Thursday, October 1, 2026

Exercise Keeps Astronaut Hearts in Fighting Shape for the Journey to Mars

Astronaut Don Pettit participates in endurance exercise during his mission in 2012. Credit - NASA

Getting a human body to Mars will take a toll on it. NASA and other space agencies have been concerned for years that the 6-9 month travel time to get to the Red Planet could have such a deleterious impact on human anatomy that any crewed mission would fail before it even began. But a new study, co-led by Dr. Benjamin Levine of the University of Texas Southwestern Medical Center and published in the journal Circulation, eases some of that concern by claiming that, given a sufficient exercise regimen in low gravity, astronauts should be able to operate on Mars upon arrival without any major cardiac issues.



Wednesday, September 30, 2026

Mars' North Pole Ice Is Far Cleaner Than Expected

North Pole of Mars. (Credit: NASA/JPL-Caltech/MSSS)

The planet Mars is known for its massive dust storms, dust devils, and two large polar ice caps, with its north polar cap being one of the Red Planet’s most striking features. Comprised of water ice, the north polar cap not only holds potential for being a source of water for future human missions, but it also helps researchers’ piece together past climates on Mars. But an ongoing debate within the scientific community is the ice-dust relationship at the north polar cap, specifically how much dust comprises the north polar cap compared to the much larger amount of water ice.



First Direct Image of Protoplanet Swirling Surrounding Gas

Image of WISPIT 2b (inset outer white dot with red and blue) and WISPIT 2c, (inset inner white dot) taken by ALMA in Chile. WISPIT 2b is the first directly imaged protoplanet (young planet) with gas moving towards us being blue and gas moving away from us being red. (Credit: M. Benisty, MPIA / ALMA)

The formation and evolution of planets is the driving force behind both where and how we might find life beyond Earth. This complex and lengthy process first begins with a massive ball of gas and dust that swirls until it flattens into a disk, followed by rocks ranging in size from pebbles to kilometer-scale objects clumping together in a process known as accretion, as they too swirl around within the larger disk and form rocky planets closer to the star and the farther out planets collect the gas, ice, and dust that the star couldn’t evaporate. Until now, researchers have been limited to visualizing the swirling gas and dust forming planets through computer models.



Coldest Lava Exoplanet Found to Hold an Atmosphere

Artist's illustration of a lava exoplanet. (Credit: NASA)

Exoplanets continue to challenge our understanding of planetary formation, evolution, and whether they might be able to support life as we know it. Scientists often use planets in our solar system as analogs for exoplanets, studying exoplanets with extremely short orbital periods forces scientists to constantly rethink our understanding of what planets can withstand during their lifetimes. One such type of exoplanet that has entered the foray in recent years are “lava world” exoplanets, and especially lava exoplanets that orbit dangerously close to their stars. But while it has been long known that lava worlds on with higher temperatures have atmospheres, “colder” lava worlds have been found to lack atmospheres.



Tuesday, September 29, 2026

Strange giant planet TOI-1355 b set to vanish from view in 2033

Artist's impression of a hot Jupiter. (Credit: NASA, ESA, L. Hustak (STScI))

Since their first discovery in 1995, hot Jupiter exoplanets (hot Jupiters, for short) quickly challenged our understanding of exoplanet formation and evolution, including exoplanetary system architecture. This is because, as their name implies, they orbit at extremely close distances to their host stars, ranging from a few days to a few hours. Some of their orbits are even oval-shaped, called eccentric in the scientific community, meaning their orbit is oval-shaped. But could such an orbit cause a hot Jupiter to completely vanish from view, preventing astronomers from studying it?



The Rate of Starbirth is Crashing in the "Modern" Universe

The cold molecular cloud Barnard 68 is a good example of the places where the material to form stars originates. A recent study shows that these clouds aren't being replaced as quickly as they used to be and star formation is slowing down over the past 4.5 billion years. Credit: ESO/VLT/FORS1

The Universe has been making fewer stars lately and astronomers want to know why. The obvious answer is: there hasn't been enough starbirth material. But, is that true? Is some other process at play? An international team led by researcher Hong Guo of the Chinese Academy of Sciences decided to dig into the reasons why it looks like starbirth is falling off.



Measuring the Distance Between Quasar Pairs Just Got Easier

Artist’s conception showing the intense light from a pair of quasars in the cores of two galaxies in the process of merging. Credit: NASA/ESA/Joseph Olmsted (STScI)

A new way to accurately measure the distance between quasar pairs is showing promise through University of Alberta research.