Astronomy news, articles and features | 91av /topic/astronomy/ Science news and science articles from 91av Thu, 13 Aug 2026 10:55:38 +0000 en-US hourly 1 https://wordpress.org/?v=7.0.4 242057827 The most breathtaking photos of the total solar eclipse /article/2584532-the-best-photos-of-the-total-solar-eclipse/?utm_campaign=RSS|NSNS&utm_content=astronomy&utm_medium=RSS&utm_source=NSNS Thu, 13 Aug 2026 10:16:21 +0000 /article/2584532-auto-draft/ The Sun's corona glows as the Moon completely blocks the Sun during the totality phase of the total solar eclipse as seen from Berlanga de Duero, 240 km north-east of Madrid, on August 12, 2026. Millions of Europeans contemplated the sky in awe today during a rare total solar eclipse that will plunge a swathe of Spain into an eerie daytime darkness. The shadow cast when the Moon covers the Sun began in Russia's remote Arctic north at around 1700 GMT and continued in an arc through Greenland and Iceland. Spain is where most people viewed the total eclipse, which crossed the country diagonally from the northern Atlantic coast to the Mediterranean Sea, where it vanished at around 1830 GMT. (Photo by Oscar DEL POZO / AFP via Getty Images)
Oscar DEL POZO/AFP via Getty Images

Millions of people got a rare glimpse of a total solar eclipse on 12 August, as the moon aligned perfectly with Earth and the sun to cast a shadow that passed over Siberia, the Arctic, Greenland, Iceland and northern Spain. It was the first total solar eclipse visible from Earth since early 2024.

Spain was the most populous region from which the total eclipse was visible, with the eclipse path passing across the country diagonally from the northern Atlantic coast to the Mediterranean Sea in the late afternoon of 12 August. The photo above was taken in Berlanga de Duero, 240 kilometres north-east of Madrid.

REUTERS/Christian Hartmann

Observers at the Galactica astronomy centre in Teruel, Spain, were caught perfectly framed in this image. Although much of Spain saw a total eclipse, there was also a chance to witness a partial eclipse of around 90 per cent in Ireland, the UK, France, Italy and some parts of the north of Africa.

2026 Total Solar Eclipse This composite image shows the progression of a total solar eclipse over San Mill?n de los Caballeros, Spain, on Wednesday, Aug. 12, 2026. A total solar eclipse swept across parts of Greenland, Iceland, northern Russia, the Atlantic Ocean, Spain, and a small corner of Portugal. A partial eclipse was visible in parts of the U.S., most of Canada, much of Europe, and northwest Africa. Image Credit: NASA/Bill Ingalls
NASA/Bill Ingalls

This composite image shows the progression of the eclipse from partial to total and back to partial again, over San Millán de los Caballeros, Spain.

Gongora/NurPhoto via Getty Images

Another composite image shows the total solar eclipse over the Mediterranean Sea, seen from Mallorca, Spain. It was the first such event visible from the country in over a century, with totality lasting around a minute.

German Lama/Europa Press via Getty Images

A boat is captured here in line with the sun and the moon off the island of Ibiza.

REUTERS/Borja Suarez

The incredibly sharp collection of images above show the eclipse at various stages from Arija, Spain.

Spain will, surprisingly, see another total eclipse next year, on 2 August, along with Morocco, Algeria, Libya and Saudi Arabia.

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If this brilliant cosmic horror show passed you by, rectify that now /article/2583800-if-this-brilliant-cosmic-horror-show-passed-you-by-rectify-that-now/?utm_campaign=RSS|NSNS&utm_content=astronomy&utm_medium=RSS&utm_source=NSNS Wed, 12 Aug 2026 17:00:00 +0000 /article/2583800-if-this-brilliant-cosmic-horror-show-passed-you-by-rectify-that-now/ 2583800 Jupiter’s deepest mysteries were hidden in shadow. Now we can see them /article/2579280-jupiters-deepest-mysteries-were-hidden-in-shadow-now-we-can-see-them/?utm_campaign=RSS|NSNS&utm_content=astronomy&utm_medium=RSS&utm_source=NSNS Wed, 29 Jul 2026 15:00:00 +0000 /?p=2579280 2579280 We’ve found the best example yet of an enormous wandering black hole /article/2581301-weve-found-the-best-example-yet-of-an-enormous-wandering-black-hole/?utm_campaign=RSS|NSNS&utm_content=astronomy&utm_medium=RSS&utm_source=NSNS Mon, 27 Jul 2026 16:00:00 +0000 /article/2581301-auto-draft/ 2581301 Maya mathematician’s name decoded alongside astronomical formula /article/2578746-maya-mathematicians-name-decoded-alongside-astronomical-formula/?utm_campaign=RSS|NSNS&utm_content=astronomy&utm_medium=RSS&utm_source=NSNS Mon, 13 Jul 2026 23:01:00 +0000 /?p=2578746
The mathematical formula inscribed on a wall at the Maya site of Xultun, Guatemala
F.D. Rossi; H. Hurst

An ancient Maya astronomer-mathematician has been identified for the first time along with his complex calculations made around 1200 years ago, predicting the orbital cycles of Mars and Venus.

“This is the first direct mention of an ancestral Maya astronomer-mathematician by personal name,” says at the Massachusetts Institute of Technology.

It is also the oldest recorded name of an astronomer-mathematician ever known from anywhere in the Americas, he says.

The Maya civilisation flourished in Central America between roughly 2000 BC and AD 1697. They had advanced knowledge of mathematics and astronomy, but much of it was lost after the mass burning of their books by Spanish missionaries.

