MSc Civil Engineering and Management
The MSc Civil Engineering and Management program at the University of Nottingham aim to...
Jubilee Campus
INTAKE: September
The MSc Cyberphysical Systems (2 year) program offered by the University of Nottingham is an extended pathway designed to provide students with an in-depth exploration of the dynamic and essential field of cyberphysical systems. This interdisciplinary program focuses on the integration of physical systems with computational components, equipping students to design, develop, and manage cutting-edge technological systems over an extended duration.
Comprehensive Curriculum: The MSc Cyberphysical Systems (2 year) program offers an extended and comprehensive curriculum that covers various aspects of cyberphysical systems, including embedded systems, sensors, data processing, and connectivity.
Integration of Disciplines: The program seamlessly integrates knowledge from computer science, engineering, and electronics to provide students with a holistic understanding of cyberphysical systems.
Extended Research Opportunities: The two-year duration of the program allows students to engage in more extensive research projects, enabling them to delve deeper into the complexities of cyberphysical systems.
Practical Skill Development: Students gain ample hands-on experience through practical assignments, projects, and extended laboratory sessions focused on designing and implementing cyberphysical systems.
Industry Collaboration: The University of Nottingham's strong ties with industry partners provide students with opportunities for internships, placements, and exposure to real-world projects over an extended period.
Cutting-edge Technologies: The program emphasizes the latest advancements in IoT (Internet of Things), automation, robotics, and smart technologies that form the core of cyberphysical systems.
Jubilee Campus
IELTS 6.5
£ 17667
Postgraduate Entry Requirements: For admission into postgraduate programs at the University of Nottingham, international students are generally required to meet the following criteria:
Academic Qualifications: Students should have completed a bachelor's degree or its equivalent with a minimum of 60% or above in their country's grading system. The specific entry requirements may vary depending on the chosen program of study. Some programs may have additional subject-specific requirements or prerequisite knowledge.
Students must provide:
Work experience: Some postgraduate courses may require relevant work experience in the field.
It is important to note that meeting the minimum entry requirements does not guarantee admission, as the university considers factors such as availability of places and competition for the program. Additionally, some courses may have higher entry requirements or additional selection criteria, such as interviews or portfolio submissions.
Scholarships for International Students at the University of Nottingham:
It's important to note that scholarship availability, eligibility criteria, and application deadlines may vary from year to year.
Graduates of the MSc Cyberphysical Systems (2 year) program from the University of Nottingham are well-prepared to pursue diverse and impactful career paths.
Advanced Embedded Systems Engineer: Graduates can work as advanced embedded systems engineers, equipped with a deeper understanding of complex systems and more extensive practical experience.
IoT Specialist: With extended expertise in IoT technologies, graduates can take on leadership roles in developing and managing interconnected devices and systems.
Automation Expert: Graduates can pursue expert roles in automation, designing intricate systems that seamlessly integrate physical processes with computational control.
Research and Development: Graduates can excel in research and development roles, driving innovation in cyberphysical systems and emerging technologies.
Technology Consultant: Graduates can become sought-after technology consultants, providing specialized insights and guidance on the implementation and optimization of cyberphysical systems.