electron focusing - перевод на русский
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electron focusing - перевод на русский

ТЕХНОЛОГИЯ РАЗДЕЛЕНИЯ МОЛЕКУЛ ПО РАЗНИЦЕ В ИХ ИЗОЭЛЕКТРИЧЕСКИХ ТОЧКАХ; РАЗНОВИДНОСТЬ ЗОНАЛЬНОГО ЭЛЕКТРОФОРЕЗА
Isoelectric focusing
  • Схема изоэлектрического фокусирования
Найдено результатов: 279
electron focusing      

физика

фокусировка электронов

e-beam         
PROCESS WHICH INVOLVES USING ELECTRONS, USUALLY OF HIGH ENERGY, TO TREAT AN OBJECT FOR A VARIETY OF PURPOSES
Electron irradiation; E-beam; Electron beam processing; Radiation Crosslinking

['i:bi:m]

существительное

общая лексика

электронный пучок

scanning electron microscopy         
  • Electron–matter interaction volume and types of signal generated
  • Mechanisms of emission of secondary electrons, backscattered electrons, and characteristic X-rays from atoms of the sample
  • M. von Ardenne's]] first SEM
  • A spider sputter-coated in gold, having been prepared for viewing with an SEM
  • Low-temperature SEM magnification series for a [[snow]] crystal. The crystals are captured, stored, and sputter-coated with platinum at cryogenic temperatures for imaging.
  • Low-voltage micrograph (300 V) of distribution of adhesive droplets on a [[Post-it note]]. No conductive coating was applied: such a coating would alter this fragile specimen.
  • Comparison of SEM techniques: <br />Top: backscattered electron analysis{{snd}} composition <br /> Bottom: secondary electron analysis{{snd}} topography
  • A video illustrating a typical practical magnification range of a scanning electron microscope designed for biological specimens. The video starts at 25×, about 6 mm across the whole field of view, and zooms in to 12000×, about 12&nbsp;[[μm]] across the whole field of view. The spherical objects are glass beads with a diameter of 10&nbsp;μm, similar in diameter to a [[red blood cell]].
  • SEM with opened sample chamber
  • Analog type SEM
  • Operating principle of a Scanning Electron Microscope (SEM)
  • Schematic of an SEM
  • Schottky-emitter electron source
TYPE OF ELECTRON MICROSCOPE
Scanning Electron Microscope; Scanning electron microscopy; Scanning electron micrograph; Microscopy, electron, scanning; Scanning Electron Microscopy; FESEM; Fegsem; SEM study; Scanning electron; Scanning electron microscopes; Scanning electron microscopies; Scanning Electron Micrograph; 3D SEM surface reconstruction; 3D reconstruction of SEM images; Scanning electron micrographs; Ion-abrasion SEM; History of scanning electron microscopy; Interaction volume

медицина

сканирующая электронная микроскопия

нефтегазовая промышленность

сканирующая электронная микроскопия (для анализа керна)

E-beam         
PROCESS WHICH INVOLVES USING ELECTRONS, USUALLY OF HIGH ENERGY, TO TREAT AN OBJECT FOR A VARIETY OF PURPOSES
Electron irradiation; E-beam; Electron beam processing; Radiation Crosslinking

['i:bi:m]

существительное

общая лексика

электронный пучок

scanning electron microscope         
  • Electron–matter interaction volume and types of signal generated
  • Mechanisms of emission of secondary electrons, backscattered electrons, and characteristic X-rays from atoms of the sample
  • M. von Ardenne's]] first SEM
  • A spider sputter-coated in gold, having been prepared for viewing with an SEM
  • Low-temperature SEM magnification series for a [[snow]] crystal. The crystals are captured, stored, and sputter-coated with platinum at cryogenic temperatures for imaging.
  • Low-voltage micrograph (300&nbsp;V) of distribution of adhesive droplets on a [[Post-it note]]. No conductive coating was applied: such a coating would alter this fragile specimen.
  • Comparison of SEM techniques: <br />Top: backscattered electron analysis{{snd}} composition <br /> Bottom: secondary electron analysis{{snd}} topography
  • A video illustrating a typical practical magnification range of a scanning electron microscope designed for biological specimens. The video starts at 25×, about 6 mm across the whole field of view, and zooms in to 12000×, about 12&nbsp;[[μm]] across the whole field of view. The spherical objects are glass beads with a diameter of 10&nbsp;μm, similar in diameter to a [[red blood cell]].
  • SEM with opened sample chamber
  • Analog type SEM
  • Operating principle of a Scanning Electron Microscope (SEM)
  • Schematic of an SEM
  • Schottky-emitter electron source
TYPE OF ELECTRON MICROSCOPE
Scanning Electron Microscope; Scanning electron microscopy; Scanning electron micrograph; Microscopy, electron, scanning; Scanning Electron Microscopy; FESEM; Fegsem; SEM study; Scanning electron; Scanning electron microscopes; Scanning electron microscopies; Scanning Electron Micrograph; 3D SEM surface reconstruction; 3D reconstruction of SEM images; Scanning electron micrographs; Ion-abrasion SEM; History of scanning electron microscopy; Interaction volume
растровый электронный микроскоп
scanning electron microscope         
  • Electron–matter interaction volume and types of signal generated
  • Mechanisms of emission of secondary electrons, backscattered electrons, and characteristic X-rays from atoms of the sample
  • M. von Ardenne's]] first SEM
  • A spider sputter-coated in gold, having been prepared for viewing with an SEM
  • Low-temperature SEM magnification series for a [[snow]] crystal. The crystals are captured, stored, and sputter-coated with platinum at cryogenic temperatures for imaging.
  • Low-voltage micrograph (300&nbsp;V) of distribution of adhesive droplets on a [[Post-it note]]. No conductive coating was applied: such a coating would alter this fragile specimen.
  • Comparison of SEM techniques: <br />Top: backscattered electron analysis{{snd}} composition <br /> Bottom: secondary electron analysis{{snd}} topography
  • A video illustrating a typical practical magnification range of a scanning electron microscope designed for biological specimens. The video starts at 25×, about 6 mm across the whole field of view, and zooms in to 12000×, about 12&nbsp;[[μm]] across the whole field of view. The spherical objects are glass beads with a diameter of 10&nbsp;μm, similar in diameter to a [[red blood cell]].
  • SEM with opened sample chamber
  • Analog type SEM
  • Operating principle of a Scanning Electron Microscope (SEM)
  • Schematic of an SEM
  • Schottky-emitter electron source
TYPE OF ELECTRON MICROSCOPE
Scanning Electron Microscope; Scanning electron microscopy; Scanning electron micrograph; Microscopy, electron, scanning; Scanning Electron Microscopy; FESEM; Fegsem; SEM study; Scanning electron; Scanning electron microscopes; Scanning electron microscopies; Scanning Electron Micrograph; 3D SEM surface reconstruction; 3D reconstruction of SEM images; Scanning electron micrographs; Ion-abrasion SEM; History of scanning electron microscopy; Interaction volume

