing on the survey of the French magazine Usine Nouvelle, ISEP is ranked among the top French graduate engineering institutions: France's 1st private engineering school and 11th out of 106 best engineering graduate schools. ISEP welcomes a diverse range of international students at both undergraduate and postgraduate levels. International students with a Bachelor's degree or equivalent in related fields (e.g., computer engineering, electrical engineering, electronic engineering, telecommunications, computer science) can apply for the Engineering Master Degree program, entirely taught in English: 3 specializations are proposed: Embedded Sytems, Software Engineering and Wireless Telecommunication and IoT Systems. Step international team will help you get started and keep you informed of every necessary step, from the beginning to your successful academic achievement. Here you will find some useful and practical information to prepare (and enjoy) your stay at ISEP. View full university
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