scatterer$72494$ - traduzione in greco
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Traduzione e analisi delle parole tramite l'intelligenza artificiale ChatGPT

In questa pagina puoi ottenere un'analisi dettagliata di una parola o frase, prodotta utilizzando la migliore tecnologia di intelligenza artificiale fino ad oggi:

  • come viene usata la parola
  • frequenza di utilizzo
  • è usato più spesso nel discorso orale o scritto
  • opzioni di traduzione delle parole
  • esempi di utilizzo (varie frasi con traduzione)
  • etimologia

scatterer$72494$ - traduzione in greco

RADAR TECHNIQUE USED IN GEODESY AND REMOTE SENSING
InSAR; Interferometric Synthetic Aperture Radar; Interferometric SAR; IFSAR; Slope stability radar; Persistent Scatterer Interferometry; SAR interferometry; SAR Interferometry; IfSAR; PSInSAR; Terrestrial SAR Interferometry; Terrestrial InSAR; Terrestrial SAR interferometry; Interferometric synthetic aperture radar
  • Interferogram produced using [[ERS-2]] data from 13 August and 17 September 1999, spanning the 17 August [[Izmit]] (Turkey) earthquake. (NASA/JPL-Caltech)
  • Lost Hills oil field]] in California. (NASA/JPL-Caltech)
  • Kamchatka Peninsula, Landsat data draped over SRTM digital elevation model (NASA/JPL-Caltech)
  • Phase difference
  • SAR amplitude image of [[Kīlauea]] (NASA/JPL-Caltech)
  • Corresponding interferogram of [[Kīlauea]], showing topographic fringes (NASA/JPL-Caltech)
  • Seasat (NASA/JPL-Caltech)

scatterer      
n. διασκορπιστής

Definizione

Scattering
·noun Act of strewing about; something scattered.
II. Scattering ·p.pr. & ·vb.n. of Scatter.
III. Scattering ·adj Going or falling in various directions; not united or aggregated; divided among many; as, scattering votes.

Wikipedia

Interferometric synthetic-aperture radar

Interferometric synthetic aperture radar, abbreviated InSAR (or deprecated IfSAR), is a radar technique used in geodesy and remote sensing. This geodetic method uses two or more synthetic aperture radar (SAR) images to generate maps of surface deformation or digital elevation, using differences in the phase of the waves returning to the satellite or aircraft. The technique can potentially measure millimetre-scale changes in deformation over spans of days to years. It has applications for geophysical monitoring of natural hazards, for example earthquakes, volcanoes and landslides, and in structural engineering, in particular monitoring of subsidence and structural stability.