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Chang’e-8 lunar probe will verify technologies including lunar surface telecommunication center and lunar factory construction. The lander might be equipped with some robots, small detectors similar to household sweeping robots to form a network. Full HD:

11,069 görüntüleme • 3 yıl önce •via X (Twitter)

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NASA has just launched a new website for its Moon Base missions, which aims to build a permanent $20 billion U.S. base on the Moon. SpaceX's Starship rocket will play a big role in these missions. "The Moon Base is a home away from Earth for Artemis astronauts who will live and work at humanity’s first lunar outpost. NASA is leading global teams of innovators across international space agencies, industry, and academia to build the Moon Base and establish an enduring human presence near the lunar South Pole for the benefit of all. Phase One (Now–2029): Experiment and Learn NASA will begin with a rapid series of robotic missions to scout the lunar South Pole region, test technologies, and prepare for surface operations ahead of future astronaut missions.: • A major increase in lunar activity, with up to 25 missions, including 21 landings. • Crewed and autonomous rovers for mobility demonstrations and surface preparation, along with four drones known as MoonFall and communications relay and observation satellites. • Early demonstrations of power, navigation, communications, and nuclear radioisotope heater unit technologies designed to endure the long lunar night. • Scientific payload opportunities integrated across landers and rovers. • The first tangible footprint of Moon Base effort, with four tons of payload delivered to test what works on the lunar surface. Phase Two (2029–2032): Early Habitation By 2029, NASA will transition to assembling semi-permanent infrastructure and initiating early habitation and logistics operations: • Deployment of expanded solar power systems and initial nuclear surface power capabilities, potentially including fission reactors and radioisotope power systems. • Upgraded rovers, potential advanced MoonFall drones, and early habitation elements. • Enhanced surface-to-orbit communications networks to provide reliable connectivity across the lunar South Pole region. • Delivery of up to 60 tons of cargo through as many as 24 landings using low-, medium-, and heavy-class cargo landers. Phase Three (2032 and Beyond): Sustained Human Presence This phase will scale operations to achieve a true enduring presence, with routine crew rotations and continuous surface activity. This is when living and working on the Moon becomes a reality: • Semi-permanent habitation modules with spacious interior for crew living and operations. • Operational fission surface power systems capable of delivering steady, reliable energy through the long lunar nights, leveraging in situ resource manufacturing. • Advanced logistics networks supported by crewed and autonomous rovers to keep the base supplied and functioning year-round. • Delivery of up to 38 tons of cargo annually to sustain habitats, power systems, logistics operations, and major science outposts, enabled by low-cost reusable heavy-lift capabilities." Moon base website:

Sawyer Merritt

955,263 görüntüleme • 2 ay önce

🚨 NEWS FROM NASA In a bold and decisive move, NASA Administrator Jared Isaacman just announced a $20 billion plan to build America’s permanent base on the Moon — and they’re doing it in just 7 years. Today, NASA officially confirmed it is cancelling plans for the Lunar Gateway — the small space station that was supposed to orbit the Moon as a waypoint for astronauts. Instead, those components and resources will be repurposed directly for the surface base, accelerating humanity’s return to sustained lunar presence. The goal is clear — move beyond short visits and flags-and-footprints missions. NASA wants a real, long-term foothold on the Moon: habitats, power systems, rovers, scientific labs, and infrastructure that can support crews for months at a time. This base will serve as the foundation for deeper space exploration, resource utilization (like mining lunar ice for fuel and water), and eventually — Mars. The $20 billion investment over the next seven years will reshape major parts of the Artemis program. It comes with real urgency too — China is pushing hard toward its own crewed Moon landing by 2030, and the U.S. is determined to lead, not follow. This isn’t just about science. · A permanent lunar base means:Testing technologies for Mars missions in a real off-world environment · Developing in-situ resource utilization (turning Moon dirt into rocket fuel and oxygen) · Opening the door to a true cislunar economy · Inspiring the next generation of engineers, scientists, and explorers Private industry will play a massive role, as always — with contractors already building key hardware now being redirected. This is the kind of ambitious, focused leadership the space program has needed. From the first boots on the Moon in 1969 to building a thriving outpost there by the early 2030s — what an incredible leap forward. Significanly, the Moon isn’t just a destination anymore: it’s becoming home base for humanity’s expansion into the Solar System.

