To create sustained fusion reactions, fusion fuel must be heated to 100 million degrees. The fuel is rapidly converted to plasma, which is extremely difficult to confine and control. New international facilities using high-energy lasers and superconducting magnets are crucial steps on the way to reliable fusion energy, but there are still many challenges to overcome.
This MSc will prepare you to address these challenges. You will be equipped in theoretical concepts, and computational and technical skills to understand and address the need to develop fusion and plasma technologies. You will have opportunities to conduct cutting-edge research under the guidance of experts at the York Plasma Institute and School of Physics, Engineering and Technology.
You'll have unrivalled opportunities to interact with world-class international fusion experts, making the MSc in Fusion Energy an excellent way to explore your interest in fusion and prepare for a career in this field.
Extra Notes
* NOTE : The Tuition Fee is subject to change Semester wise, as such for exact Tuition Fee kindly see the Website of the respective University.
* NOTE : Pathways : Students who want to pursue a Graduate Degree through a particular University but are unable to meet the university requirements for the GPA, GRE/GMAT or English Language scores, have to take up an additional academic and language support i.e. pathways in order to ensure the admit and study at the desired University.