Программа обучения Nanobiophysics

Программа обучения "Nanobiophysics" в Technische Universität Dresden

Nanobiophysics

The master course teaches students the fundamentals of biophysics and bio-nanotechnology with two goals in mind: to prepare students to use nanotechnological approaches to better characterize and understand complex molecular machines such as biomolecules and also to harness these molecules in technological systems or use them as templates or model systems for a bottom-up nanotechnology.

The aims of the study programme are as follows: - inderdisciplinary training in the area of molecular and cellular biophysics - acquisition of in-depth knowledge of the scientific fundamentals of nanobiophysics - acquisition of in-depth knowledge of the recent methods of molecular cell biology and biochemistry, biophysics and nanotechnology.

The syllabus for the first semester comprises introductory courses in biochemistry and polymer science as well as courses on the fundamentals of biophysics and molecular modelling. In the second semester, the courses focus on biophysics and nanophysics. In the third semester, the students specialize in one field in which they choose four required elective courses from different specialisation fields (e.g. biophysics, biology, nanotechnology). The fourth semester is reserved for writing the master's thesis.

Общая Информация по Программе обучения "Nanobiophysics"

  • Уровень: Магистратура
  • Диплом: Master of Science (M.Sc.)
  • Язык обучения: Английский
  • Начало обучения: Зимний семестр
  • Срок обучения: 4 семестров
  • Форма обучения: Полная
  • Учебные кредиты: 120 ECTS
  • Стоимость: € 0 / Семестр
  • Семестровый взнос: € 304.50 / семестр
  • Правила приема: Без конкурса
  • Минимальный уровень английского: B2

Описание программы обучения "Nanobiophysics"

Molecules in our cells are genetically encoded nanomachines with amazing functionalities, and they work together in fascinating ways to provide the capabilities that make all life on earth possible. On the one hand it is essential that we describe, harness and engineer cellular machines, and on the other hand we need to understand the dynamics and activities that emerge when many such machines are put together to function in cells and tissues.

This goal can best be reached by providing interdisciplinary training and introducing students with a thorough education in physics or related quantitative subjects to the fascinating fields of molecular biology, quantitative cell and developmental biology, polymer science, biophysics and biophysical theory, bionanotechnology, and the amazing world of single molecule approaches.

The master program intends to teach students the physics of life. Our aim is to provide fundamentals in biophysics, biology and bionanotechnology in order to a) better characterize molecular machines, b) discover and understand emergent properties of molecular machines in cells and tissues, and c) harness these molecules in technological systems for bottom-up nanotechnology.

Selected students have a Fast Track option into the Dresden International PhD Program (DIPP).

Карьерные перспективы по завершению программы обучения "Nanobiophysics"

The course is highly research-oriented. A graduate in Nanobiophysics will have the possibility to

  • continue in basic research, conduct research in institutions of higher education, or occupy a research position in a biotech company
  • work in health biotechnology companies (for the design of new devices and medical therapeutics
  • develop new materials using cellular machines
  • develop new ways of sustainable energy production by using the molecular machinery of the cells

Международный обмен по программе обучения "Nanobiophysics"

Fancy a semester abroad? Study abroad, internships or language courses - as a student, you will definitely benefit from a stay abroad. You can improve your technical and language skills, make contacts, make friends, get to know other cultures and much more.

Учебный план программы обучения "Nanobiophysics"

The syllabus for the first semester comprises introductory courses in biochemistry and polymer science as well as courses on the fundamentals of biophysics and molecular modelling. In the first semester, nanotechnology is discussed from the angle of nanobiotechnology to introduce basic interdisciplinary concepts.

In the second semester, the courses focus on biophysics and nanophysics. Students gain an in-depth overview of molecular and cellular biophysics as well as molecular nanostructures and nanomachines in theory and experiments. Special emphasis is placed on modern single molecule techniques (single molecule optics, scanning probe microscopy techniques) which are of fundamental practical importance both in nanophysics and biophysics.

In the third semester, the students specialize in one field in which they choose four required elective courses from different specialization fields (e.g., biophysics, biology, nanotechnology). These courses have a strong orientation towards the latest fields of research. Furthermore, students take three big lab rotations in biophysics, nanophysics and an optional subject, in which practical skills and competences are imparted.

The fourth semester is reserved for writing the Master's thesis.

  • Учебный план / модули: http://www.biotec.tu-dresden.de/fileadmin/teaching/CurriculumNano/170406__CurriculumExam_Nanobio_MolBiophy.pdf
    http://www.biotec.tu-dresden.de/uploads/RTEmagicP_Curriculum_Scheme_Nanobio_WS10_01.JPG
    http://www.biotec.tu-dresden.de/fileadmin/teaching/CurriculumNano/140806_CurriculumExam_Nanobio__Nanosce_Nanotech_TrackBiophysics.pdf
    http://www.biotec.tu-dresden.de/fileadmin/teaching/CurriculumNano/150720_SOinklAnlagen_NBP.pdf
    http://www.biotec.tu-dresden.de/fileadmin/teaching/CurriculumNano/150720_PruefONanobio.pdf
  • Факультет

    Center for Molecular and Cellular Bioengineering (CMCB)
    Technische Universität Dresden

    The Center for Molecular and Cellular Bioengineering (CMCB) focuses on interdisciplinary research and teaching in the life sciences. As a central unit of TU Dresden, the CMCB combines the interdisciplinary institutes B CUBE, BIOTEC and CRTD, and has close links to multiple schools and faculties at TU Dresden. The CMCB aims at creating synergies among intra- and extramural institutes in Dresden to provide an internationally oriented academic environment with cutting-edge research and innovative teaching programs at all levels. State-of-the-art technologies are made available to the TU Dresden campus as well as to DRESDEN-concept partners via the CMCB Technology Platform, which consists of a wide range of high-end core facilities, and innovative discoveries will be developed further towards commercial applications. Administrative support is provided to all CMCB research groups by centralized service units, which act as interfaces to the central administration of TU Dresden.

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    Nanobiophysics