A new study suggests that glacial sediments played a crucial role in the emergence and evolution of global plate tectonics. The research found two major periods of worldwide glaciation, each boosting the rate of plate tectonics, which resulted in massive deposits of glacier-scrubbed sediment.
Researchers from Helmholtz-Zentrum Dresden-Rossendorf found that Venus, Earth, and Jupiter's tidal forces impact the Sun's magnetic field, causing it to follow a regular cycle. This discovery explains the Sun's 11-year activity cycle and has implications for climate predictions and space weather.
Researchers at Dartmouth College and City University of Hong Kong developed a swimming robot with a light-controlled cellular engine that can perform highly-targeted drug delivery. The biohybrid device transforms its shape when exposed to skin-penetrating near-infrared light, allowing it to drive and brake through fluid environments.
Rainer Hedrich's new project aims to investigate the molecular mechanisms underlying frequency-dependent decision making in Dionaea, using mutants with disturbed stimuli transmission. The researcher hopes to determine the cellular basis for counting and decision-making in plants.
Researchers found that the carnivorous waterwheel plant catches a wide variety of prey, including fast-swimming animals and slow-moving snails. The plant's diverse diet may be an adaptation to its fragmented habitats.
Researchers found a fine haze of cosmic dust over Mercury's orbit, forming a ring some 9.3 million miles wide. They also identified the likely source of dust at Venus' orbit: a group of never-before-detected asteroids co-orbiting with the planet.
Scientists have recovered accurate values for precession frequencies of Mercury, Venus, Earth, Mars, and Jupiter using lake sediment data from the Late Triassic and Early Jurassic epochs. The findings provide insights into climate variations driven by Solar System chaos and could constrain models of Solar System evolution.
Recreating Earth's interior conditions helps scientists understand diamond formation and carbon transport in the mantle. Carbonate minerals remain stable up to depths of 1,000-1,300km before reacting with surrounding silica to form bridgmanite.
Researchers from Heidelberg University discovered a large igneous province that could have triggered the Gaskiers glaciation approximately 580 million years ago. The basaltic eruptions covered an area of over 1,000 kilometers and may have led to short-term global warming before causing long-term climate effects.
By using stimuli-responsive materials and geometric principles, researchers have designed structures that can determine their response to the environment through physical and chemical changes. These 'embodied logic' systems can switch between multiple configurations in response to pre-determined environmental cues, enabling complex mec...
Researchers identified a giant streak structure among Venus' clouds using Akatsuki spacecraft data, which was replicated by high-resolution climate simulations. The study suggests that the streak structure is formed from baroclinic instability and jet streams in the planet's atmosphere.
A new review shows that plant-based diets improve cardiovascular safety and performance in endurance sports, benefiting athletes' heart health, performance, and recovery. A varied diet rich in fruits, vegetables, grains, and legumes provides essential nutrients for athletes.
Researchers have created updated climate models for the seven planets around TRAPPIST-1, revealing unexpected similarities and differences with our solar system. The study suggests that some planets may have evolved like Venus due to an extremely hot early stellar phase, while others could be habitable ocean worlds.
The Parker Solar Probe captured a breathtaking view of Earth on Sept. 25, 2018, showcasing the Moon just behind our planet. The image also reveals a lens flare effect due to reflections from the bright Earthshine, which is visible in the hemispherical shaped feature.
Scientists discovered that extremely strong vibrations in the Earth allow rock to flow like a liquid for a crucial few minutes after impact. This 'acoustic fluidization' process enables the formation of mountainous ring structures within the crater's center.
Rice University scientists develop micron-sized spheres that trap and destroy bisphenol A (BPA), a synthetic chemical used in plastics. The spheres utilize reactive oxygen species (ROS) to degrade BPA into harmless chemicals, showing 90% efficacy after just one hour.
Researchers are studying the genetic basis of carnivorous plant evolution, seeking to understand how similar traits emerge in different orders. Dr. Kenji Fukushima's work aims to develop new molecular tools for analyzing specific genes in carnivorous plants.
A team of astronomers has unveiled 44 extrasolar planets, dwarfing typical confirmation numbers. Novel techniques validated the find, enabling precise determination of planet sizes and temperatures.
A new study in Nature Astronomy finds that ancient blue crystals trapped in meteorites show evidence of the early Sun's intense activity, including more eruptions and a stronger stream of charged particles. The crystals, formed over 4.5 billion years ago, preserved chemical records of the young Sun's interactions with its surroundings.
