Showing 20 articles starting at article 541
< Previous 20 articles Next 20 articles >
Categories: Ecology: Nature, Engineering: Nanotechnology
Published Five dazzling new species of eyelash vipers discovered in Colombia and Ecuador
(via sciencedaily.com)
Original source 
Scientists have discovered five dazzling new species of eyelash vipers in the jungles and cloud forests of Colombia and Ecuador.
Published Alien invasion: Non-native earthworms threaten ecosystems
(via sciencedaily.com)
Original source 
Analysis reveals imported earthworm species have colonized large swaths of North America, and represent a largely overlooked threat to native ecosystems. The researchers warn of the need to better understand and manage the invaders in our midst.
Published New fossil site of worldwide importance uncovered in southern France
(via sciencedaily.com)
Original source 
Nearly 400 exceptionally well-preserved fossils dating back 470 million years have been discovered in the south of France by two amateur paleontologists. The discovery provides unprecedented information on the polar ecosystems of the Ordovician period.
Published Friend or foe? Ancient partnership between moss and fungi
(via sciencedaily.com)
Original source 
Researchers have shed new light on the ancient relationship between moss and fungi. They discovered that intricate moss-fungi interactions often depended on a third variable -- the presence of endobacteria within the fungi themselves.
Published Replacing animal-based foods with alternative proteins would unlock land for carbon removal
(via sciencedaily.com)
Original source 
Researchers report that replacing 50% of animal products with alternative proteins by 2050 could free up enough agricultural land to generate renewable energy equivalent in volume to today's coal-generated power while simultaneously removing substantial CO2 from the atmosphere.
Published EVs that go 1,000 km on a single charge: Gel makes it possible
(via sciencedaily.com)
Original source 
Engineers apply electron beam technology to develop an integrated silicon-gel electrolyte system.
Published New study sheds new light on forests' role in climate and water cycle
(via sciencedaily.com)
Original source 
Forests, which cover a third of Earth's land surface, are pivotal in carbon storage and the water cycle, though the full scope of their impact remains to be fully understood. In a new study, researchers provide new insights into the complex role forests play in the climate system and water cycle.
Published New approach for fast and cost-effective pathogen detection
(via sciencedaily.com)
Original source 
The ability to detect diseases at an early stage or even predict their onset would be of tremendous benefit to doctors and patients alike. A research team now develops intelligent, miniaturized biosensor devices and systems using nanomaterials to determine biomolecules and cells as well as biochemical reactions or processes as disease markers. The team's current publication describes the development of a portable, palm-sized test system that can simultaneously carry out up to thirty-two analyses of one sample.
Published Warmer water may help rivers keep antimicrobial resistance at bay
(via sciencedaily.com)
Original source 
New study suggests that temperature can influence the microbial competition in rivers.
Published How kelp forests persisted through the large 2014-2016 Pacific marine heatwave
(via sciencedaily.com)
Original source 
New research reveals that denser, and more sheltered, kelp forests can withstand serious stressors amid warming ocean temperatures.
Published Researchers reveal elusive bottleneck holding back global effort to convert carbon dioxide waste into usable products
(via sciencedaily.com)
Original source 
Think of it as recycling on the nanoscale: a tantalizing electrochemical process that can harvest carbon before it becomes air pollution and restructure it into the components of everyday products. The drive to capture airborne carbon dioxide from industrial waste and make it into fuel and plastics is gaining momentum after a team of researchers uncovered precisely how the process works and where it bogs down.
Published Complex tree canopies help forests recover from moderate-severity disturbances
(via sciencedaily.com)
Original source 
Extreme events wipe out entire forests, dramatically eliminating complex ecosystems as well as local communities. Researchers have become quite familiar with such attention-grabbing events over the years. They know less, however, about the more common moderate-severity disturbances, such as relatively small fires, ice storms, and outbreaks of pests or pathogens.
Published Structural isomerization of individual molecules using a scanning tunneling microscope probe
(via sciencedaily.com)
Original source 
An international research team has succeeded in controlling the chirality of individual molecules through structural isomerization. The team also succeeded in synthesizing highly reactive diradicals with two unpaired electrons. These achievements were made using a scanning tunneling microscope probe at low temperatures.
Published Unveiling the generation principles of charged particles 'trion' in 2D semiconductor
(via sciencedaily.com)
Original source 
Researchers pioneer dynamic manipulation and the generation principles of trion at the nanoscale using tip-enhanced cavity-spectroscopy.
Published How food availability could catalyze cultural transmission in wild orangutans
(via sciencedaily.com)
Original source 
The proverb "necessity is the mother of invention" has been used to describe the source from which our cultural evolution springs. After all, need in times of scarcity has forced humans to continually invent new technologies that have driven the remarkable cumulative culture of our species. But an invention only becomes cultural if it is learned and spread by many individuals. In other words, the invention must be socially transmitted. But what are the forces that drive social transmission?
Published Ultra-sensitive lead detector could significantly improve water quality monitoring
(via sciencedaily.com)
Original source 
Engineers have developed an ultra-sensitive sensor made with graphene that can detect extraordinarily low concentrations of lead ions in water. The device achieves a record limit of detection of lead down to the femtomolar range, which is one million times more sensitive than previous technologies.
Published Direct view of tantalum oxidation that impedes qubit coherence
(via sciencedaily.com)
Original source 
Scientists have used a combination of scanning transmission electron microscopy (STEM) and computational modeling to get a closer look and deeper understanding of tantalum oxide. When this amorphous oxide layer forms on the surface of tantalum -- a superconductor that shows great promise for making the 'qubit' building blocks of a quantum computer -- it can impede the material's ability to retain quantum information. Learning how the oxide forms may offer clues as to why this happens -- and potentially point to ways to prevent quantum coherence loss.
Published Plant groupings in drylands support ecosystem resilience
(via sciencedaily.com)
Original source 
Many complex systems, from microbial communities to mussel beds to drylands, display striking self-organized clusters. According to theoretical models, these groupings play an important role in how an ecosystem works and its ability to respond to environmental changes. A new article focused on the spatial patterns found in drylands offers important empirical evidence validating the models.
Published A sleeker facial recognition technology tested on Michelangelo's David
(via sciencedaily.com)
Original source 
Many people are familiar with facial recognition systems that unlock smartphones and game systems or allow access to our bank accounts online. But the current technology can require boxy projectors and lenses. Now, researchers report on a sleeker 3D surface imaging system with flatter, simplified optics. In proof-of-concept demonstrations, the new system recognized the face of Michelangelo's David just as well as an existing smartphone system.
Published Unveiling Oxidation-induced Super-elasticity in Metallic Glass Nanotubes
(via sciencedaily.com)
Original source 
Oxidation can degrade the properties and functionality of metals. However, a research team recently found that severely oxidized metallic glass nanotubes can attain an ultrahigh recoverable elastic strain, outperforming most conventional super-elastic metals. They also discovered the physical mechanisms underpinning this super-elasticity. Their discovery implies that oxidation in low-dimension metallic glass can result in unique properties for applications in sensors, medical devices and other nanodevices.