Massimo

241,760 görüntüleme • 4 ay önce

🚨 This isn't science fiction - it's a real scientific paper that's now making headlines around the world. Researchers from Ukraine's Main Astronomical Observatory have published a controversial, non-peer-reviewed study based on 2025 high-speed lunar observations, claiming they detected more than 20 unidentified objects moving near and across the Moon. The paper has sparked global debate, although its conclusions have not been independently verified. According to the researchers, some of these objects: 🌑 Were almost perfectly camouflaged against the lunar surface. 📏 Could be up to approximately 40 km across (depending on assumed reflectivity). ⚡ Were estimated to be travelling at around 20 km/s (72,000 km/h). 🛸 Showed unusual movement and brightness characteristics unlike typical satellites or known lunar phenomena. Now consider everything else happening... 🌕 Artemis is taking humanity back to the Moon. 🏗️ Multiple nations are planning permanent lunar bases. 🛰️ The U.S. Space Force is expanding its focus into cislunar space. 🚀 Today, a spent SpaceX Falcon 9 upper stage impacted the Moon, providing scientists with a rare opportunity to study an artificial lunar impact. At the same time, public interest in UAPs is reaching levels we've never seen before. 📂 Congressional hearings have put the subject firmly into the mainstream. ⚖️ Former military and intelligence officials have testified publicly. 📜 More government UAP records have been released. 🔓 There is increasing political pressure for greater transparency and stronger whistleblower protections surrounding UAP programs. Coincidence? Maybe. But it's worth asking... If there were unknown intelligences observing the Moon... Why is humanity suddenly accelerating its return? Why the renewed urgency to establish a permanent presence there? And if something really is there... would a large artificial impact on the Moon simply be ignored, or could it be interpreted as the arrival of an increasingly capable technological civilisation? Or possibly a threat?! Questions aren't evidence. But asking questions is how science begins. What do you think? #UAP #UFO #Moon #Artemis #NASA #SpaceX #SpaceForce #Disclosure #Astronomy #LunarBase #ufox #aliens

STORM ⚡️

138,120 görüntüleme • 8 gün önce

Two days ago Elon said SpaceX is building a "self-growing city on the Moon" in under 10 years. Most people don't realize how close the engineering already is. Using the xAI API (Grok) I compiled every peer-reviewed study, mission result, and hardware spec into one document. Here's what the data actually says. The math: Elon Musk's core argument: "We can launch to the Moon every 10 days a 2-day trip. Mars is every 26 months a 6-month trip. We can iterate much faster." Starship lands ~100 metric tons per flight. At 10-20 lunar flights/year, that's 1,000-2,000 tonnes of infrastructure annually. That's enough to build a city. Construction: We already know how to build with lunar dirt. 9 validated sintering methods turn raw regolith into structural material ranging from 26 to 207 MPa compressive strength. For reference: under 1/6 g, lunar structures need a fraction of what terrestrial buildings require. China flew 34 regolith bricks on Tiangong for a full year. Returned November 2025. No cracks or structural damage. 3x standard brick strength. Power: The 14-day lunar night is the hardest engineering problem on the Moon. NASA and DOE signed an MOU in January 2026 for a nuclear reactor on the surface by 2030. The Phase 1 demo spec was 40 kW. The Phase 2 solicitation issued December 2025 calls for at least 100 kW. Both targets: under 6 tonnes, 10-year life, zero crew intervention, autonomous startup. A rover drives it to a safe distance, unreels a cable, and walks away. One of those powers a small city through every lunar night. ISRU: The Moon is 40-45% oxygen by weight. It's locked in the rock, but we know how to get it out. Molten regolith electrolysis: ~6,800 kg of hardware produces 25 t/yr of metal + 24 t/yr of oxygen. Mass payback ratio: 0.14 kg of equipment per kg of annual product. That's an industrial plant. Dust: Lunar dust is electrostatically charged, razor-sharp, and gets into everything. Apollo crews called it the worst operational hazard on the Moon. In March 2025, NASA's Electrodynamic Dust Shield was tested on the actual lunar surface during the Blue Ghost mission. Before-and-after images show regolith visibly cleared from glass and radiators. First in-situ dust removal ever demonstrated on the Moon. Most people missed this entirely. Lava tubes: The best real estate on the Moon is underground. GRAIL gravity data suggests lava tubes up to several kilometers wide may exist beneath the lunar maria. The first cave was directly confirmed by radar analysis published in 2024: the Mare Tranquillitatis pit, at least 45 meters wide with a conduit extending tens of meters further. Interior temperatures in shadowed lunar caves range from -20C to as warm as 17C, stable year-round. Zero radiation, zero micrometeorites, zero thermal cycling. A pressurized lava tube habitat doesn't need regolith shielding, doesn't need thermal control, and has virtually unlimited expansion volume. Timeline: Elon Musk said "less than 10 years." Here's what that looks like with the hardware that exists today: 2026-2028: Robotic cargo flights. 5-10 Starships pre-position 500-1,000 tonnes. Nuclear reactor. ISRU pilot plant. All before crew arrives. 2028-2029: First crew lands to a turnkey site. Monthly cargo flights continue. 20-40 people. 2030-2032: 100-200 residents. Industrial oxygen and metal production. 3D-printed campus. Propellant production begins. 2033-2035: 200-500+ people. Propellant self-sufficiency. Lava tube outpost. A functioning city. Geopolitics: China's ILRS is in active construction phase. Joint Russia-China nuclear power station planned for 2033-2035. Chang'e-7 launches this year with a PSR hopper. A Trump executive order in December called for a permanent lunar outpost by 2030. NASA Administrator Isaacman is accelerating commercial partnerships. The south pole is a strategic race, and SpaceX just entered it as a city-builder. Close: A year ago Elon Musk called the Moon "a distraction." Now it's the overriding priority. What changed isn't the destination. It's the realization that Starship's 100-tonne payload class, combined with ISRU and nuclear power, makes a self-sustaining lunar city achievable this decade, not next. The full technical reference (47 sources, 14 sections) is linked in the comment below. It's the most comprehensive single document that you will find on what it actually takes to build a permanent settlement on the Moon.

