F-layer - definição. O que é F-layer. Significado, conceito
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O que (quem) é F-layer - definição

LAYER IN IONOSPHERE
Appleton layer; Appleton Layer; F layer; F1 layer; F2 layer; F-layer; F Layer; F-region; Appleton Region; F Region; Edward appleton Layer

F-layer         
¦ noun the highest and most strongly ionized region of the ionosphere.
Origin
1920s: arbitrary use of F + layer.
F region         
The F region of the ionosphere is home to the F layer of ionization, also called the Appleton–Barnett layer, after the English physicist Edward Appleton and New Zealand physicist and meteorologist Miles Barnett. As with other ionospheric sectors, 'layer' implies a concentration of plasma, while 'region' is the volume that contains the said layer.
Layer by layer         
  • An overview of the layer by layer method for Rubik's Cube. The cube has been turned over in the third step.
METHOD OF SOLVING THE RUBIK'S CUBE
Layer-by-Layer
Layer-by-layer (LbL) deposition is a thin film fabrication technique. The films are formed by depositing alternating layers of oppositely charged materials with wash steps in between.

Wikipédia

F region

The F region of the ionosphere is home to the F layer of ionization, also called the Appleton–Barnett layer, after the English physicist Edward Appleton and New Zealand physicist and meteorologist Miles Barnett. As with other ionospheric sectors, 'layer' implies a concentration of plasma, while 'region' is the volume that contains the said layer. The F region contains ionized gases at a height of around 150–800 km (100 to 500 miles) above sea level, placing it in the Earth's thermosphere, a hot region in the upper atmosphere, and also in the heterosphere, where chemical composition varies with height. Generally speaking, the F region has the highest concentration of free electrons and ions anywhere in the atmosphere. It may be thought of as comprising two layers, the F1 and F2 layers.

The F-region is located directly above the E region (formerly the Kennelly-Heaviside layer) and below the protonosphere. It acts as a dependable reflector of HF radio signals as it is not affected by atmospheric conditions, although its ionic composition varies with the sunspot cycle. It reflects normal-incident frequencies at or below the critical frequency (approximately 10 MHz) and partially absorbs waves of higher frequency.