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Published Long time lag in heavily polluted regions as improvement in air quality warms climate
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Scientists have revised previous assumptions about the influence of pollutant particles, known as aerosols, on global warming. Using satellite data, researchers have shown that the relationship between water droplets in clouds and aerosol concentration is more non-linear than previously thought. Specifically, in heavily polluted regions, the additional warming of the Earth resulting from better air quality could occur much later than originally believed -- perhaps as much as 20 or 30 years later than expected.
Published After Chernobyl nuclear accident: The wild boar paradox, finally solved
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While the contamination of deer and roe deer decreased over time as expected, the measured levels of radioactivity in the meat of wild boar remained surprisingly high -- higher than the half-life of cesium would suggest. For many years, this 'wild boar paradox' was considered unsolved. Now an explanation has been found: It is a late aftermath of the nuclear weapons tests from the 1960s.
Published Paving the way for advanced quantum sensors
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Quantum physics has allowed for the creation of sensors far surpassing the precision of classical devices. Now, several new studies show that the precision of these quantum sensors can be significantly improved using entanglement produced by finite-range interactions. Researchers were able to demonstrate this enhancement using entangled ion-chains with up to 51 particles.
Published Newly engineered versions of bacterial enzyme reveal how antibiotics could be more potent
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Researchers applied a new technology to generate the full inventory of mutations in the bacterial species Escherichia coli where the antibiotic rifampicin attaches to and disables an essential bacterial enzyme known as RNA polymerase (RNAP).
Published Bat study reveals how the brain is wired for collective behavior
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Researchers used wireless neural recording and imaging devices to 'listen in' on the hippocampal brain activity of groups of Egyptian fruit bats as they flew freely within a large flight room. The researchers were surprised to find that, in this social setting, the bat's 'place' neurons encoded not only the animal's location, but also information about the presence or absence of other bats, and even the identity of bats in their path.
Published Study finds high blood and urinary metal levels among exclusive marijuana users
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New research has detected significant levels of metals in the blood and urine among marijuana users, concluding that marijuana may be an important and under-recognized source of lead and cadmium exposure. This is among the first studies to report biomarker metal levels among marijuana users and most likely the largest study to date, that links self-reported marijuana use to internal measures of metal exposure, rather than just looking at metal levels in the cannabis plant. The results are important because marijuana is the third most used drug in the world.
Published Neptune's disappearing clouds linked to the solar cycle
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Astronomers have uncovered a link between Neptune's shifting cloud abundance and the 11-year solar cycle, in which the waxing and waning of the Sun's entangled magnetic fields drives solar activity.
Published Want to fight climate change? Don't poach gorillas (or elephants, hornbills, toucans, etc.)
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A new article found that overhunting of gorillas, elephants, and other large fruit-eating seed-dispersers make tropical forests less able to store or sequester carbon.
Published A lightweight wearable device helps users navigate with a tap on the wrist
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Scientists have developed a fabric-based wearable device that 'taps' a user's wrist with pressurized air, silently helping them navigate to their destination. The study demonstrated that users correctly interpreted which direction the device was telling them to go an average of 87% of the time. Since the wearable embeds most of its control system within the fabric itself, using air instead of electronics, it can be built lighter and more compact than existing designs.
Published Some hosts have an 'evolutionary addiction' to their microbiome
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We've long known that hosts malfunction without their microbiome -- whether they are missing key microbial species or are completely microbe free. This malfunctioning is usually explained by the need for microbes to perform unique and beneficial functions, but evolutionary ecologist is questioning that narrative.
Published Neural network helps design brand new proteins
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A scientist combines attention neural networks with graph neural networks to better understand and design proteins. The approach couples the strengths of geometric deep learning with those of language models to predict existing protein properties and envision new proteins that nature has not yet devised. The model turns numbers, descriptions, tasks, and other elements into symbols for neural networks to use.
Published Male crested macaques more likely to respond to offspring screams recruiting support
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When infants are involved in agonistic conflicts, male crested macaques (Macaca nigra) are more likely to respond to screams from their own offspring. This is the conclusion of a recent study led by behavioral ecologists. The researchers studied the behavior of crested macaques in the Tangkoko Nature Reserve on Sulawesi, Indonesia, over a 24-month period (2008 to 2010).
Published AI-powered triage platform could aid future viral outbreak response
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A team of researchers has developed an innovative patient triage platform powered by artificial intelligence (AI) that the researchers say is capable of predicting patient disease severity and length of hospitalization during a viral outbreak.
Published Brighter comb lasers on a chip mean new applications
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Researchers have shown that dissipative Kerr solitons (DKSs) can be used to create chip-based optical frequency combs with enough output power for use in optical atomic clocks and other practical applications. The advance could lead to chip-based instruments that can make precision measurements that were previously possible only in a few specialized laboratories.
Published Overcoming the challenges to synthesising iron--sulfur proteins outside the glovebox
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Iron--sulfur (Fe--S) proteins, essential to all life forms, are difficult to synthesise due to the complicated molecular machinery involved and sensitivity of Fe--S clusters to oxygen. In a new study, a team of researchers devised an innovative protocol for synthesising mature Fe--S proteins, by bringing together a recombinant sulfur assimilation (SUF) system and an oxygen-scavenging system, thereby, paving the way for new technologies and a better understanding of the evolution of life.
Published Sensors harnessing light give hope in rehabilitation
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A research team overcomes limitations of conventional strain sensors using computer vision integrated optical sensors.
Published Thin-film batteries rechargable in just one minute
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Engineers aim to revolutionize rechargeable batteries: Their thin-film batteries are not only safer and longer-lasting than conventional lithium-ion batteries, they are also much more environmentally friendly to manufacture and can be charged in just one minute. For now, the battery is very small, but the founders have big plans for it.
Published Enhancing cancer therapy using functionalized photosynthetic bacteria
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Selective targeting of cancerous cells poses major clinical challenges during cancer therapy. However, this limitation can be overcome by using bioengineered bacteria with highly optimized chemical modifications. A recent study demonstrates the use of chemically modified purple photosynthetic bacteria for the successful detection and elimination of colon cancer cells in a mouse model. The study also sheds light on the underlying mechanism of action.
Published Hotter quantum systems can cool faster than initially colder equivalents
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The Mpemba effect is originally referred to the non-monotonic initial temperature dependence of the freezing start time, but it has been observed in various systems -- including colloids -- and has also become known as a mysterious relaxation phenomenon that depends on initial conditions. However, very few have previously investigated the effect in quantum systems. Now, the temperature quantum Mpemba effect can be realized over a wide range of initial conditions.
Published Graphene: Perfection is futile
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It has long been known that graphene has excellent electronic properties. However, it was unclear until now how stable these properties are. Are they destroyed by disturbances and additional effects, which are unavoidable in practice, or do they remain intact? Scientists have now succeeded in developing a comprehensive computer model of realistic graphene structures. It turned out that the desired effects are very stable. Even graphene pieces that are not quite perfect can be used well for technological applications.