Rainwater meteorology, 1st of 2019, to the roof of God's night



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Le Kevin Byrne, AccuWeather's Writer
January 03, 2019, 2:27:51 EST

Its first meter shaft at its & # 39; New Year's & # 39; emerge later this week as the Quadrantids tour during the January night sky.

Increasing the screen will continue from the night of January 3 to the beginning of the morning of November 4. One of the benefits of this is; For stargazers there is the highest level that takes place during the new moon, and # 39; gives him a dark spell. Those in the North Glossary, especially in Europe, may be able to come up with them; see the biggest robot.

"There may be anywhere in the middle of their northern and northbound centralities in an appropriate position to see the Quadrantids in 2019, especially as the moonlight does not have a & # 39; Destroy this year's show, "said EarthSky.

Cuadrantids January 3

"The lower natural light pollution makes it easier to see more meters, but light pollution from settlements and routes still prevents watching," said Brian Lada, expert AccuWeather.

Through a perfect location, you can find anywhere from 60 to more than 100 meter per hour at the highest.

The best scenarios will appear across parts of the United States and southwest. Unwanted windows and weather may be restricted to & # 39; Looking northwest while there is a big storm. preventing many of the south-east of aviation opportunities.


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The time of the point is quite narrow, according to Earthsky. Unlike other meteor flakes, such as the Perseids or Geminids that can grow for a couple of days, the Quadrantids roof is only for several hours, with the best time between midnight and afternoon.

Because this crop is so short, some of the world's chances may not be visible.

"It's easy to find out that the amazing point for the Quadrantids is because it's close to the Dipper Mòr, one of the most famous airfields. However, the media shows in all airfields, not just near the Dipper Mòr, "Lada said.

According to NASA, the reason is that the crop is so short because of the "thin stream of the wings and the fact that the ground flows across the stream at a rectangular area."


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