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Global defense technology provider focusing on unmanned ground vehicles (MAARS/TALON). Engineering emphasizes modular robotic platforms with integrated weapon systems or ISR payloads, utilizing secure, long-range control links for explosive ordnance disposal.
RSF defines a common language for robot service capability, lifecycle operations, certification pathways, and service-provider networks.
Amateur astronomer Joël Lapointe discovered a potential meteorite impact crater in Quebec's Côte-Nord region while planning a camping trip. The crater, named Uhackatik, was confirmed by Western planetary geologist Gordon Osinski during a visit in 2025 and is estimated to be 390 million years old and approximately 15 miles (25 kilometers) wide. This discovery is significant as it may be one of the largest craters identified in recent years, with Osinski noting that the last comparable find was the Hiawatha structure in Greenland. The crater's geological features, including shock metamorphic effects and preserved impact melt rocks, provide valuable insights into meteorite impacts, which can enhance our understanding of similar events on the Moon and Mars. The research on Uhackatik will be presented at the 88th Annual Meeting of the Meteoritical Society in Frankfurt, Germany, in August. Osinski and his team are currently analyzing samples to confirm the crater's extraterrestrial origin, while he continues his work with NASA for upcoming lunar missions, including Artemis 4 and 5, expected to launch as soon as 2028.
SPACE.com 1 hour ago Earth Astronomy Solar SystemNASA's Curiosity rover has discovered signs of ancient sandstorms on Mars, indicating that the planet's environment was vastly different billions of years ago. Researchers believe that ancient Mars had a thicker atmosphere, flowing rivers, and large lakes, contrasting sharply with its current barren landscape. The rover's observations, particularly in a region called 'Jawbone Canyon,' show the aftermath of a significant sandstorm that created rippled rock formations from intense winds. This discovery is crucial as it enhances our understanding of Mars' geological history and the planet's potential to have supported life. The findings were detailed in a study published in the journal Geology, highlighting the importance of the Curiosity rover's ongoing mission. The image captured in 2024 serves as a reminder of the long history of Mars exploration, which began with NASA's Viking 1 lander 50 years ago, marking a significant milestone in planetary science. Looking ahead, researchers will continue to analyze data from Curiosity and other rovers like Perseverance to further explore Mars' ancient climate and geological processes. No further timeline was disclosed at the time of publication.
SPACE.com 12 hours ago Mars Astronomy Solar SystemGE Aerospace and Shield AI have successfully completed critical engine tests for the X-BAT unmanned strike aircraft, advancing the project towards vertical flight testing scheduled for later this year. The tests involved the integration and actuation of the Axisymmetric Vectoring Exhaust Nozzle (AVEN) on the F110-GE-129E engine, confirming the propulsion system's functionality. This achievement is significant as it marks the first fully integrated test of the nozzle and engine systems since the 1990s, showcasing the potential of the AVEN to enable vertical takeoff and landing without runways. The X-BAT is designed for deployment in areas lacking traditional airbases, enhancing operational flexibility in combat scenarios. Looking ahead, the next phase involves further ground tests of the AVEN before its installation on the X-BAT prototype for flight trials. The collaboration between GE Aerospace and Shield AI aims to refine the propulsion system, making future iterations of the X-BAT faster, lighter, and more capable for long-range missions.
InterestingEngineering.com 12 hours ago Innovation Military TransportationSiddharth Vohra, a master's student at Carnegie Mellon University's Robotics Institute, has demonstrated that large language models (LLMs) can fabricate medical diagnoses when responding to queries without accompanying images. In his study, Vohra found that these models invented false diagnoses 18% of the time, particularly influenced by the demographic information of the user. This research highlights a significant concern in the AI industry regarding the reliability of AI models in healthcare. Vohra's findings indicate that users may overestimate the understanding of these models, which can lead to dangerous assumptions in medical contexts. For instance, the models frequently misdiagnosed conditions like melanoma and sarcoidosis based on demographic factors rather than actual medical data. Looking ahead, Vohra aims to expand his research to identify and address these failure patterns in AI models. He emphasizes the need for stringent testing and verification processes before deploying AI in healthcare settings to ensure safety and reliability in medical decision-making. No further timeline was disclosed at the time of publication.
ri.cmu.edu Jul 20, 2026 ResearchEmery Brown, Daniel Hastings, and Douglas Lauffenburger have been appointed as Institute Professors at MIT, the institution's highest faculty honor. This announcement, made by MIT's leadership, brings the total number of Institute Professors to 12, alongside 10 Emeriti. The appointments took effect on July 1. The significance of these appointments lies in the recognition of their contributions to their respective fields. Emery Brown, a physician and neuroscientist, has made notable advancements in understanding how anesthesia affects the brain, particularly through his research on the human circadian clock and the effects of anesthetic drugs on brain oscillations. His work has implications for both neuroscience and clinical practices. Looking ahead, the impact of Brown's research on anesthesia and brain function will be crucial for future studies in neuroscience and medical applications. No further timeline was disclosed at the time of publication.
