Examples of using Electron microscopy in English and their translations into Swedish
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Secondary electron microscopy images of gold nanorods analyzed in a Hitachi S-5500 high resolution SEM. Related Stories.
Electron microscopy is a useful technique that allows us to view the microscopic structure of specimens at a high resolution.
The preparation is then processed for electron microscopy, and should be checked for the presence of dark(labeled) vesicles.
Techniques such as transmission electron microscopy(TEM) and scanning electron microscopy(SEM)
One of the most significant advantages of electron microscopy is the ability to produce powerful magnification.
demonstrated abnormality of collagen fibril organization by electron microscopy in each.
Electron microscopy also has applications in the electronics industry where it is used to control manufacturing processes.
YAP: Ce detectors are used for gamma and X-ray counting, electron microscopy, electron and X-ray imaging screens.
Electron microscopy can also be applied in industrial failure analysis and process control of diverse industries.
This new method of characterising nanoparticles is based on a combination of electron microscopy and optical microscopy. .
radioisotopic labelling, electron microscopy and molecular dynamics simulations are commonly used.
These processes have been studied using a variety of techniques such as electron microscopy, electrophysiology recordings,
bridges the gap between optical and electron microscopy.
As Tao notes, before this study, such detailed information was only obtainable through fluorescent staining or electron microscopy.
It is a fast and accurate alternative to previous sizing methods including electron microscopy, ultracentrifugation, chromatography,
The node in Umeå is specialized in combinations of light- and electron microscopy, so-called correlative microscopy. .
the first virus imaged using electron microscopy.
preferably a combination of fluorescence and electron microscopy.
as well as solid theoretical understanding of electron microscopy.
Ellisman's group then used cutting-edge electron microscopy to reconstruct 3-D images of what was happening at the optic nerve head.