Year 1: Introduction to nanotechnology; generic methodologies; molecular machines and motors; introduction to chemistry; electrical engineering; materials; biophysics; physics and mathematics; foundation course (if a key A-level is missing) or an elective of your choice; practical work including clean room and high-resolution lithography experience. Year 2: Molecular electronics; nanoparticle manufacture; quantum computers and scanning probe microscopy; more advanced topics in physics; materials and biochemistry; enterprise (management, formation of new industries); further mathematics; practical work including scanning probe microscopy; electron microscopy and device design. Year 3: Silicon technologies; microelectronics; biomedical nanotechnology; lab-on-a-chip, high-density storage and nanofluids; optoelectronics; self-organising molecular materials; crystal engineering; thin films; quantum transport and nanostructures; nanotechnology based industries (case studies); practical project.
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Продолж.Кол-во лет: 3 |
Equips graduates for employment in the new and emerging science-based industries, and also provides the skills needed to start up individual business enterprises; throughout the course, emphasis is placed on developing practical and experimental skills; due to the breadth of science required in the field there is a need to master the basis of a wide range of science subjects (chemistry, physics, mathematics, materials science, electronic engineering and biochemistry) and also to develop an in-depth understanding of nanotechnology and its potential applications.