Examples of using Nano-electronics in English and their translations into German
{-}
-
Colloquial
-
Official
-
Ecclesiastic
-
Medicine
-
Financial
-
Ecclesiastic
-
Political
-
Computer
-
Programming
-
Official/political
-
Political
Nano-electronics for complex life-science applications.
Rangelow, Head of the Micro- and Nano-electronics Systems Department at TU Ilmenau.
So my message is this: we are going to make Europe theplace to make and buy innovative micro and nano-electronics.”.
Europe is also strong in sectors such as nano-electronics, micro-systems and embedded systems.
The new JTIs on nano-electronics and"embedded systems" are good examples of how the Framework Programme will have a positive long-term impact.
NATO Advanced Study Institute on Granular Nano-electronics; Il Ciocco, Italy, July 1990.
Experts within ranges like nano-electronics, sensor system, medicine as well as in the energy and environmental technology see still larger potential.
Support to emergingtechnologies has created world leadership in quantum communications, nano-electronics and complex systems.
Further initiatives, in nano-electronics, clean skies, and hydrogen and fuel cells are expected to follow.
Author: Christine heath man woman Wood, how you have of the factexperience that the ETH looks for a Professorin for Nanophotonik and nano-electronics?
These include the ENIAC Joint Technology Initiative(JTI) in nano-electronics, Factories of the Future and the Energy-efficient buildings PPPs.
EAM has achieved major advances in the development of new high-performance materials in the fields of catalysis,lightweight construction, nano-electronics, optics and photonics.
Still larger potential lies in future applications in ranges such as nano-electronics, sensor system, medicine as well as energy and environmental technology.
Micro and nano-electronics, nanotechnology, photonics, advanced materials, industrial biotechnology and advanced manufacturing technologies have been identified as the EU's KETs.
Nanostructures, such as nanowires and nanorods and functionalized nanovehicles are of growing interest for various applications in nanotechnology,be that nano-electronics or drug delivery in the human body.
Key enabling technologies(nanotechnologies, micro- and nano-electronics, photonics, advanced materials, biotechnologies) can thus be put to good use in traditional sectors.
In the Kiel nano-technology and surface technology sciences, a wide range of disciplines work together on topics such as switchable molecules, biomagnetic sensors, biocompatible functional materials,complex plasmas or nano-electronics.
Semiconductor technology, micro- and nano-electronics field, In doing pioneering research in optical connection systems and three-dimensional integration issues Sabancı University Nanotechnology Research and Application Center Director, Dr….
For example, irradiation facilities, data banks in genomics and data banks in social science, observatories for environmental sciences,imaging systems or clean rooms for nano-electronics, are at the core of research and innovation processes.
One of our research projects at the laboratory for nano-electronics wants means and ways to find, in order to be able to use the favorable optical characteristics of these materials, without being subjected the restrictions of the bad charge transfer.
For example, observatories for environmental sciences, data banks in genomics and data bases in social science,imaging systems or clean rooms for nano-electronics, irradiation facilities for materials research or super-computers, are essential tools for knowledge development.
For example, radiation sources, data banks in genomics and data banks in social science, observatories for environmental and space sciences, systems ofimaging or clean rooms for the study and development of new materials or nano-electronics, are at the core of research.
On the world market in Key Enabling Technologies(KETs), which include micro- and nano-electronics, advanced materials, industrial biotechnology, photonics, nanotechnologies and advanced manufacturing systems, competition is fierce and capital is moving to areas outside Europe.
In the Co-operation Specific Programme, JTIs are identified potentially in six areas: hydrogen and fuel cells, aeronautics and air transport, innovative medicines,embedded computing systems, nano-electronics and GMES global monitoring for environment and security.
Key enabling technologies6 such as industrial biotechnology, nanotechnology, advanced materials, photonics,micro- and nano-electronics, and advanced manufacturing systems can provide the basis for a wide variety of new processes and goods and services, including the development of entirely new industries over the next decade.
A few examples of research infrastructures include radiation sources, data banks in genomics and in social sciences, observatories for environmental sciences, systems of imaging,clean rooms for the development of new materials or nano-electronics, computing and communication based electronic infrastructures, and telescopes.
In October 2011, Europe's five Joint Technology Initiatives- ARTEMIS(embedded computing systems), Clean Sky(aeronautics and air transport),ENIAC JU(nano-electronics), FCH JU(fuel cells and hydrogen) and IMI(innovative medicines)- jointly presented the first achievements of their EUR 10 billion research and innovation programmes in the European Parliament.
The 7th framework programme introduces a new model of research support- joint technology initiatives- in the form of public-private partnerships to back promising new research and to give European industry a head start in areas ranging from hydrogenand fuel cells, aeronautics and air transport, to innovative medicines, and nano-electronics.
Priorities have been set following extensive consultations includinginput from a series of European Technology Platforms and industrial initiatives in areas such as nano-electronics, embedded systems, mobile and wireless communications, electronic media, photonics, robotics and software, services and Grids.