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Categories: Computer Science: Encryption, Space: Exploration

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Space: Exploration Space: The Solar System
Published

Geologist proposes the number of ancient Martian lakes might have been dramatically underestimated by scientists      (via sciencedaily.com) 

Though Mars is a frozen desert today, scientists have shown that Mars contains evidence of ancient lakes that existed billions of years ago, which could contain evidence for ancient life and climate conditions on the red planet. Through a meta-analysis of years of satellite data that shows evidence for lakes on Mars, a geologist has proposed that scientists might have dramatically underestimated the number of ancient Martian lakes that once existed.

Space: Exploration Space: The Solar System
Published

NASA's Perseverance rover investigates geologically rich Mars terrain      (via sciencedaily.com) 

NASA's Perseverance rover is well into its second science campaign, collecting rock-core samples from features within an area long considered by scientists to be a top prospect for finding signs of ancient microbial life on Mars.

Space: Exploration Space: The Solar System
Published

Saturn's rings and tilt could be the product of an ancient, missing moon      (via sciencedaily.com) 

Scientists propose a lost moon of Saturn, which they call Chrysalis, pulled on the planet until it ripped apart, forming rings and contributing to Saturn's tilt.

Space: Exploration
Published

MICROSCOPE mission presents most precise test of general relativity's weak equivalence principle      (via sciencedaily.com) 

Researchers present the most precise test yet of the weak equivalence principle, a key component of the theory of general relativity. The report describes the final results from the MICROSCOPE mission, which tested the principle by measuring accelerations of free-falling objects in a satellite orbiting Earth.

Space: Exploration Space: The Solar System
Published

Martian rock-metal composite shows potential of 3D printing on Mars      (via sciencedaily.com) 

A small amount of simulated crushed Martian rock mixed with a titanium alloy made a stronger, high-performance material in a 3D-printing process that could one day be used on Mars to make tools or rocket parts. The parts were made by researchers with as little as 5% up to 100% Martian regolith, a black powdery substance meant to mimic the rocky, inorganic material found on the surface of the red planet. While the parts with 5% Martian regolith were strong, the 100% regolith parts proved brittle and cracked easily. Still, even high-Martian content materials would be useful in making coatings to protect equipment from rust or radiation damage.

Computer Science: Encryption
Published

New method to systematically find optimal quantum operation sequences for quantum computers developed      (via sciencedaily.com) 

Computer scientists have succeeded in developing a method for systematically finding the optimal quantum operation sequence for a quantum computer. They have developed a systematic method that applies optimal control theory (GRAPE algorithm) to identify the theoretically optimal sequence from among all conceivable quantum operation sequences. This method is expected to become a useful tool for medium-scale quantum computers and is expected to contribute to improving the performance of quantum computers and reducing environmental impact in the near future.

Space: Exploration Space: Structures and Features
Published

NASA's Webb takes its first-ever direct image of distant world      (via sciencedaily.com) 

Astronomers have used NASA's James Webb Space Telescope to take a direct image of a planet outside our solar system. The exoplanet is a gas giant, meaning it has no rocky surface and could not be habitable. The image shows how Webb's powerful infrared gaze can easily capture worlds beyond our solar system, pointing the way to future observations that will reveal more information than ever before about exoplanets.

Space: Exploration
Published

Astronomers show how terrain evolves on icy comets      (via sciencedaily.com)     Original source 

With an eye toward a possible return mission years in the future, Cornell University astronomers have shown how smooth terrains -- a good place to land a spacecraft and to scoop up samples -- evolve on the icy world of comets.

Space: Exploration Space: The Solar System
Published

MOXIE experiment reliably produces oxygen on Mars      (via sciencedaily.com) 

The MOXIE experiment has now produced oxygen on Mars. It is the first demonstration of in-situ resource utilization on the Red Planet, and a key step in the goal of sending humans on a Martian mission.

Space: Exploration Space: The Solar System
Published

MAVEN and EMM make first observations of patchy proton aurora at Mars      (via sciencedaily.com) 

NASA's MAVEN and the United Arab Emirates' EMM missions have released joint observations of dynamic proton aurora events at Mars. By combining the observations, scientists determined that what they were seeing was essentially a map of where the solar wind was raining down onto the planet, opening new avenues for understanding the Martian atmosphere.

