American researchers say they have developed a more effective way to produce a ball lightning in the laboratory.
In nature, it has been seen that lightning balls float on land or through buildings, and even bounce off aisle planes. But its rarity has been very hard to learn and understand. The American Institute of Aerospace Research team hopes that its new approach will help science better understand this strange sight.
Mike Lindsay, who led the study published in the Journal of Physical Chemistry, said: "The ball lightning is almost always used to describe the phenomena seen in nature, abnormal lightning, lightning or beads and the like." Fire of St. Elmo's "Aurora." It may not be the same thing, but there are several things, similar observations. â€
According to reports, the famous physicist and inventor Nikola Tesla was able to make spherical lightning in his laboratory when he was headquartered in Colorado Springs, 19,891 Nineteen. However, if he did not create it, he did not explain his method in a way that allowed anyone to reproduce his work.
Witnesses of the ball lightning report the size of the big ball, how long it lasts, and how it moves.
Reese Phillips, an engineer and researcher of Thunderbolt Research, said: "At least for me, lightning is still not what we are talking about here. We understand that lightning is a very quick discharge from one point to another - for example, the cloud Earth (surely, through a complicated process) and observing [currently] paper is not described."
Dr. Lindslow did not agree with this assessment. In the paper, he and his colleagues described previous studies that produced what they call "glow discharge plasmas (charged gases) above electrolyte solutions.
The new experiment reuses these early methods, but the operating conditions try to keep the ball as long as possible.
Dr. Lindslow explained: "I don't think that we have created lightning discharges to produce this kind of plasma lumps," although there are many similarities to lightning strikes. They are just arcs, in this case arcs such electrolytes The surface of the solution then takes place from the plasmoid.
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