12 monthsProgramme duration
39,800 GBPTuition Fee/year
SepStarting Month
Programme overview
Main Subject
Materials Sciences
Degree
MSc
Study Level
Masters
Study Mode
On Campus
With a growing world population, there is increasing need for scientific experts and entrepreneurs who can develop novel materials with advanced properties - addressing critical issues from energy to healthcare - and take scientific discoveries to the commercial world. This degree combines frontline research-based teaching from across UCL to train the next generation of materials scientists.
The programme aims to equip students with advanced, comprehensive knowledge of materials science and related state-of-the-art technologies, an understanding of the structure, properties and applications of materials, scientific research skills, and the insight and capability to be an entrepreneur in the field. In addition, students will engage in a literature project and a six-month cutting-edge research project.
Students undertake modules to the value of 180 credits.
The programme consists of six core modules (90 credits), one optional modules (15 credits), a literature project (15 credits) and a research project/dissertation (60 credits).
Upon successful completion of 180 credits, you will be awarded a MSc in Advanced Materials Science (Energy Storage).
Programme overview
Main Subject
Materials Sciences
Degree
MSc
Study Level
Masters
Study Mode
On Campus
With a growing world population, there is increasing need for scientific experts and entrepreneurs who can develop novel materials with advanced properties - addressing critical issues from energy to healthcare - and take scientific discoveries to the commercial world. This degree combines frontline research-based teaching from across UCL to train the next generation of materials scientists.
The programme aims to equip students with advanced, comprehensive knowledge of materials science and related state-of-the-art technologies, an understanding of the structure, properties and applications of materials, scientific research skills, and the insight and capability to be an entrepreneur in the field. In addition, students will engage in a literature project and a six-month cutting-edge research project.
Students undertake modules to the value of 180 credits.
The programme consists of six core modules (90 credits), one optional modules (15 credits), a literature project (15 credits) and a research project/dissertation (60 credits).
Upon successful completion of 180 credits, you will be awarded a MSc in Advanced Materials Science (Energy Storage).
Admission Requirements
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