tetsuo

223,444 görüntüleme • 6 ay önce

BOOM! Humanoid Robots Just Performed Surgery for the First Time! REAL VIDEO! In a groundbreaking preclinical breakthrough, researchers at UC San Diego have achieved what many thought was years away: teleoperated humanoid robots successfully completing live surgeries. Published in Nature, the study marks the world’s first use of humanoid robots for in-vivo laparoscopic procedures on large animals (pigs). Two separate surgeries were completed: Key Details •. Procedure: Laparoscopic gallbladder removal (cholecystectomy) •. Team 1: Human surgeon + one humanoid robot (the robot performed core tasks while the human assisted) •. Team 2: Two humanoid robots working together with no human at the operating table •. Robots: Custom “Surgie” humanoids (~5 ft tall, ~60 lbs) using standard surgical tools •. Control: Fully teleoperated by surgeons (remote human control, not autonomous) •. Significance: First demonstration of humanoid robots handling real surgical workflows in a live setting, proving compatibility with existing OR tools and spaces This proof shows humanoid robots could one day help address surgeon shortages, enable remote procedures in rural areas, battlefields, or even space all at a fraction of the cost and space of traditional surgical robots like da Vinci. Read the full publication here: Project page with video: The future of surgery just got a whole lot more interesting. And medical cost for the first time in decades will be scheduled to go down, much further down.

Brian Roemmele

107,600 görüntüleme • 1 ay önce

Breathtaking Video from Artemis II: Humanity’s First Close-Up Dance with the Moon in Over 50 YearsWatch as the Orion spacecraft glides silently around the Moon, delivering jaw-dropping, high-definition footage that feels almost unreal.Craters sharp enough to trace with your finger. Dramatic, ink-black shadows stretching across ancient plains. The stark, airless horizon giving way to the infinite velvet blackness of deep space. Every frame pulses with raw beauty and profound isolation.This isn’t just stunning cinema — it’s history unfolding live.On April 6, 2026, during the mission’s thrilling lunar flyby, the Artemis II crew (Reid Wiseman, Victor Glover, Christina Koch, and Jeremy Hansen) captured these mesmerizing views while traveling farther from Earth than any humans since Apollo. They skimmed just thousands of kilometers above the lunar surface, passed behind the far side (losing all contact with Earth for about 40 minutes), witnessed a total solar eclipse from space, and saw breathtaking Earthrise moments that echoed — yet surpassed — the iconic Apollo images.These visuals are scientific gold: revealing fine geological details, testing Orion’s cameras and navigation in deep space, and giving us an intimate look at our celestial neighbor like never before.Every second of this footage pulls us one giant step closer to a permanent return to the Moon — and eventually to Mars.This is what the new era of exploration feels like: awe-inspiring, humbling, and full of promise. Which part hits you hardest — the rugged beauty of the lunar surface, the endless void of space, or the sheer fact that humans are back there again after half a century? Drop your favorite moment or reaction below!

Black Hole

21,945 görüntüleme • 4 ay önce

Recently Ross Gerber mentioned that it will be impossible for Tesla to scale quickly with their Robotaxi plans because they have yet to build any infrastructure as similar to Waymo. I am willing to bet a generous amount of money that Tesla is well aware of Waymo’s infrastructure and their struggles to efficiently manage their fleet. Tesla does not have $15 billion of excess Capital to waste each year on a copycat Fleet management process. Nor would they spend it if they had an additional $100 billion in excess capital. After validating each geographical map area, Tesla will sell Robotaxis to individual buyers, it’s possible that there will be an up fitting process to enter your own Tesla into the Robotaxi fleet. Tesla will sell cybercabs to individuals and fleets that can come online anytime the owner decides. There is no alternative viable method to saturate the market. Tesla is not going to purchase 100 separate properties in Los Angeles and pay minimum wage workers to clean puke out of vehicles. It’s not going to happen. Tesla is going to take the high margin SAS profits and determine the appropriate costs per mile breakdown to make a viable business model for vehicle owners. Coming soon- The Shepherd Model by Tesla. As mentioned many times before, The process to develop a nationwide network of fleet owners and shepherds is the foundation to also handle the deployment of Optimus robots for temporary gigs, part-time work, and generally cool shit. Optimus robots will be serving food at a wedding near you in the year 2030. How do you think they will get there? Who do you think is going to own them? Who do you think is going to fix them? Who do you think is going to drop them off for service and replacement parts?

No Safe Words

11,308 görüntüleme • 6 ay önce