A team of scientists from OIST discovered that crater rays form when small objects create shockwaves in the ground, focusing sand grains along radial streaks. They developed a theoretical model to predict ray patterns and even use it to estimate the diameter of lost meteorites.
Scientists have discovered dunes made of solid methane on Pluto, defying expectations due to the dwarf planet's thin atmosphere. The findings were made possible by New Horizons' detailed images and modeling, which suggest that wind can create these unique landforms through a process involving sublimation.
Researchers analyze the historical use of symbols like the dove and rainbow in artistic depictions of peace. From ancient theatre to modern media motifs, these depictions highlight the power of love displacing violence in conveying a message of peace.
Scientists have documented a 405,000-year climate cycle in ancient rocks, which repeats every 405,000 years and plays a role in natural climate swings. The cycle is believed to result from a complex interplay with the gravitational influences of Venus and Jupiter.
A Rutgers-led study found that the 405,000-year cycle of gravitational tugs from Jupiter and Venus has shaped our planet's climate for over 215 million years. This consistent pattern allows scientists to precisely date geological events like the spread of dinosaurs.
Researchers validate the geologic time scale by matching magnetic polarity sequences with detrital zircon ages from a long sediment core. The correlation supports assumptions about planetary interactions used to construct the APTS for hundreds of millions of years.
A team at Plymouth University used artificial neural networks to classify five planets as potentially habitable, estimating a probability of life in each case. The technique may aid in selecting targets for future space missions with improved spectral detail.
Researchers propose that Venus' cloudy atmosphere could be a niche for extraterrestrial microbial life due to its highly acidic conditions and presence of sulfuric acid. The atmosphere's unique properties, such as the dark patches composed of concentrated sulfuric acid, have sparked interest in exploring this possibility.
Scientists developed artificial wings that mimic earwig folding patterns, featuring resilin biopolymer for rapid springing motion. The innovation allows for faster folding and deployment than conventional mechanisms.
Researchers develop MARIO, a fluorescent probe that measures magnesium ion concentration, showing its critical role in chromosome condensation. The study provides a new mechanism for chromosome organization and may help understand diseases like cancer.
Astronomers have imaged the surface of a red giant star, π1 Gruis, in unprecedented detail. The star's photosphere features just a few convective cells, or granules, which are much larger than those on our Sun.
A study on Mars- and Venus-sized planet formation suggests that low solar activity helped Venus retain its atmosphere. The model indicates that Mars lost its atmosphere due to low gravity and high stellar EUV luminosity, while Venus retained its atmosphere in scenarios with moderate radiation.
Researchers found that plants react to anesthetics by losing autonomous movements and being immobilized. This study suggests that plants can serve as a suitable alternative test system for human anesthesia.
Recent North Texas earthquakes occurred on faults inactive for at least 300 million years, supporting the assertion they were induced by human activity. The study discriminates between natural and induced seismicity using classical structural geology analysis techniques.
Researchers discovered a significant cooling of Titan's polar atmosphere, contradicting model predictions and other celestial bodies. The study attributes this phenomenon to exotic photochemical reactions producing hydrocarbons that cool the atmosphere.
NASA has launched a fleet of missions to study the planets in our solar system, revealing unique features of each planet's magnetosphere. Earth's and other magnetospheres deflect charged particles away from the planet, but also trap energetic particles in radiation belts.
The research found that Mars' magnetotail is unique, with a twist caused by magnetic reconnection between the solar wind and embedded surface fields. This process may also propel some of Mars' atmosphere into space.
Scientists from Harvard SEAS develop a technique to grow any target shape from any starting shape using a bilayer of elastic materials. The researchers demonstrate the system by modeling the growth of various shapes, including a flower petal and the face of Max Planck.
Scientists propose a new concept of terrestrial planet formation involving heat-pipes, which transport heat from interior to surface via mantle melting and magma ascent. This hypothesis resolves major outstanding problems across all planets, including the formation of volcanic terrains and lithospheres.
A team of scientists identified 68 exoplanets where observers can see the planets in our Solar System transit the Sun. Nine of these are ideally placed to observe Earth's transits, although none are habitable.
Researchers analyzed Akatsuki data to uncover wind velocities with temporal and spatial variabilities in lower-to-middle cloud layers. The discovery of an equatorial jet near the equator has significant implications for understanding superrotation theories.
Researchers at the University of Illinois created a crawling robot inspired by origami structures and biological systems, such as Venus Flytrap movement and uni-flagellated bacteria swimming. The robot uses origami building blocks to mimic earthworms' gait and setae design for forward and turning motions.
