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The Distinctive Impact of Power Outages on Solar and Electric-Powered Homes

An expert in energy technologies uses AI tools to investigate the impact of extreme weather on solar-powered and electrified homes and uncover their unique vulnerabilities and develop insights on how they handle harsh conditions. As winter storms and summer heat waves increasingly stress the nation's power grids, Stevens researchers have developed a new way to

Harnessing AI to Revolutionize Healthcare: A Deep Dive into Clinical Implementation

Using a pioneering artificial intelligence platform, researchers have assessed whether a cardiac AI tool recently trialed in South Australian hospitals actually has the potential to assist doctors and nurses to rapidly diagnose heart issues in emergency departments. Using a pioneering artificial intelligence platform, Flinders University researchers have assessed whether a cardiac AI tool recently trialled

The Distinctive Impact of Power Outages on Solar and Electric-Powered Homes

An expert in energy technologies uses AI tools to investigate the impact of extreme weather on solar-powered and electrified homes and uncover their unique vulnerabilities and develop insights on how they handle harsh conditions. As winter storms and summer heat waves increasingly stress the nation's power grids, Stevens researchers have developed a new way to

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The Distinctive Impact of Power Outages on Solar and Electric-Powered Homes

An expert in energy technologies uses AI tools to investigate the impact of extreme weather on solar-powered and electrified homes and uncover their unique vulnerabilities and develop insights on how they handle harsh conditions. As winter storms and summer heat waves increasingly stress the nation's power grids, Stevens researchers have developed a new way to

Revolutionizing Cancer Care with Tailored 3D Bioprinting Solutions

Scientists have successfully developed a gastric cancer model using 3D bioprinting technology and patient-derived cancer tissue fragments. This innovative model preserves the characteristics of actual patient tissues and is expected to rapidly evaluate and predict individual patient drug responses. A collaborative research team led by Professor Jinah Jang from the Department of Mechanical Engineering and

Harnessing AI to Revolutionize Healthcare: A Deep Dive into Clinical Implementation

Using a pioneering artificial intelligence platform, researchers have assessed whether a cardiac AI tool recently trialed in South Australian hospitals actually has the potential to assist doctors and nurses to rapidly diagnose heart issues in emergency departments. Using a pioneering artificial intelligence platform, Flinders University researchers have assessed whether a cardiac AI tool recently trialled

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Revolutionizing Robot Collaboration: A Fresh Approach to Teamwork in Automation

New research shows that programming robots to create their own teams and voluntarily wait for their teammates results in faster task completion, with the potential to improve manufacturing, agriculture and warehouse automation. New research from the University of Massachusetts Amherst shows that programming robots to create their own teams and voluntarily wait for their teammates

Bendable Metamaterials: Engineering the Future with a Nod to Nostalgic Toys

Common push puppet toys in the shapes of animals and popular figures can move or collapse with the push of a button at the bottom of the toys' base. Now, a team of engineers has created a new class of tunable dynamic material that mimics the inner workings of push puppets, with applications for soft

New Research Debunks AI’s Existential Threat to Humanity

Large Language Models (LLMs) are entirely controllable through human prompts and lack 'emergent abilities'; that is, the means to form their own insights or conclusions. Increasing model size does not lead LLMs to gain emergent reasoning abilities, meaning they will not develop hazardous abilities and therefore do not pose an existential threat. A new study

Revolutionary Research Paves the Way for Sustainable Chemistry Solutions

Researchers have introduced a new advancement in the fight against climate change. Their study showcases a novel method for understanding the mechanisms of carbon dioxide re-utilization leading to fuels and chemicals. This work paves the road for the further optimization of this catalytic process driven by renewable electricity. A recent publication in Nature Communications by

Innovative Green Chemistry: Pioneering Sustainable Pathways for Unique Molecular Constructs

Polymers can be thought of like trains: Just as a train is composed of multiple cars, polymers are made up of multiple monomers, and the couplings between the train cars are similar to the chemical bonds that link monomers together. While polymers have myriad applications -- from drug delivery to construction materials -- their structures

Revolutionizing Robotic Vision: The Game-Changing Artificial Compound Eye

A research team has recently developed a novel artificial compound eye system that is not only more cost-effective, but demonstrates a sensitivity at least twice that of existing market products in small areas. The system promises to revolutionize robotic vision, enhance robots' abilities in navigation, perception and decision-making, while promoting commercial application and further development

Revolutionary Discovery: Bioinspired Double Helix with Switchable Chirality Unlocks Molecular Control

The control of artificial double-helical structures, which are essential for the development of high-order molecular systems, remains difficult. In a new study, researchers have developed novel double-helical monometallofoldamers that exhibit controllable helicity inversion and chiral information transfer, in response to external stimuli. These monometallofoldamers can lead to novel artificial supramolecular systems for molecular information transmission

The Art of Survival: How Mortal Filaments Organize Themselves to Thrive

A previously unknown mechanism of active matter self-organization essential for bacterial cell division follows the motto 'dying to align': Misaligned filaments 'die' spontaneously to form a ring structure at the center of the dividing cell. The work could find applications in developing synthetic self-healing materials. A previously unknown mechanism of active matter self-organization essential for

Revolutionizing Solar Power: Pioneering Researchers Boost Perovskite Cell Longevity with Innovative Chiral ‘Springy’ Interface

A research team has constructed an unprecedented chiral-structured interface in perovskite solar cells, which enhances the reliability and power conversion efficiency of this fast-advancing solar technology and accelerates its commercialization. A research team led by the School of Engineering of the Hong Kong University of Science and Technology (HKUST) has constructed an unprecedented chiral-structured interface

Revolutionary Plasma-Catalytic Method for CO2 Hydrogenation to Methanol at Ambient Conditions

A research team reports a pioneering plasma-catalytic process for the hydrogenation of CO2 to methanol at room temperature and atmospheric pressure. This breakthrough addresses the limitations of traditional thermal catalysis, which often requires high temperatures and pressures, resulting in low CO2 conversion and methanol yield. Researchers at the University of Liverpool have achieved a significant

The Marvelous Adhesion of Butterflies: How They Secure Themselves to Branches During Transformation

Most of us learned about butterfly metamorphosis as a kid -- a wriggly caterpillar molts its skin to form a tough chrysalis and emerges as a beautiful butterfly. But how exactly do chrysalises stay anchored as the butterfly brews within? Research shows that, despite their silks being weak and thin on their own, caterpillars can

Revolutionizing 3D Printing: Bioinks from Microalgae Transforming the Future

Microalgae such as the diatom Odontella aurita and the green alga Tetraselmis striata are especially suitable as 'biofactories' for the production of sustainable materials for 3D laser printing due to their high content in lipids and photoactive pigments. An international research team has succeeded for the first time in manufacturing inks for printing complex biocompatible