What's the Matter with the Universe?

An artist's rendering shows a star called a white dwarf with a planet (upper right) and material in orbit around the star. Courtesy of Mark Garlick/UCLA/Handout via REUTERS.
An artist's rendering shows a star called a white dwarf with a planet (upper right) and material in orbit around the star. Courtesy of Mark Garlick/UCLA/Handout via REUTERS.
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What's the Matter with the Universe?

An artist's rendering shows a star called a white dwarf with a planet (upper right) and material in orbit around the star. Courtesy of Mark Garlick/UCLA/Handout via REUTERS.
An artist's rendering shows a star called a white dwarf with a planet (upper right) and material in orbit around the star. Courtesy of Mark Garlick/UCLA/Handout via REUTERS.

A team of US astrophysicists has produced one of the most precise measurements ever made of the total amount of matter in the Universe, a longtime mystery of the cosmos.

The answer, published in The Astrophysical Journal on Monday, is that matter accounts for 31.5 percent -- give or take 1.3 percent -- of the total amount of matter and energy that make up the Universe.

The remaining 68.5 percent is dark energy, a mysterious force that is causing the expansion of the Universe to accelerate over time, and was first inferred by observations of distant supernovae in the late 1990s.

Put another way, this means the total amount of matter in the observable Universe is equivalent to 66 billion trillion times the mass of our Sun, Mohamed Abdullah, a University of California, Riverside astrophysicist and the paper's lead author, told AFP.

Most of this matter -- 80 percent -- is called dark matter. Its nature is not yet known, but it may consist of some as-yet-undiscovered subatomic particle.

The latest measurements correspond well with values previously found by other teams using different cosmological techniques, such as measuring temperature fluctuations in the low-energy radiation left over from the Big Bang.

"This has been a long process over the course of 100 years where we're gradually getting more and more precise," Gillian Wilson, the study's co-author and a professor at UCR told AFP.

"It's just kind of cool to be able to make such a fundamental measurement about the Universe without leaving planet Earth," she added.

So how exactly do you weigh the Universe?

The team honed a 90-year-old technique that involves observing how galaxies orbit inside galaxy clusters -- massive systems that contain thousands of galaxies.

These observations told them how strong each galaxy cluster's gravitational pull was, from which its total mass could then be calculated.

In fact, explained Wilson, their technique was originally developed by the pioneering astronomer Fritz Zwicky, who was the first person to suspect the existence of dark matter in galaxy clusters, in the 1930s.

He noticed that the combined gravitational mass of the galaxies he observed in the nearby Coma galaxy cluster was insufficient to prevent those galaxies from flying away from one another, and realized there must be some other invisible matter at play.

The UCR team, whose research received money from the US National Science Foundation and NASA, refined Zwicky's technique, developing a tool they called GalWeight that determines more accurately which galaxies belong to a given cluster and which do not.

They applied their tool to the Sloan Digital Sky Survey, the most detailed three-dimensional maps of the Universe currently available, measuring the mass of 1,800 galaxy clusters and creating a catalog.

Finally, they compared the number of clusters observed per unit volume in their catalog against a series of computer simulations, each of which was fed a different value for the total matter of the Universe.

Simulations with too little matter had too few clusters, while those with too much matter had too many clusters.

The "Goldilocks" value they found fit just right.

Wilson explained that having a more precise measure of the total amount of matter in the Universe may take us a step closer to learning the nature of dark matter, because "we know just how much matter we should be looking for" when scientists carry out particle experiments, for example at the Large Hadron Collider.

What's more, "the total amount of dark matter and dark energy tells us the fate of the Universe," she added, with the current scientific consensus being that we are headed for a "Big Freeze" where galaxies move further and further apart, and the stars in those galaxies eventually run out of fuel.



NCW, NEOM Celebrate First Striped Hyena Birth

Striped hyenas play an important ecological role by feeding on carcasses and carrion - SPA
Striped hyenas play an important ecological role by feeding on carcasses and carrion - SPA
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NCW, NEOM Celebrate First Striped Hyena Birth

Striped hyenas play an important ecological role by feeding on carcasses and carrion - SPA
Striped hyenas play an important ecological role by feeding on carcasses and carrion - SPA

The National Center for Wildlife (NCW), in collaboration with NEOM, has documented the first birth of a striped hyena following the reintroduction of two breeding pairs into NEOM Nature Reserve. The birth is a positive indication of the hyenas’ successful adaptation to the reserve and their ability to reproduce in the wild.

According to a press release issued by the NCW, the birth marks another milestone in NCW’s wildlife breeding and reintroduction programs, which include dedicated efforts for predator species aimed at restoring their natural roles within ecosystems.

