structural seismology - definition. What is structural seismology
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%ما هو (من)٪ 1 - تعريف

SEISMIC EVENT OCCURRED ON MARS
Martian seismology; Seismology on Mars; Seismology of Mars; Earthquakes on Mars; Earthquake on Mars; Marsquakes; MarsQuake
  • AudioVideoFile]]; Sol 128; 6 April 2019)</div>
  • Cutaway illustration showing ''[[InSight]]''{{'s}} seismometer underneath the white windshield
  • <div align="center">Mars - InSight Lander - Seismometer (Sol 110)</div>
  • <div align="center">Mars - Seismic wave simulation (artist concept; 2019)</div>
  • <div align="center">Inside Mars InfoGraphic<br />Mars InSight Lander (May 17, 2022)</div>

Lunar seismology         
  • Apollo seismometer
  • Seismometer readings from the impact made by the Apollo 17 Saturn S-IVB impacting the Lunar surface arrive at NASA
SEISMOLOGY
Lunar seismography; Lunar seismometer; Seismology of the Moon; Selenoseismology
Lunar seismology is the study of ground motions of the Moon and the events, typically impacts or moonquakes, that excite them.
Structural element         
ENGINEERING TERM; STRUCTURAL PART OF A COMPLEX STRUCTURE
Structural member; Structural component; List of structural elements
Structural elements are used in structural analysis to split a complex structure into simple elements. Within a structure, an element cannot be broken down (decomposed) into parts of different kinds (e.
Structural coloration         
  • Magnificent non-iridescent colours of [[blue-and-yellow macaw]] created by random nanochannels
  • Electron micrograph]] of a fractured surface of [[nacre]] showing multiple thin layers
  • [[Buttercup]] petals exploit both yellow pigment and structural coloration.
  • Butterfly wing at different magnifications reveals microstructured chitin acting as a [[diffraction grating]]
  • Structural coloration through selective mirrors in the [[emerald swallowtail]]
  • One of [[Gabriel Lippmann]]'s colour photographs, "Le Cervin", 1899, made using a monochrome photographic process (a single emulsion). The colours are structural, created by interference with light reflected from the back of the glass plate.
  • [[Robert Hooke]]'s 1665 ''[[Micrographia]]'' contains the first observations of structural colours.
  • Drawing of 'firtree' micro-structures in ''[[Morpho]]'' butterfly wing scale
  • In 1892, [[Frank Evers Beddard]] noted that  ''[[Chrysospalax]]'' golden moles' thick fur was structurally coloured.
  • The most intense blue known in nature: ''[[Pollia condensata]]'' berries
  • A 3-slide series of pictures taken with and without a pair of MasterImage 3D circularly polarized movie glasses of some dead European rose chafers (Cetonia aurata) whose shiny green colour comes from left-polarized light. Note that, without glasses, both the beetles and their images have shiny colour. The right-polarizer removes the colour of the beetles but leaves the color of the images. The left-polarizer does the opposite, showing reversal of handedness of the reflected light.
  • interfere]].
  • Variable ring patterns on mantles of ''Hapalochlaena lunulata''
PRODUCTION OF COLOUR BY MICROSCOPICALLY STRUCTURED SURFACES, BOTH AS A NATURAL PHENOMENON AND IN TECHNOLOGY
Structural color; Structural colour; Schemochrome; Structural colouration; Schemochromatic; Structural colours; Morphotex
Structural coloration in animals, and a few plants, is the production of colour by microscopically structured surfaces fine enough to interfere with visible light, sometimes in combination with pigments. For example, peacock tail feathers are pigmented brown, but their microscopic structure makes them also reflect blue, turquoise, and green light, and they are often iridescent.

ويكيبيديا

Marsquake

A marsquake is a quake which, much like an earthquake, would be a shaking of the surface or interior of the planet Mars as a result of the sudden release of energy in the planet's interior, such as the result of plate tectonics, which most quakes on Earth originate from, or possibly from hotspots such as Olympus Mons or the Tharsis Montes. The detection and analysis of marsquakes could be informative to probing the interior structure of Mars, as well as identifying whether any of Mars's many volcanoes continue to be volcanically active.

Quakes have been observed and well-documented on the Moon, and there is evidence of past quakes on Venus. However, marsquakes were not definitely observed until 2019. Compelling evidence has been found that Mars has in the past been seismically more active, with clear magnetic striping over a large region of southern Mars. Magnetic striping on Earth is often a sign of a region of particularly thin crust splitting and spreading, forming new land in the slowly separating rifts; a prime example of this being the Mid-Atlantic Ridge. However, no clear spreading ridge has been found in this region, suggesting that another, possibly non-seismic explanation may be needed.

The 4,000 km (2,500 mi) long canyon system, Valles Marineris, has been suggested to be the remnant of an ancient Martian strike-slip fault. The first confirmed seismic event emanating from Valles Marineris, a quake with a magnitude of 4.2, was detected by InSight on 25 August 2021, proving it to be an active fault.