In a groundbreaking study published in the journal Materials & Design, researchers at the Pacific Northwest National Laboratory have made a remarkable breakthrough in the field of electrical conductivity. By adding a small amount of graphene to copper, the team discovered that they could enhance the metal’s ability to conduct electricity, while simultaneously reducing its
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Artists who bring characters to life in animated movies and video games always strive for greater control over their animations. Recently, MIT researchers have introduced a groundbreaking technique that could grant artists this precise control. By generating mathematical functions called barycentric coordinates, artists can now define how 2D and 3D shapes can bend, stretch, and
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For centuries, magnetism has captivated human fascination and paved the way for numerous technological advancements. The generation of electric currents and the alignment of magnetic moments in materials have been the primary explanations for the existence of magnetism. However, an international team of researchers led by Professor Andrej Pustogow from TU Wien has recently achieved
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Type 2 diabetes affects over half a billion people globally, and yet the underlying cause of insulin breakdown in this condition remains unknown. However, researchers from Case Western Reserve University have made a significant breakthrough by unraveling the molecular mechanism behind the impaired functionality of insulin. Dr. Jonathan Stamler, the lead investigator, is renowned for
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Safeguarding the quality of groundwater is of utmost importance, with emerging pollutants posing a significant threat. One such emerging pollutant is sertraline, an antidepressant that is frequently detected in groundwater worldwide. Conventional wastewater treatment methods struggle to remove substances like sertraline due to their unique physicochemical properties. In a recent study, Brazilian scientists from the
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A recent study conducted by the University of Bath’s Institute for Sustainability has shed light on the feasibility of decarbonizing industrial processes in the U.K. to achieve the goal of Net Zero emissions. Contrary to popular belief, the research suggests that this transition could be achieved with minimal price increases of just 0.8%. By investigating
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The potential of hydrogen as a clean energy source has long been recognized, but widespread adoption faces significant technical challenges. To overcome these hurdles, it is crucial to develop advanced materials that can produce, store, transport, and preserve hydrogen. One key aspect in achieving this is gaining a fundamental understanding of how hydrogen behaves in
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The Manhattan Project, a covert research program conducted during World War 2, remains one of the most significant and controversial scientific endeavors in human history. Led by brilliant scientists like J. Robert Oppenheimer, it culminated in the development of the first atomic bombs. Milán Janosov, Founder of Geospatial Data Consulting and Chief Data Scientist at
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The generation and manipulation of high-repetition pulses have proven to be invaluable across a wide range of applications, from high-speed photography to laser processing. One particular type of pulse, known as Gigahertz (GHz) burst pulses, holds significant promise in visualizing ultrafast phenomena and improving laser processing efficiency. However, existing methods for producing GHz burst pulses
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The world’s oceans are teeming with life, and the creatures that inhabit them have a significant impact on the shape and structure of the seafloor. In a groundbreaking interdisciplinary study, researchers from Kiel University, together with colleagues from biology and oceanography, have examined the relationship between certain marine species and the formation of crater-like depressions
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In a recent research study led by the University of Washington, an analysis of human brain tissue has shed light on the behavior of immune cells known as microglia in individuals with Alzheimer’s disease compared to healthy brains. The findings from this study have the potential to identify new treatment targets for this devastating neurodegenerative
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Carbon capture and sequestration (CCS) is a key solution in reducing carbon dioxide (CO2) emissions and mitigating the impacts of climate change. However, the development and implementation of geologic sequestration sites face numerous barriers. Researchers from Carnegie Mellon University’s Department of Engineering and Public Policy (EPP) have conducted a study to estimate the time required
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