Prior to the release, two pairs of striped hyenas were selected and underwent a rehabilitation program at one of NCW’s wildlife care facilities, SPA reported.

The program included veterinary examinations, health monitoring, and preparation for their transition into the wild. A specialized NCW team also conducted a field assessment of the reintroduction site to verify its readiness and ecological suitability for the hyenas.

NCW CEO Dr. Mohammed Qurban said: "This is the first striped hyena birth following their reintroduction, and it marks an important milestone in the center’s wildlife breeding and reintroduction programs.”

He emphasized that reintroducing species into their natural habitats represents an advanced stage in establishing populations capable of surviving and reproducing in the wild and restoring their ecological roles.

Striped hyenas play an important ecological role by feeding on carcasses and carrion. Their populations have declined in parts of their natural range due to several threats, particularly hunting and poisoning.


Chile-led Team Maps Antarctic Plant Genome in Step Towards Climate-resilient Crops

FILE PHOTO: A frozen section of the Ross Sea at the Scott Base in Antarctica on November 12, 2016. REUTERS/Mark Ralston/Pool/File Photo
FILE PHOTO: A frozen section of the Ross Sea at the Scott Base in Antarctica on November 12, 2016. REUTERS/Mark Ralston/Pool/File Photo
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Chile-led Team Maps Antarctic Plant Genome in Step Towards Climate-resilient Crops

FILE PHOTO: A frozen section of the Ross Sea at the Scott Base in Antarctica on November 12, 2016. REUTERS/Mark Ralston/Pool/File Photo
FILE PHOTO: A frozen section of the Ross Sea at the Scott Base in Antarctica on November 12, 2016. REUTERS/Mark Ralston/Pool/File Photo

A team led by Chilean researchers has produced the most complete genetic map yet of one of only two flowering plants that grow naturally in Antarctica, potentially helping the development of crops resistant to extreme weather.

Colobanthus quitensis has long attracted scientific interest because it can survive the freezing temperatures, lack of water and high levels of ultraviolet radiation in Antarctica, one of the planet's coldest and driest environments.

As record heat and extensive drought have increased the urgency of ⁠debate in many ⁠parts of the world over how to adapt agriculture, the scientists said they are now equipped to start assessing whether the plant's traits could be transferred to agricultural crops through gene-editing techniques.

The study, published in Oxford University Press journal "Genome Biology and Evolution," ⁠assembled all 40 chromosome-scale scaffolds that make up the plant's genetic blueprint under a project known as Polarix.

"We were able to sequence and assemble the entire genome," said Eduardo Castro, an associate researcher at Chile's Cape Horn International Center and lead author of the study alongside Claudio Meneses of Chile's Pontifical Catholic University.

"The idea is not to create transgenic plants. The idea is to edit the genome of a plant with ⁠nutritional ⁠value," Reuters quoted Castro as saying.

Identifying individual genes is easier once a genome has been mapped, but it can still take time. When that has been done, Castro said that scientists could need between five and 10 years to develop commercial applications.

A team in California supported the Chilean scientists, who said their work built on previous efforts by the Korea Polar Research Institute. That work produced only a partial version of the genome and was not published.


Stubborn Vulture Reportedly Plucked from Plane's Wing before Greece Flight

A vulture flies over the Iraty mountains, southwestern France on July 2, 2026. (Photo by Gaizka IROZ / AFP)
A vulture flies over the Iraty mountains, southwestern France on July 2, 2026. (Photo by Gaizka IROZ / AFP)
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Stubborn Vulture Reportedly Plucked from Plane's Wing before Greece Flight

A vulture flies over the Iraty mountains, southwestern France on July 2, 2026. (Photo by Gaizka IROZ / AFP)
A vulture flies over the Iraty mountains, southwestern France on July 2, 2026. (Photo by Gaizka IROZ / AFP)

A vulture who refused to budge had to be removed from the wing of a flight awaiting takeoff on the Greek island of Crete, in order to avoid potential damage to the plane, a local newspaper reported Monday.

The Patris daily said the incident occurred late Sunday at the island's Iraklio airport, when the fire service was called in to remove the large scavenger.

It pictured the bird tucked inside a jacket held by a firefighter. The report did not specify where the flight was headed.

Birds are routinely sucked into aircraft engines, occasionally causing serious accidents.

Last week, the US National Transportation Safety Board said bird remains had been found in the engine of a Ryanair plane that saw a blade break off on July 10, shattering a cabin window and partially sucking a passenger outside.

Four suspected bird strikes to the plane's engine had been reported by flight crews in the 12 months preceding the accident, but no damage was found in subsequent maintenance, the report said.