A NASA-led CubeSat mission, CUVE, is designed to investigate the nature of a mysterious absorber in Venus' uppermost cloud layer. The mission will utilize ultraviolet-sensitive instruments and a novel carbon-nanotube light-gathering mirror to gather data.
Researchers found that testosterone reduces the effectiveness of anti-inflammatory drugs in men, increasing prostaglandins and promoting inflammatory reactions. This discovery supports the need for gender-specific medicine, suggesting that treatment may require separate 'his' and 'hers' medicine cabinets.
Researchers from an international collaboration have analyzed data from the Venus Express spacecraft to investigate Venus's complex atmosphere. They found that stationary gravity waves at higher altitudes are related to surface elevations, suggesting wind currents caused by topographical obstacles contribute to the planet's superrotation.
Astrophysicists from Moscow Institute of Physics and Technology discovered that hydrogen bromide could play an important part in the photochemistry of Venus' lower atmosphere. The study found low abundance of HBr, but thermodynamic calculations suggest it dominates at lower altitudes.
Researchers found that the internal structure of sea sponge anchors, known as basalia spicules, allows them to bend up to 2.4 times before breaking, enabling them to securely attach to the seafloor. The study's findings may lead to the development of new materials with similar properties.
A team of researchers led by Esteban Gazel discovered deep portions of Earth's mantle might be as hot as it was more than 2.5 billion years ago. They found magnesium concentrations and textural evidence similar to the mysterious Archean komatiites in rocks from the 90 million-year-old Tortugal Suite in Costa Rica.
Researchers Simon Lock and Sarah Stewart propose a new type of planetary object called a synestia, which forms through giant impacts. Synestias could be responsible for moon formation, particularly in our solar system where Earth's moon is similar to its parent planet.
When an insect touches the Venus flytrap's sensory hairs, it triggers a chain reaction involving calcium and hormone jasmonate. The plant's glands then produce acidic vesicles filled with hydrochloric acid to decompose the prey.
A UCL-led team found evidence of planetary debris surrounding a double sun system called SDSS 1557, which suggests the presence of terrestrial planets like Tatooine. The discovery is remarkable because it shows a high metal content, including silicon and magnesium, indicating rocky planet assembly via large asteroids that formed.
Astronomers have confirmed the existence of seven small planets orbiting TRAPPIST-1, with sizes similar to Earth and temperatures comparable to those of Venus, Earth, and Mars. The inner six planets are likely rocky in composition and potentially harbor liquid water.
A study published in Biology of Sex Differences found that females are more vulnerable to certain stress-related and allergic diseases due to distinct differences in mast cells, a type of white blood cell. Mast cells play a key role in stress-related health issues common in women like IBS, migraines, and autoimmune diseases.
The Venus flytrap captures insects to extract nutrients and energy. Researchers found that the plant produces additional energy by oxidizing amino acids from its prey.
The Wolf 1061 system is a promising target in the search for extraterrestrial life due to its proximity to Earth and the presence of a habitable zone. The team's findings suggest that one of the planets, Wolf 1061c, may have an atmosphere similar to Venus, which could lead to a runaway greenhouse effect.
A study by Katie Holloway and colleagues found that therapists identify significant gender differences in therapy, with men wanting a quick fix and women wanting to discuss their feelings. Researchers also surveyed the general public, revealing key differences in preferred therapies and coping strategies between men and women.
Researchers have created a tiny radio receiver using atomic-scale defects in pink diamonds, enabling it to operate in harsh environments and human bodies. The device uses nitrogen-vacancy centers, which can emit single photons or detect weak magnetic fields.
Researchers observed L2 Puppis, a star similar to the Sun 5 billion years ago, to understand its evolution and potential impact on planets. A planet orbiting the giant star may offer clues about Earth's ultimate fate.
The US Department of Agriculture has awarded $6.7 million to research agroecosystems to improve food security and sustainability. The grants will focus on understanding the interactions between soil, water, plants, animals, and people in agricultural systems.
A recent drilling expedition at Chicxulub crater revealed how it collapsed to form a complex crater structure, confirming one prominent theory of peak ring formation. The findings provide insights into deep subsurface processes and challenge an alternative hypothesis on the origin of peak rings.
Research found that circumbinary planets can survive the late stages of their binary star's life by moving to wider orbits. Many such planets are likely to escape destruction and potentially become habitable for a short period.