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Astronomers Catch Black Hole Spewing Matter After Feeding

Black holes are some of the most awe-inspiring and mysterious celestial objects in the universe. This is primarily because astronomers still don’t understand the underlying mechanisms that drive black holes, including its formation, evolution, and end. As their name implies, black holes can’t be viewed directly since they blend into the background of the vastness of space. Therefore, astronomers are limited to “seeing” black holes when they consume other celestial objects, most notably stars. When this happens, the astronomers see the light from the star being violently consumed by a nearby black hole in a spectacular display. However, astronomers are still puzzled regarding what happens after the consumption. from Universe Today https://ift.tt/ql9OvIR via IFTTT

Quantum Physicist Takes Aim at the Universe's Mysterious Arrow of Time

Scientists and philosophers have argued over the nature of time since … well, since time immemorial. Is time real, or is it a convenient illusion? Why does time seem to flow in just one direction? In a new book called “On Time,” British physicist Jim Al-Khalili lays out what he thinks is the answer to such questions. from Universe Today https://ift.tt/923Rtxy via IFTTT

ESA JUICE probe targets dark Jovian moon Kallichore in 2031

The planet Jupiter hosts more than 100 moons with the majority of attention going to the four Galilean moons, Io, Europa, Ganymede, and Callisto. This is primarily due to their active geology, including Io being the most volcanically active planetary body in the solar system and Europa having a vast subsurface liquid water ocean beneath its icy crust. However, Jupiter’s smaller and lesser-known moons could provide astronomers key insights into the history of the solar system since they’ve remained largely unchanged, unlike the Galilean moons. from Universe Today https://ift.tt/ula0TcX via IFTTT

7-stage journey reveals how falling space rocks survive air

At least once in our lives, we’ve all seen a bright streak of light briefly blaze across the sky and have quickly referred to it as an asteroid, meteor, shooting star, comet, or some other whimsical name we’ve heard others use to describe it. For those calling it a meteor, you would be correct, but we’ll touch upon this later. The time it takes for a space rock, bolide being its scientific name, to travel through Earth's atmosphere and crash into the ground literally takes only a few seconds. But what happens to a space rock during this very brief travel time, and how can scientists use this to learn about a specific space rock’s origin and the potential damage it could cause if it explodes in mid-air? from Universe Today https://ift.tt/769a2Nx via IFTTT

Gardening the Moon's Cosmic Archives

When a meteoroid hits the Moon's surface, it does more than just dig up a little dirt. It actually excavates a little bit of cosmic history that recorded a long-ago supernova explosion. Scientists at the University of Hawaii Institute of Geophysics and Planetology have come up with a way to decode that history and learn something about such energetic events in the Universe. from Universe Today https://ift.tt/GtCqujH via IFTTT

Roman Rises! Five Things to Know About NASA's New Space Telescope

NASA's newest eye on the sky, the Nancy Grace Roman Space Telescope, has begun its journey to unravel the secrets of dark matter, dark energy and Earthlike planets — months ahead of schedule. from Universe Today https://ift.tt/dTCyOnL via IFTTT

Ancient Dust Grains Hold Magnetic Clues to the Sun's Birth

Those little dust grains that fall to Earth during meteor showers or end up as part of larger meteorites found on Earth may hold surprising clues to the formation of the Sun. That's because they record the state of the magnetic field in the protostellar nebula from which Earth (and ultimately the planets) formed. from Universe Today https://ift.tt/Lc2qCab via IFTTT

NASA Announces Next Steps for Swift Rescue Mission

Due to an ongoing commercial spacecraft attitude control issue, NASA and Katalyst Space announced Wednesday the LINK spacecraft will attempt to conduct rendezvous and proximity operations with NASA’s Neil Gehrels Swift Observatory to demonstrate key capabilities for the future of space exploration. from Universe Today https://ift.tt/Iq3MDPW via IFTTT

Measuring the Mass of the Universe Isn't As Simple as Astronomers Thought

How do scientists know the mass of the Universe? Measuring it has traditionally relied on knowing how many stars there are in galaxies, as well as clouds of gas and dust, and associated dark matter. Astronomers generally use the mass of the brightest stars to estimate the mass of an entire galaxy. That means the rest of a galaxy's stars and its dark matter are essentially invisible. For decades, astronomers estimated the number of small, unseen stars in clusters and galaxies using a mathematical rule that assumed stars formed in roughly the same mass proportions everywhere in the Universe. That tool is called the initial mass function (IMF). It describes how many stars of each size there are in a given cluster or galaxy. However, there are challenges with the way it's currently applied because of assumptions it contains. from Universe Today https://ift.tt/FsHTj3a via IFTTT

Interstellar Travel V: Warp Drives, Wormholes, and Halo Drives

In our fifth installment, we explore the most exotic proposals for interstellar travel, including the Alcubierre Warp Metric, wormhole travel, the Halo Drive, and other truly advanced concepts. from Universe Today https://ift.tt/KFjYyh5 via IFTTT

