Examples of using Electronic properties in English and their translations into Russian
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Colloquial
Electronic properties of metals and superconductors.
The interrelationship between the structural and electronic properties of mixed nanocontacts is shown.
Structural and electronic properties of oxygen-doped graphene bilayer on mno(111) surface.
Under realistic conditions,contact metals may react with semiconductor surfaces to form a compound with new electronic properties.
Structural and electronic properties of nanostructured graphite.
Critical for special effects and product benefits is the correlation between design, protection against corrosion,tribological and electronic properties.
Electronic properties of materials and their components in normal and superconducting states.
From material to material,it is dependent on the electronic properties, especially on the effective mass of the electrons.
This optimises performance, and also makes the detector‘future proof',in that it will be capable of operating at different frequencies depending on the electronic properties of the coil.
Specifically the same electronic properties were present in the electrons surrounding both foci, even though the cobalt atom was only present at one focus.
High-quality thin films of germanene have revealed unusual two-dimensional structures with novel electronic properties suitable for semiconductor device applications and materials science research.
The first principles study of the electronic properties of elastic-deformed low-dimensional(2D) nanostructures as an advanced materials for spintronics and sensor technology Dr. Stempitsky V.R.
Solar cells are devices that are made from certain semiconducting materials that have the right optical and electronic properties to enable them to absorb solar radiation and generate a current.
These long chain compounds have surprising electronic properties- high electrical conductivity, for example- arising from sigma delocalization of the electrons in the chain.
Such modification allows to create objects with a fundamentally new type of electronic structure and, consequently,leads to radically new electronic properties of created objects.
Our scientific group was engaged in research of the electronic properties of molecules, on the results of which the progress in the field of photochemistry and photonics depends directly.
For this technology in the future, scientists plan to produce graphene ribbons with interspersed nitrogen and boron,which will create additional energy levels and varying electronic properties of tapes, and receive hetero-junctions- connected tapes of different thickness ie, with different band gaps.
MOFs possess a distinct set of electronic properties of organic and metal elements, which allows to create three-dimensional structures with properties that can greatly exceed those of metamaterials created with physical means.
These possibilities become particularly important in the study of the processes of the formation and analysis of the electronic properties of nanostructured low-dimensional objects of 2D- and 1D-type, where there is a substantial modification of the electronic structure of the valence states due to quantum size effects.
Quantum liquids and quantum crystals, super-conductivity,low-temperature magnetism, electronic properties of metals and alloys, low-dimensional and disordered systems, quantum effects in semiconductors and dielectrics, physical properties of cryocrystals, lattice dynamics, low-temperature physics of plasticity and strength, ultralow temperature facilities, new low-temperature experimental methods.
Electronic and kinetic properties of solids.
Semiconductor Nanostructures: electronic, optical properties, methods of formation.
Structural, electronic and magnetic properties of iron nanowires.
Graphene- monatomic layer of carbon,which has unusual electronic and mechanical properties.
For the protection of public buildings, industrial complexes,private residences and other properties, electronic protective devices are advisable.
Various magnetic, electronic and structural properties can be evaluated in paramagnetic or magnetically ordered phases.
Electronic and Magnetic Properties of Au-Fe Cluster Nanocomposites Prepared by a Sequential Solvated Metal Atom Dispersion Process.
Pressure effect on electronic structure and magnetic properties of iron-based high TC superconductors…………….
Keywords: computerization of education, educational infomedia, system and activity approach, didactic functions,opportunities and properties of electronic educational resources.
The education purposes, system and activity approach and didactic functions,opportunities and properties of electronic educational resources act as such bases.