NASA finds unusual space structures in unexpected places; scientists struggle to explain their meaning

NASA’s recent discovery of strange formations of an electrified layer of gas in the ionosphere has challenged scientists’ perception of having a complete understanding of the From the earth outer layer. Space experts are struggling to explain the existence of X- and C-shaped structures discovered in the ionosphere beneath From NASA Global-scale observations from the Limb and Disk (GOLD) mission.

What is the ionosphere?

The ionosphere is the outermost layer of the Earth’s atmosphere. As its name suggests, it contains a large amount of charged particles. ionosphere It is a very active part of the Earth’s atmosphere, expanding and contracting depending on the energy it absorbs from the Sun. The gases in this layer are excited by solar radiation and form ions. The gas particles in this layer are therefore electrically charged.

What has NASA discovered in the Earth’s atmosphere?

NASA’s Gold mission has discovered strange formations of an electrified gas layer in the ionosphere. The US space agency has made a surprising discovery of X- and C-shaped structures in the ionosphere. The X-shaped formations are similar to ridges and can appear in the ionosphere. plasmawhich is a sea of ​​charged particles typically found after solar storms. According to CNN, astronomers were aware of the presence of X-shaped ridge-like formations in the ionosphere.

However, for the first time, they have discovered the presence of C-shaped formations in the layer. Surprisingly, these never-before-seen Cs appear to have appeared during “quiet times” when there were no atmospheric disturbances, CNN reported, citing new research.

Is there any threat from the C-shaped structure?

The report also added that unexplained and mysterious C-shaped formations in the ionosphere can cause enormous damage to humansAccording to CNN’s report, C-shaped formations and bubbles have the potential to disrupt communications.

“If there’s a vortex or strong shear in the plasma, it will completely distort the plasma in that region. The signals will be completely lost with a strong disturbance like this,” Deepak Karan, a research scientist at the University of Colorado’s Laboratory for Atmospheric and Space Physics, told CNN.

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