英語 での The diffraction の使用例とその 日本語 への翻訳
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The diffraction of X-rays demonstrates an unusually detailed structure.
C: Correlation between conformational changes of the channels and the diffraction spots.
Holography takes advantage of the diffraction and interference of light.
In order to keep the shape error to less than 2nm to the target shape,it enables to focus to the diffraction limit.
Divides the N period of the diffraction grating equally and decides movement distance.
However, the state that Dr. Shechtman discovered did not contain primitive unit cells,but some level of regularity provided the diffraction spots.
If you modify the diffraction units Wait. on one of your regulators. You might be able to improvise that tracker.
Leading OEMs are using wave6 to accurately andefficiently model the diffraction of sound around complex geometries.
However, its resolution is limited by the diffraction limit due to the nature of the light, which has been a major limitation of fluorescence microscopy.
Nucleation and growth kinetics of the transformation of mantle mineralcan be estimated from the integrated intensities of the diffraction peak.
Usually, the light converges again from this pinhole due to the diffraction phenomena, and the minute optical brush cannot be formed.
However, the diffraction patterns calculated from these models are not consistent with the diffraction patterns obtained from experiments, and thus these models have been in doubt.
An EEM polished mirror has shape error in nano meter level to the target shape so that it has superior focusing performance compare to other focusing methods andit enables to focus to the diffraction limit.
Inspired by the latest scientific developments, especially in optics, they want to recreate the effects of light,the shimmer of water, the diffraction of sunlight, the way the leaves of a tree produce a speckled shadow, so characteristic.
Does(such as less than 0.1 um)when particle size is too small, the diffraction of light, the light will be through from around the particles, not reflection, will become transparent crystal particles, titanium dioxide extinction ability can be lost.
Typically, X-rays are directed from one side of the multi-well plate, pass through the plate and crystal and out the opposite side of the plate,where the diffraction data are collected on an X-ray sensitive detector.
In the diffraction pattern obtained from this sample(b, right), a diffraction pattern with a high intensity is observed for a diffraction angle more than twofold larger than that in the case of the diffraction pattern with the bacterium alone b, left.
From the 2000s, however, various super-resolution fluorescence microscopes have been developed with the aim of attaining a spatial resolution that exceeds the diffraction limit. This has led to a spatial resolution of 100 nm or less being achieved.
We can acquirestable images with spatial resolution close to the diffraction limit. Even with a 30cm aperture, for example, it can provide continuously high-resolution images covering the range from near-ultraviolet to visible light equivalent to the Subaru Telescope at its best.
In the case of millimeter waves,the directivity is high like light waves, the diffraction is small, and additionally, the signal power attenuates greatly in the atmosphere. Millimeter waves are hard to use for long distance transmission between base station and end user.
This pixel develops a different color depending on the size of the diameter, due to the effect of the mie-oscillations.The resolution at the diffraction limit is 100,000 dpi, realizing a color image with no color deterioration. p.276.
In this system, it's possible to create focused optical systems with different numbers of numerical apertures only by changing the form of deformable mirrors,and controlling the focused spot size beyond the diffraction limit is possible by changing the number of numerical apertures.
Activities and Findings 3.1 Development of the imaging method for electron diffraction microscope In principle, by applying the method of iterative phase retrieval on coherent diffraction data,one can determine the phase of the diffraction beam, and reconstruct the real image of the sample object.
As the unit cells of crystals increase in volume, the number of diffraction points from the crystal increase and cause overlaps, the number of unitcells in the crystal being measured decreases, and the diffraction intensity becomes smaller, all of which make obtaining high-precision data more difficult.