Space: Exploration
Published

Researchers find spaceflight may be associated with DNA mutations and increased risk of developing heart disease and cancer      (via sciencedaily.com) 

A new study could lead to ongoing health monitoring of astronauts to assess possible health risks and prevent disease progression.

Computer Science: Encryption
Published

From bits to p-bits: One step closer to probabilistic computing      (via sciencedaily.com) 

Scientists have developed a mathematical description of what happens within tiny magnets as they fluctuate between states when an electric current and magnetic field are applied. Their findings could act as the foundation for engineering more advanced computers that can quantify uncertainty while interpreting complex data.

Space: Exploration Space: The Solar System
Published

The sands of Mars are green as well as red, rover Perseverance discovers      (via sciencedaily.com) 

The accepted view of Mars is red rocks and craters as far as the eye can see. That's much what scientists expected when they landed the rover Perseverance in the Jezero Crater, a spot chosen partly for the crater's history as a lake and as part of a rich river system, back when Mars had liquid water, air and a magnetic field. What the rover found once on the ground was startling: Rather than the expected sedimentary rocks -- washed in by rivers and accumulated on the lake bottom -- many of the rocks are volcanic in nature. Specifically, they are composed of large grains of olivine, the muddier less-gemlike version of peridot that tints so many of Hawaii's beaches dark green.

Space: Exploration Space: The Solar System
Published

First underground radar images from Mars Perseverance Rover reveal some surprises      (via sciencedaily.com) 

NASA's Perseverance landed on Mars in February 2021 and has been gathering data on the planet's geology and climate and searching for signs of ancient life. The rover's subsurface radar experiment has returned images showing unexpected variations in rock layers beneath the Jezero crater. The variations could indicate past lava flows or possibly a river delta even older than the one currently being explored on the crater floor.

Space: Exploration Space: The Solar System
Published

NASA schedules PUNCH mission to launch in 2025      (via sciencedaily.com) 

More than 60 engineers and scientists are gathering at Southwest Research Institute Aug. 23-24 to kick off the launch vehicle collaboration for NASA's Polarimeter to Unify the Corona and Heliosphere (PUNCH) mission. PUNCH, which will study the inception of the solar wind, has secured its ride into Earth orbit aboard a SpaceX Falcon 9, sharing a ride into space with NASA's Spectro-Photometer for the History of the Universe, Epoch of Re-ionization, and Ices Explorer (SPHEREx) mission.

Physics: Acoustics and Ultrasound Space: Exploration Space: The Solar System
Published

Saturn V was loud but didn't melt concrete      (via sciencedaily.com) 

Abundant internet claims about the acoustic power of the Saturn V suggest that it melted concrete and lit grass on fire over a mile away, but such ideas are undeniably false. Researchers used a physics-based model to estimate the rocket's acoustic levels and obtained a value of 203 decibels, which matched the limited data from the 1960s. So, while the Saturn V was extremely loud, that kind of power is nowhere near enough to melt concrete or start grass fires.

Space: Exploration
Published

Seeing universe's most massive known star      (via sciencedaily.com) 

By harnessing the capabilities of the Gemini South telescope in Chile, astronomers have obtained the sharpest image ever of the star R136a1, the most massive known star in the universe. Their research challenges our understanding of the most massive stars and suggests that they may not be as massive as previously thought.

Space: Exploration
Published

Compact QKD system paves the way to cost-effective satellite-based quantum networks      (via sciencedaily.com) 

Researchers report an experimental demonstration of a space-to-ground quantum key distribution (QKD) network using a compact QKD terminal aboard the Chinese Space Lab Tiangong-2 and four ground stations. The demonstration represents an important step toward practical QKD based on constellations of small satellites, a setup considered one of the most promising routes to creating a global quantum communication network.

Space: Exploration Space: The Solar System
Published

Breaking in a new planet      (via sciencedaily.com) 

Impacts affect the porosity and structure of moons and planets more dramatically than scientists suspected, increasing their potential habitability for life. Studying how those impacts affect planetary bodies, asteroids, moons and other rocks in space helps planetary scientists understand extraplanetary geology, especially where to look for precious matter including water, ice and even, potentially, microbial life.

Space: Exploration Space: The Solar System
Published

Mars model provides method for landing humans on Red Planet      (via sciencedaily.com) 

A mathematical model developed by space medicine experts could be used to predict whether an astronaut can safely travel to Mars and fulfill their mission duties upon stepping foot on the Red Planet.