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AI-Powered weed control! 🌱 The LaserWeeder machine from Carbon Robotics has captured the imagination of American farmers. This technology uses AI system to identify weeds in crops and zap them with precision thermal bursts from lasers. Bit of facts about the cool robot: → The machine can remove weeds...

54,776 Aufrufe • vor 7 Monaten •via X (Twitter)

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Unique footage has emerged showing remote control of interceptor drones. The 190th Training Center of the SBS reportedly used a drone-interceptor to shoot down a Shahed UAV remotely, with the pilot located at a significant distance from the launch site. The system used was LITAVR, developed by FDrones. According to the company, an operator can control the interceptor from hundreds of kilometers away from the launch point. The F7 LITAVR is already a well-known and highly effective system. As a reminder, here are the technical details (this is all open-source information): Development of the system began in autumn 2024. It was successfully tested and officially adopted in summer 2025. Serial production and deliveries to the military started in autumn 2025. Maximum speed: 350 km/h Flight time: up to 15 minutes Equipped with two cameras: daytime and thermal imaging The officially stated tactical range is 36 km, though in practice it can reach up to 60 km and operate at altitudes of up to 9.5 km. The warhead (separately codified) weighs 500 g. Detonation can occur via kinetic impact, self-destruction upon contact with the target, or manual activation by the operator. The system uses inertial guidance without GPS and features automatic terminal guidance (“last mile” / target lock system). At present, it reportedly destroys hundreds of targets per week, including Shaheds, Gerberas, Molniyas, Orlans, Lancets, and others. What is fundamentally new? Until now, mobile air defense fire groups and frontline crews using interceptor drones required a qualified pilot on-site. It has now been successfully demonstrated that a different tactic is possible: pilots can operate from protected, remote locations. The only requirement is internet access at both the control center and the launch site. Ukraine’s defense sector continues to develop innovative solutions. 📹 Oleksii Kopytko/Facebook

Anton Gerashchenko

22,311 Aufrufe • vor 4 Monaten

It's 2030 and you are reviewing humanoid robots. A Tesla. A Google. An Apple. An OpenAI. A Meta. A Figure. And a bunch of Chinese-made ones. Which one is best, and why? I think the Tesla understands the world much better. Why? There were eight Teslas around me on the freeway today. Start there. No other robot company has that data. But my robot is parked at the local high school twice a day. Its cameras see humans in all of our weirdness. How we move. Where we go. Where we walk. Who we talk with. What you are wearing. Whether your hair was combed this morning. That data will lead to robotics breakthroughs. Apple might keep up with its Vision Pro data, but it is too freaked out by the privacy implications of using said data. (On the front are six cameras and a couple of TOF -- Time Of Flight -- sensors that can see everything in your home in great detail). Google has a lot of data, for sure. All my: 1. Email. 2. Calendars. 3. Photos. 4. TV watching behavior. 5. Contacts. 6. Documents and spreadsheets. 7. Files. 8. Location data. So I expect Google's robot will be attractive to many. But how do you see the others shake out over the next five years? Make some guesses. But remember what an AI pioneer told me years ago about AI: it's all about the data. The Chinese ones have huge advantages: the Chinese have more data on their citizens, and many more citizens to boot AND they can make robots cheaper than we can. But now that you know OpenAI is building its own robot you have caught wind of what I've heard from many in San Francisco and Silicon Valley: that humanoid robots are the real prize of AI and will be highly profitable for those that can make them and find customers willing to buy them. Here, too, I learned long ago never to bet against Elon Musk. Will you?

Robert Scoble

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From the sky, they look like huge, circular patterns made by aliens; but in fact, they are an age-old technique farmers have brought back to fight the climate crisis on the Andean plateaus of Puno... On the border of Peru 🇵🇪 and Bolivia 🇧🇴, the Waru Waru; an indigenous Quechua word that means ridge are once again protecting potato and quinoa crops as they did in the region 2,000 years ago. It's an ancient agricultural system or technique that involves building raised beds and irrigation channels to grow crops. The technique originated in the highlands of Peru and Bolivia around 300 BC. It employs raised beds along with proper irrigation channels to prevent damage to crops due to soil erosion during floods. Concentrating mainly on facilitating water movement and storage, this technology increases the organic content of the soil thereby making it more suitable and fertile. "It is an agricultural system that lets us face climate change, which has changed the seasons of the year. It is very beneficial in times of drought and frost," farmer Cesar Cutipa, 42, told AFP. In Puno, Peru, these strange and mysterious forms of enormous proportions have been found, and can only be seen from planes or satellite images. The origin and its antiquity are unknown. Some images remind us of the “Eye of God”, the circular image found in Caral – Supe (3000 BC) that shows the Illa Teqsi, the God of the Incas. The inner-circle represents “The eye of God” and the concentric circumference symbolizes the “phenomenal reality”, in other words, the Universe, Kawsay Pacha or “Living Cosmos”. These images are located in terraces currently used as ridges by the Puno farmers. Puno lies on Lake Titicaca about 3812m above sea level. Farmers have made six Waru Waru nearby in flood-prone fields. Furrows form a rectangular platform, where planting is done. Surrounded by water, the planting beds are up to 100m long, between 4-10m wide and 1m high. The water around the plants creates a microclimate, absorbing heat from the sun during the day and radiating it back at night to ward off frost in sub-zero temperatures. It is said that so-called Camellones or Waru Waru was a powerful technology implanted since ancient times in highlands of the Andes. Its primary purpose was to create a better cultivation environment in cold temperatures of the highland nights. The water surrounding the ridges where the yields were, allows the crops not to freeze every night when temperatures might drop down an average of 15 degrees. During the day, temperature rises due to the high plateau sun, and that water heated from sunrise to sunset emits enough heat at night, so nothing freezes in meantime. "The Waru Waru cannot flood during the rainy season because they have an intelligent drainage system that reaches the river. They have many advantages," agronomist Gaston Quispe told AFP. In 2023, when Puno suffered one of the largest periods of drought in almost six decades, Waru Waru helped farmers cope with lack of water and avoid food shortages. The area is home to mostly indigenous farming communities, mostly Quechua in Peru and up the Andes and both Quechua and Aymara in Bolivia. "We are able to live here peacefully because we have our potatoes, our quinoa and barley. We can be in peace without going to the city," said 22-year-old farmer Valeria Nahua. 🎥© conocealperu (IG) #archaeohistories

Archaeo - Histories

24,848 Aufrufe • vor 1 Jahr