Since 2010, excavations at the site of Xultun, Guatemala, have revealed astronomical and mathematical inscriptions inside a small masonry building.

On the east and north-east walls of the building are around 50 texts that scientists believe are “rough drafts” made by Maya mathematicians as they charted and predicted the cycles of celestial objects relative to Earth and to one another.

Rossi and his colleagues have painstakingly deciphered one of these murals, named Text 19. At the bottom of the mural is the name of Sak Tahn Waax, which translates to White-chested Fox, who is believed to be the author of the formula.

Mounds at the the archaeological site of Xultun, Guatemala, where the inscription was found
Proyecto Regional Arqueológico San Bartolo-Xultun; PRASBX

Text 19 consists of 11 hieroglyphs, which had to be scanned, photographed and magnified under different illumination angles, and compared with other, later, astronomical-mathematical writings, before their meaning could be deduced.

While similar mathematical and astronomical expertise is found across Maya cities, the mention of Sak Tahn Waax, who the researchers believe was probably male, is unique.

“Whether this is an instance of the scribe himself signing his own calculation or attributing the intellectual work to another, we have a formula and the name of its creator, which serves to demonstrate the importance of this kind of intellectual contribution for Classic Maya people,” says Rossi.

The calendar system on display in Text 19 uses maths in relation to time periods, he says. These time periods were drawn from a 260-day calendar, a 365-day solar calendar, a 584-day approximation of Venus’s synodic cycle (when the planet returns to the same position relative to both Earth and the sun) and a 780-day approximation of Mars’s synodic cycle. The total length of the formula is five Venus synodic cycles or 2920 days, and the date that Text 19 most likely refers to is 7 November of AD 781 in the Julian calendar.

Exactly how this formula would have been applied is unknown, says Rossi, as it “isn’t incorporated into any larger body of work”.

“We think it is meant to concisely and meaningfully show the relationship between these two planets and human counts of time in ways that could then be applied to political ceremony, predictive astronomy and understandings of seasonality,” he says.

Such meticulous mathematical legwork would have been critical to structuring life in a world before computers, smartphones and weather apps, says Rossi.

Journal Reference:

Antiquity

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The most detailed survey of the universe ever conducted starts now /article/2532167-the-most-detailed-survey-of-the-universe-ever-conducted-starts-now/?utm_campaign=RSS|NSNS&utm_content=astronomy&utm_medium=RSS&utm_source=NSNS Tue, 30 Jun 2026 15:00:44 +0000 /?post_type=article&p=2532167
A field of stars in the constellation Lupus captured by the Vera C. Rubin Observatory
NSF–DOE Vera C. Rubin Observatory/NOIRLab/SLAC​/AURA

The Vera C. Rubin Observatory in Chile is finally beginning its mammoth survey of the universe. After a year of testing and calibration, it is starting the Legacy Survey of Space and Time, which is poised to become the most detailed record of the universe ever captured.

“Today, we begin filming the greatest cosmic movie ever made,” said Brian Stone at the US National Science Foundation in a .

For the next decade, Rubin will collect about 10 terabytes of data every night in the form of hundreds of high-resolution images of the southern sky. Each image will cover an area about 40 times the size of the full moon, and the completed survey will include nearly the entirety of the sky that is visible from the southern hemisphere.

This treasure trove of data will serve several purposes. The first, which has already begun, is to alert researchers to anything changing in the night sky, such as the appearance of supernovae or the motion of asteroids and comets.

“Millions of alerts in just the last couple of months show that Rubin is up and running as a discovery machine,” said at Stanford University in California, who is part of the Rubin team. “Now we’re putting it all together.”

These alerts have already led to the discovery of more than 11,000 new asteroids, and they are expected to result in the most complete inventory of solar system objects ever created.

In addition to canvassing the solar system, Rubin will provide information about more distant objects, building a detailed map of the Milky Way galaxy and peering deeper into the universe.

An early-release image (above) shows a sea of stars, interstellar gas and even distant galaxies. Such deep, detailed images taken again and again over 10 years will enable researchers to study rare cosmic events and even gain insight into dark matter, dark energy and the expansion of the universe.

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We may have finally solved cosmology’s chicken-or-the-egg problem /article/2530220-we-may-have-finally-solved-cosmologys-chicken-or-the-egg-problem/?utm_campaign=RSS|NSNS&utm_content=astronomy&utm_medium=RSS&utm_source=NSNS Mon, 15 Jun 2026 08:00:57 +0000 /?post_type=article&p=2530220 2530220 Hundreds of new moons are revealing our solar system’s violent history /article/2527870-hundreds-of-new-moons-are-revealing-our-solar-systems-violent-history/?utm_campaign=RSS|NSNS&utm_content=astronomy&utm_medium=RSS&utm_source=NSNS Wed, 10 Jun 2026 15:00:31 +0000 /?post_type=article&p=2527870 2527870 A cosmic case of mistaken identity that can only be solved right now /article/2529145-a-cosmic-case-of-mistaken-identity-that-can-only-be-solved-right-now/?utm_campaign=RSS|NSNS&utm_content=astronomy&utm_medium=RSS&utm_source=NSNS Tue, 09 Jun 2026 08:00:32 +0000 /?post_type=article&p=2529145 2529145 How the electromagnetic spectrum opened our eyes to the universe /article/2528422-how-the-electromagnetic-spectrum-opened-our-eyes-to-the-universe/?utm_campaign=RSS|NSNS&utm_content=astronomy&utm_medium=RSS&utm_source=NSNS Tue, 02 Jun 2026 17:00:00 +0000 /?post_type=article&p=2528422 2528422