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  • flow compensation gradient technique
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  • flow cytometer
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  • flow cytometry
    È帧¼¼Æ÷ÃøÁ¤(¹ý)
  • flow diagram
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  • flow rate
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  • flow resistance
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  • flow signal
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  • flow velocity profile
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  • flow volume curve
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  • forced expiratory flow
    °­Á¦³¯¼ûÀ¯·®
  • gas flow
    1. °¡½ºÈ帧 2. °¡½ºÀ¯·®
  • gas flow meter
    ±âüÀ¯·®°è
  • high flow method
    °íÀ¯·®¹ý
  • high intensity proton flow
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  • inspiratory triggering flow
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  • ¿µ¹®
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  • flow chart
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  • flow compensation
    È帧º¸»ó
  • flow cytometer
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  • flow cytometry
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  • flow volume curve
    À¯·®¿ë·®°î¼±
  • laminar flow cabinet
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  • proton flow deficit
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  • effective renal blood flow
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  • effective renal plasma flow
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  • estimated hepatic blood flow
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  • extrahepatic blood flow
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  • in-flow effect
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  • flow
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  • flow meter
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  • flow rate
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  • ¿µ¹®
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  • electron orbit
    ÀüÀڱ˵µ(¡­ÏùÔ³).
  • electron pair
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  • electron pair bond
    ÀüÀÚ½Ö°áÇÕ(¡­Ì¿ùê).
  • electron pair creation
    ÀüÀÚ½Öâ»ý(¡­óÜßæ).
  • electron perturbation
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  • electron photomicrograph
    ÀüÀÚÇö¹Ì°æ »çÁø
  • electron ray
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  • electron shell
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  • electron staining
    ÀüÀÚ¿°»ö(¹ý)(¡­æøßäÛö).
  • electron structure
    (¿øÀÚÀÇ) ÀüÀÚ±¸Á¶(¡­ï³í­Ï°ðã).
  • electron structure of atom
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  • electron system
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  • electron theory
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  • electron transfer
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  • electron transfer system
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  • electron transfer chain
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  • electron transfer flavoprotein
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  • electron transfer potential
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  • electron transfer protein
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  • electron transfer system
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  • electron transport chain
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  • negative electron
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MFR mean flow rate; mucus flow rate
MIF macrophage inhibitory factor; melanocyte[-stimulating hormone]-inhibiting factor; maximum inspirator...
MMF maxillomandibular fixation; maximum midexpiratory flow; mean maximum flow; Member of the Medical Fac...
PFR parotid flow rate; peak flow rate
RBF regional blood flow; regional bone mass; renal blood flow
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EPR Electron Paramagnetic Resonance Spectroscopy
EPMA Electron Probe Micro Analyzer
EPMA Electron Probe Microanalysis
EPMA Electron Probe X rays Microanalysis
ESI Electron Spectroscopic Imaging
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  • flow compensation gradient technique
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  • kettle-flow
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  • laminar flow cabinet
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  • laser Doppler flow probe
    ·¹ÀÌÀú Doppler À¯¼Ó Žħ
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backscattered electron <microscopy> Produced by an incident electron colliding with the nucleus of an atom in the specimen. The incident electron is then scattered backward about 180 degrees with no appreciable loss of energy, an elastic collision.
(05 Aug 1998)
backscattered electron imaging <microscopy> The production of backscattered electrons from a sample varies directly with the specimen's average atomic number, higher atomic number elements produce more backscattered electrons than lower atomic number ones. Detection of Backscattered Electrons is achieved by using a donut shaped solid state saemiconductor device mounted on the bottom of the objective lens. When Backscattered Electrons strike the detector electron-hole pairs are created which are then counted. This quantity is translated into a pixel intensity and displayed on the CRT, forming the image. By splitting the detector into halves (or quadrants) differences in the signal level on the individual detector segments provide surface topography information.
(05 Aug 1998)
valence electron One of the electron's that take part in chemical reactions of an atom.
(05 Mar 2000)
Parallel Electron Energy Loss Spectroscopy <technique> Electron energy loss spectroscopy analyses the inelastically scattered electrons present in the beam after it has been transmitted through the sample. An electron energy loss spectrum typically consists of a monatomic decreasing background on which are superimposed a number of peaks. Each peak is characteristic of the scattering process that has occurred in the sample. The peaks can be used to obtain information about the chemical composition and electronic structure of the sample. Electron energy loss spectra are acquired typically in a magnetic sector spectrometer located under the camera chamber of the transmission electron microscope. Spatial resolution is typically limited by the minimum probe diameter of the microscope. Electron energy loss spectroscopy tends to be complimentary to EDS in that it can be used to analyse very thin samples of low Z materials.
Acronym: PEELS
(05 Aug 1998)
reverse electron transport <chemistry> The energy-dependent movement of electrons against the thermodynamic gradient to form a strong reductant from a weaker electron donor.
(11 Jan 1998)
microscope, electron <microscopy> An electron-optical device which produces a magnified image of an object. Detail may be revealed by virtue of selective transmission, reflection, or emission of electrons by the object.
(05 Aug 1998)
microscopy, electron Visual and photographic microscopy in which electron beams with wavelengths thousands of times shorter than visible light are used in place of light, thereby allowing much greater magnification.
(12 Dec 1998)
microscopy, electron, scanning Microscopy in which the object is examined directly by an electron beam scanning the specimen point-by-point, giving the surface image a three-dimensional quality.
(12 Dec 1998)
microscopy, electron, scanning transmission A type of electron microscopy which scans with an extremely narrow beam that is transmitted through the sample. The detection apparatus produces an image whose brightness depends on the atomic number of the sample. It should not be confused with microscopy, electron scanning nor with microscopy, electron, transmission (see microscopy, electron).
(12 Dec 1998)
Conventional Transmission Electron Microscopy <technique> A term applied to 'normal' transmission electron microscopy imaging. The electron beam is passed through a thin film sample (typically ~1-200 nm thick). Bright field diffraction contrast images are formed with the direct (undiffracted) beam. Dark field images are formed with a selected diffracted beam. CTEM imaging is used in the general observation of samples and careful selection of the diffracting conditions of the sample will allow the analysis of defect structures within the sample.
(05 Aug 1998)
Convergent Beam Electron Diffraction <microscopy> An electron probe is tightly focused on a transmission electron microscopy specimen and the resulting pattern of diffracted electrons is observed.
The patterns contains information on the crystal symmetry and atomic and electronic structure of the sample. Regions as small as 0.2 nm may be examined.
Acronym: CBED
(05 Aug 1998)
conversion electron An internal conversion electron.
(05 Mar 2000)
positive electron A subatomic particle of mass and charge equal to the electron but of opposite (i.e., positive) charge.
Synonym: positive electron.
(05 Mar 2000)
scanning electron microscope <instrument> An electron microscope in which the image is formed by a beam synchronised with an electron probe scanning the object.
The intensity of the image forming beam is proportional to the scattering or secondary emission of the specimen where the probe strikes it
(05 Aug 1998)
scanning electron microscopy <procedure> Technique of electron microscopy in which the specimen is coated with heavy metal and then scanned by an electron beam. The image is built up on a monitor screen (in the same way as the raster builds a conventional television image). The resolution is not so great as with transmission electron microscopy, but preparation is easier (often by fixation followed by critical point drying), the depth of focus is relatively enormous, the surface of a specimen can be seen (though not the interior unless the specimen is cracked open) and the image is aesthetically pleasing.
(18 Nov 1997)
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