Spaceflight Leaves Heart Muscle Cell Strength Intact

Since the dawn of human space exploration, astronauts, scientists, and engineers have examined the short- and long-term effects of microgravity (often mistakenly called zero-gravity) on the human body. This includes the distribution of fluids to the upper body (called “puffy face”), an increase in height from the spine slightly extending, how solar and cosmic radiation impacts humans at the genetic level, and skeletal and muscle loss. However, arguably all these aspects pale in comparison to how the microgravity from spaceflight impacts the heart, and specifically heart muscle cells. from Universe Today https://ift.tt/gTqWJfw via IFTTT

Astronaut Microbes Might Survive at Moon's Pole, NASA Warns

One of the primary objectives of space exploration that often gets overlooked is the intense effort that goes into ensuring Earth microbes don’t contaminate planetary objects, also called forward contamination. This is done to prevent contaminating any potential life that might be present could get killed off my Earth microbes and scientists don’t want to make false discoveries. While space radiation and extreme temperatures often kill off any pesky microbes that hitch a ride on spacecraft, there remains a longstanding knowledge gap regarding whether microbes could survive the lunar polar regions due to its deep craters and varying topography. from Universe Today https://ift.tt/78KlOTn via IFTTT

Some Comets are Naked, and One Just Got Caught Photo-Bombing

Japanese researchers got lucky when a comet they wanted to study was found photo-bombing archival images from Japan's Subaru Telescope. The Subaru, with its 8.2 meter mirror, happened to image comet 28P/Neujmin from just the right angle to accurately characterize its surface. Their work is part of the ongoing effort to understand comets and asteroids, why some of them share properties, and what that means for their formation and evolution as Solar System objects. from Universe Today https://ift.tt/lm5eVx7 via IFTTT

Why Astronauts' Lower Eyelids "Let Go" in Space

A new study identifies possible mechanisms behind changes in astronauts' lower eyelids, a symptom associated with long periods in space that can affect their eyesight. from Universe Today https://ift.tt/yP6i9Ss via IFTTT

Theory-Defying Exoplanet Atmospheres Force a Rethink of Theories

The discovery of lava worlds with atmospheres is challenging our theories of how atmospheres escape, and calling into question the idea of the cosmic shoreline. Stanford researchers have developed a model that explains how lava-covered worlds close to their stars can retain their atmospheres. The new theory could inform the search for life beyond our Solar System. from Universe Today https://ift.tt/GkXqCBt via IFTTT

Planets Hurry To Form Before the Protoplanetary Disk Dissipates

Planets form in protoplanetary disks, reservoirs of gas and dust around young stars. But young stars are a little hyperactive, and they emit powerful winds that can dissipate the gas. So planets, especially gas giants, are in a race against time to form. They only have a few million years before the gas is gone. from Universe Today https://ift.tt/U59iLbm via IFTTT

NASA’s Webb Telescope Rules Out Two New Dyson Sphere Candidates

Recent searches for the technosignatures of hypothetical Dyson Spheres again turn up empty. from Universe Today https://ift.tt/Q6iqVU9 via IFTTT

AI Spots Hidden Solar Storm Signs 9 Hours Early

When we think of weather forecasts, we instinctively think of weather on Earth like rain or shine. However, we rarely consider weather forecasts from outside of the Earth, also called space weather. While space weather often results in the awe-inspiring aurora located at the northern and southern latitudes, we often forget the negative impacts of space weather on our everyday lives. This includes potential disruption of communication satellites or ground stations. The primary conundrum that has eluded researchers is being able to forecast incoming space weather so we can better prepare for its impact. from Universe Today https://ift.tt/pthKa2T via IFTTT

Scientists Melted A Diamond and Cracked a Secret of Ice Giants

Some of the strangest weather in the solar system doesn’t happen on Earth, or even Jupiter’s Great Red Spot - it happens in the interior of the Ice Giants like Neptune and Uranus. Specifically, scientists have long believed that, at certain pressure and temperatures, it literally rains diamonds inside of these planets. And for the first time, scientists have mimicked the process they believe creates that. A new paper by physicists at the Lawrence Livermore National Laboratory (LLNL), published in Nature Physics, resolves a 20 year old scientific mystery, and shows how the same physics that makes it rain diamonds inside Neptune could also help us triple our fusion energy output. from Universe Today https://ift.tt/3sgcjRm via IFTTT

A Greenland Glacier Loses Another Chunk of Ice

The ESA's Sentinel satellites captured a 76 sq. km. chunk of ice breaking off from Greenland's Petermann Glacier. They watched the cracks and deformations happen in real time leading up to the calving. While calving is normal, it's happening more often, and this is another clear sign that the Arctic is rapidly changing due to the warming climate. from Universe Today https://ift.tt/HzQuVNO via IFTTT