MITNews Jul 20, 2026 Faculty Awards, honors and fellowships Aeronautical and astronautical engineering Biological engineering Brain and cognitive sciences Health sciences and technologyAnduril has introduced Thunder, a hybrid-electric tiltrotor combat drone developed in collaboration with Archer Aviation. Designed as a highly autonomous pilotless wingman, Thunder aims to operate alongside crewed helicopters like the AH-64 Apache, enhancing target acquisition and defense capabilities against air-to-air drone threats. This development is significant as it addresses critical operational gaps in modern warfare, allowing human pilots to engage from a safer distance while Thunder performs close-in defense. The drone's capabilities are expected to improve mission effectiveness in future conflicts, with a first flight planned for next year and potential full-scale production by the end of the decade. Looking ahead, the commercial version of Thunder is also in development, with Archer Aviation set to provide further details soon. As the drone is designed to operate at low altitudes, it is positioned to complement existing military aircraft, enhancing the U.S. Army's aerial capabilities in complex operational environments.
TheWarZone Jul 20, 2026 News & Features Air Drones Loyal Wingman UnmannedA lightweight underwater robotic arm has been developed for the automatic sampling of seafloor hydrothermal fluids, as reported in the Journal of Field Robotics. This innovation is significant as it enhances the efficiency and accuracy of fluid sampling in challenging underwater environments, which is crucial for scientific research and environmental monitoring. Future developments in this technology may lead to improved capabilities in underwater exploration and data collection, although no further timeline was disclosed at the time of publication.
JournalofFieldRobotics Jul 20, 2026 RESEARCH ARTICLENoetra, in collaboration with key partners including Sony, SoftBank, NEC, and Honda Motor, has launched extensive R&D for a multimodal foundation model aimed at enhancing AI-enabled robotics in Japan. This initiative is part of a broader effort to develop sovereign AI technologies within the country, supported by investments from 44 companies across various sectors, primarily manufacturing. The significance of this development lies in its potential to position Japan as a leader in physical AI. By creating a robust multimodal foundation model, Noetra aims to improve industrial competitiveness and address societal challenges through advanced AI capabilities, including natural language processing and multimodal data understanding. Looking ahead, Noetra plans to construct AI computing infrastructure with Nvidia's advanced GPUs, with operations expected to commence in June 2028. The phased development will culminate in a comprehensive omni-modal foundation model by fiscal 2028, ultimately striving for a “Real-world Native AI” by fiscal 2030, which will be capable of understanding physical properties in real-world applications.
RoboticsAndAutomationNews.com Jul 17, 2026 Artificial Intelligence News Robot simulation ai agents AI infrastructure artificial intelligenceDiana Grass, a PhD candidate in the Harvard-MIT Program in Health Sciences and Technology, is developing soft bioelectronic devices to study physiological signals that facilitate communication between the brain and body. Her journey from studying philology and education to neuroscience was sparked by her experiences as a medical interpreter, where she observed the interactions between physicians and patients with neurological disorders. Grass's work aims to bridge the gap in understanding how the body communicates continuously, despite the reliance on isolated biological snapshots in current medical practices. Her research emphasizes the interconnectedness of the nervous system with the immune system and other peripheral organs, highlighting the importance of these interactions in maintaining physiological balance. As she pursues her PhD in medical engineering and medical physics, Grass is part of the Bioelectronics Group at MIT, where she collaborates on innovative projects that could revolutionize our understanding of health and disease. No further timeline was disclosed at the time of publication.
MITNews Jul 17, 2026 Profile Students Graduate, postdoctoral Materials science and engineering Medicine ElectronicsAt the RSS 2026 conference in Sydney, Northwestern University showcased the Phantom Twist drone, which is significantly harder to see in flight compared to traditional quadrotors. This drone achieves its stealthy appearance by spinning rapidly at 15 to 25 Hz, leveraging the limitations of human vision to create a motion blur that renders it nearly invisible. The development of Phantom Twist is significant as it represents a leap in drone design, utilizing computational optimization to minimize visibility. The drone's unique design allows it to maintain stability and control with just a single motor, making it an innovative solution in the field of robotics. Its design was generated through an iterative process aimed at reducing the visual overlap of components during flight. Looking ahead, Phantom Twist's design could lead to advancements in drone technology, particularly in applications requiring stealth. While currently controlled via an optical tracking system, further optimizations may enhance its capabilities. No further timeline was disclosed at the time of publication.
Spectrum.ieee.orgAutomaton Jul 16, 2026 Robotics Drones Spinning-drones Invisible-drones Ai-design-optimization Uav
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