optical interference उदाहरण वाक्य
उदाहरण वाक्य
- "' Olexander Smakula "'(, ) ( 1900, Dobrovody, Austria Hungary, today Ukraine & ndash; 17 May 1983, Auburn, Massachusetts, anti-reflective lens coatings based on optical interference.
- For very large particles ( greater than 100 micrometers ) this may be the best method because it is least sensitive to other types of optical interferences.
- In conventional laser-based gas spectrometers, the optical interference originates from e . g . etalon-type interference effects in ( or between ) optical components and multi-pass gas cells.
- These requirements are inter-related, and it is essential to understand the nature of optical interference to see this . intensity which can occur when two light waves are superimposed.
- The company is among a handful in the country that manufacture optical interference filters, the glass filters that help certain microscopes and telescopes filter light, and provided filters for the Hubble space telescope.
- Because the frequency of light waves ( ~ 10 14 Hz ) is too high to be detected by currently available detectors, it is possible to observe only the intensity of an optical interference pattern.
- Very different from a scaled-up Hubble, it is designed to operate colder and farther away from the Earth at the L2 Lagrangian point, where thermal and optical interference from the Earth and Moon are lessened.
- Another class of methods applicable only to supported bilayers is those based on optical interference such as fluorescence interference contrast microscopy ( FLIC ) and reflection interference contrast microscopy ( RICM ) or interferometric scattering microscopy ( iSCAT ).
- This issue was not caught before the release of the Raspberry Pi 2 because while commercial electronic devices are routinely subjected to tests of susceptibility to radio interference, it is not standard or common practice to test their susceptibility to optical interference.
- Optical engineering impacts modern devices and systems involved in communication, display, data storage, illumination and remote sensing . * Basic optical principles, including geometrical optics, optical aberration, diffraction theory, optical interference, and crystal optics . * Light source, detectors, radiometry, photometry and colorimetry . * Trends / state-of-the-art in optical technologies / devices, including holography storage, fiber communication, optical testing and optical display"