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Published Water for drinking? Nope, water for batteries
(via sciencedaily.com) 
A research team develops aqueous rechargeable batteries based on zinc anodes. Polymeric artificial interphase to improve battery stability.
Published More than one way to build a black bird
(via sciencedaily.com) 
For a species of flycatcher in the remote Solomon Islands, scientists have so far found at least two genetic pathways leading to the same physical outcome: all-black feathers. This change was no random accident. It was a result of nature specifically selecting for this trait.
Published Using sound to model the world
(via sciencedaily.com) 
Researchers have developed a machine-learning technique that captures and models the underlying acoustics of a scene from a limited number of sound recordings. The system can accurately simulate what any sound, like a song, would sound like if a person were to walk around to different locations in a scene.
Published Physics of disaster: How mudslides move
(via sciencedaily.com) 
A devastating fire followed by an intense rainstorm triggered mudslides in Southern California in 2018 that claimed 23 lives. New findings elucidate the physics behind the deadly disaster that may inform predictive models of future mudslides.
Published Researchers design model that predicts which buildings will survive wildfire
(via sciencedaily.com) 
Wildfires may seem unpredictable, leaving random ruin in their wake. Engineers have now developed a model that can predict how wildfire will impact a community down to which buildings will burn. They say predicting damage to the built environment is essential to developing fire mitigation strategies and steps for recovery.
Published Scientists uncover new clues about the climate and health impact of atmospheric particles
(via sciencedaily.com) 
Peering inside common atmospheric particles is providing important clues to their climate and health effects, according to a new study by chemists. Secondary organic aerosol (SOA) particles are ubiquitous in the atmosphere and play an important role in air quality and climate. They can add to air pollution and damage the lungs, as well as help deflect solar radiation or aid cloud formation. Different types of SOA can mix together in a single particle and their environmental impacts are governed by the new particles' physical and chemical properties, particularly the number of phases --or states-- it can exist in. In a new research letter published in the European Geosciences Union's open access journal Atmospheric Chemistry and Physics, an international team of researchers found that particles with two phases can form when different types of SOA mix. The finding could help improve current models that predict SOA climate and health effects.
Published Machine learning, from you
(via sciencedaily.com) 
Many computer systems people interact with on a daily basis require knowledge about certain aspects of the world, or models, to work. These systems have to be trained, often needing to learn to recognize objects from video or image data. This data often contains superfluous content that reduces the accuracy of models. So researchers found a way to incorporate natural hand gestures into the teaching process. This way, users can more easily teach machines about objects, and the machines can also learn more effectively.
Published Capturing and analyzing subtle combination tones produced by violins
(via sciencedaily.com) 
When two musical notes are played simultaneously, the human ear can perceive weak additional tones called combination tones. While less perceivable, objective combination tones are also generated by some musical instruments. Researchers have now used violins to explore these rarely studied objective combination tones. They found that the combination tones produced by higher-quality violins were much stronger and clearly audible and powerful air resonance and violin sound quality are linked. The higher-quality violins produced a stronger air resonance due to several factors, including structural material and crafting techniques.
Published Space probe's collision with asteroid: Study assesses ejecta momentum enhancement
(via sciencedaily.com) 
On September 26, NASA's Double Asteroid Redirection Test (DART) spacecraft crashed into Dimorphos, a moonlet of the near-Earth asteroid Didymos, at 14,000 miles per hour. Prior to the impact, engineers and scientists performed an experiment to study the cratering process that produces the mass of ejected materials and measures the subsequent momentum enhancement of the impact.
Published In nanotube science, is boron nitride the new carbon?
(via sciencedaily.com) 
Engineers synthesized aligned forests of nanoscale fibers made of boron nitride, or 'white graphene.' They hope to harness the technique to fabricate bulk-scale arrays of these nanotubes, which can then be combined with other materials to make stronger, more heat-resistant composites, for instance to shield space structures and hypersonic aircraft.
Published Mathematicians explain how some fireflies flash in sync
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A new study by mathematicians shows that math borrowed from neuroscience can describe how swarms of these unique insects coordinate their light show, capturing key details about how they behave in the wild.
Published Ancient genomes reveal hidden history of human adaptation
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The use of ancient DNA, including samples of human remains around 45,000 years old, has shed light on a previously unknown aspect of human evolution.
Published Violent supershear earthquakes are more common than previously thought
(via sciencedaily.com) 
About 14% of magnitude 6.7 or greater strike-slip earthquakes since 2000 have been supershear. That's 50% more than previously thought. Supershear earthquakes occur when a fault ruptures faster than seismic shear waves can travel through rock. The events were thought to be rare because scientists had mostly looked for them on land. The findings suggest that disaster planning assessments should include whether a fault is able to produce supershear quakes, which are potentially more destructive than other types.
Published Antarctic summer thaw starts earlier, ends later than previously believed
(via sciencedaily.com) 
New research changes our understanding of seasonal thawing in parts of Antarctica, as scientists have learned that summer thawing occurs nearly a month earlier, and stays thawed for a full two months longer than previously believed.
Published Uncovering the massive quantum mysteries of black holes
(via sciencedaily.com) 
Bizarre quantum properties of black holes -- including their mind-bending ability to have different masses simultaneously -- have been confirmed by physicists.
Published Socio-economic factors shown to drive mangrove losses and gains
(via sciencedaily.com) 
New research into the drivers of mangrove loss over the past 20 years has revealed that most of the degradation can be attributed to socio-economic and biophysical factors, with mangrove cover increasing in some areas.
Published New tech solves longstanding challenges for self-healing materials
(via sciencedaily.com) 
Engineering researchers have developed a new self-healing composite that allows structures to repair themselves in place, without having to be removed from service. This latest technology resolves two longstanding challenges for self-healing materials, and can significantly extend the lifespan of structural components such as wind-turbine blades and aircraft wings.
Published How low-cost earbuds can make newborn hearing screening accessible
(via sciencedaily.com) 
Researchers have created a newborn hearing screening system that uses cheap earbuds and a smartphone instead of an expensive commercial device.
Published Largest potentially hazardous asteroid detected in eight years
(via sciencedaily.com) 
Twilight observations have enabled astronomers to spot three near-Earth asteroids (NEA) hiding in the glare of the Sun. These NEAs are part of an elusive population that lurks inside the orbits of Earth and Venus. One of the asteroids is the largest object that is potentially hazardous to Earth to be discovered in the last eight years.
Published 2D nanosheets as anodes in Li-ion batteries: The answer is in the sheets
(via sciencedaily.com) 
Researchers use titanium diboride nanosheets as anode material in lithium-ion batteries to enable fast charging and extend battery life.