общая лексика

растровый [сканирующий] электронный микроскоп

focussing         
WIKIMEDIA DISAMBIGUATION PAGE
Focusing (disambiguation); Focussing

общая лексика

фокусировка

Смотрите также

focussing mark

focusing         
WIKIMEDIA DISAMBIGUATION PAGE
Focusing (disambiguation); Focussing

['fəukəsiŋ]

общая лексика

концентрирование

установка на фокус

фокусирование

фокусировка

фокусировочный

фокусирующий

Смотрите также

isoelectric focusing; alternating-gradient focusing; angular focusing; beam focusing; directional focusing; electron focusing; energy focusing; focusing barrel; focusing block; focusing effect; focusing magnet; focusing ring; focusing scale; focusing screen; focusing system; focusing voltage; high-order focusing; infinity focusing; space-charge focusing; velocity focusing; weak focusing; focusing of seismic energy; ray focusing; spherical focusing; vertical focusing

существительное

общая лексика

установка на фокус

фокусировка

focusing         
WIKIMEDIA DISAMBIGUATION PAGE
Focusing (disambiguation); Focussing
фокусировка, фокусирование, наводка на резкость
electron spin resonance         
  • ''g'' strain]]).
  • The field oscillates between B<sub>1</sub> and B<sub>2</sub> due to the superimposed modulation field at 100&nbsp;kHz. This causes the absorption intensity to oscillate between I<sub>1</sub> and I<sub>2</sub>. The larger the difference the larger the intensity detected by the detector tuned to 100&nbsp;kHz (note this can be negative or even 0). As the difference between the two intensities is detected the first derivative of the absorption is detected.
  • center
  • The shape of a powder-pattern EPR spectrum changes according to the distribution of the <math>g</math> matrix principal values
  • center
  • STM]] in the [[Center for Quantum Nanoscience]] is one of the first STMs globally to measure electron spin resonance on single atoms.
  • upright=2
  • Simulated EPR spectra of the methyl and methoxymethyl radicals
  • 3D model of a typical X-band CW-EPR spectrometer
TECHNIQUE TO STUDY MATERIALS WITH UNPAIRED ELECTRONS
Electron spin resonance spectroscopy; Electron spin resonance; Electron Paramagnetic Resonance; ESR spectrum; Electron-spin resonance; Electron Spin Resonance; Electron paramagnetic resonance spectroscopy; Immobilized enzyme electron spin resonance; EPR spectroscopy; ESR spectroscopy; Hyperfine coupling constant; Immobilized enzyme ESR

[i'lektrɔnspinrezənəns]

общая лексика

электронный спиновый резонанс

физика

электронный парамагнитный резонанс

ЭПР

Определение

изоэлектрическое фокусирование
см. Электрофокусирование.

Википедия

Изоэлектрическое фокусирование

Изоэлектрическое фокусирование (ИЭФ, англ. IEF), или электрофокусирование — технология разделения молекул (чаще всего — белков) по разнице в их изоэлектрических точках. Это разновидность зонного электрофореза, которую обычно производят в геле. Белок, который находится в рН-зоне ниже собственной изоэлектрической точки, будет положительно заряжен и будет перемещаться к катоду. В результате перемещения заряд молекулы будет снижаться, а перемещение — замедляться. В результате белки образуют четкие полосы, и каждый белок будет располагаться в градиенте значений рН в соответствии со своей изоэлектрической точкой. Данная технология дает возможность очень чёткого разделения белков, отличающихся по изоэлектрической точке.

Как переводится electron focusing на Русский язык