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Verse Project Open Playtest is NOW LIVE on PC (Steam) An MMO space simulator featuring a 1:1 scale Solar System and seamless space travel. Features: • Play as explorer, engineer, trader or pilot • Explore planets, moons, asteroids & stations • Realistic physics & seamless space travel • Mine,...

62,720 次观看 • 3 天前 •via X (Twitter)

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Episode #76: Robinhood Co-founder Baiju Bhatt on the Journey to $40B, Building Space Solar Power with Lasers You’re probably familiar with his work as the co-founder of Robinhood. But Baiju Bhatt is also obsessed with space, and recently started Aetherflux, a space solar power company. We get into the physics of using lasers to beam solar power to the Earth, Aetherflux’s early roadmap, and how he went from zero to one building physical products. We also talk through the early days of Robinhood, getting turned down by hundreds of early investors, the accidental launch, how to know if you really have product market fit, how Aaron Levie at Box helped get Robinhood [dot] com, the value of creativity and design, Baiju’s philosophies on combining qualitative and quantitative user research, and his favorite animal and classic car. He also tried to cut my hair. Full episode here on X, or grab a link in the replies. Timestamps: 2:31 Aetherflux: a space solar energy company 2:50 Origins of space solar power in the 40's & 70's 10:31 Safely beaming energy from space to Earth with lasers 13:46 Building floating space solar farms 21:27 Aetherflux's early roadmap 27:08 Growing up with dad as a Physics professor 32:18 Going zero to one building physical products 35:15 Baiju's favorite car, attempting a haircut, contemplating mustaches 38:27 Trying to prove Einstein wrong 41:42 Meeting Robinhood Co-founder Vlad at Stanford 44:10 Starting an algorithmic trading company 46:41 The beginnings of Robinhood 52:04 Getting turned down by hundreds of early investors 56:49 How they convinced Tim Draper to invest 59:39 Getting Robinhood[dot]com because of Aaron Levie 1:01:28 Accidentally launching on a Friday afternoon 1:03:09 How to know if you have Product Market Fit 1:06:35 Combining qualitative and quantitative user research 1:14:23 Loving cats despite being allergic

The Peel

27,354 次观看 • 1 年前

Sharing a small personal project I’ve been slowly building over the past couple of years, mostly on weekends and in spare moments: Cosmic XR, a mixed reality experience that brings space and the universe into your own room. This project began from my deep love for space, and the desire to let people not just observe, but reach out and interact with planets, moons, and other celestial wonders — to touch, rotate, and scale them with their hands, as if they were right in front of them. For those familiar with HoloLens, many parts of this app are inspired by the open-source Galaxy Explorer project, which played a key role in building many parts of the experience. I’m grateful to build on that foundation. As a single-person project, there’s still much to improve — technically, visually, and content-wise. But I wanted to share it now, in hopes that it brings a sense of curiosity and wonder to anyone who tries it. If you're into space and immersive experiences, I’d love for you to give it a try — you can explore it without purchasing through the “Try Before You Buy” feature on Meta Quest Store: I hope this experience reminds us of how small we are — and how precious each moment is, a fleeting blink in the vast timeline of the universe. Disclaimer: Cosmic XR was designed and developed entirely in my personal time using personal resources as a passion project. It is not affiliated with or endorsed by my employer. #CosmicXR #MixedReality #AugmentedReality #VR #MetaQuest #Cosmos #Space #NASA #galaxy #milkyway #Quest3 #Quest3S #Quest2 #QuestPro #HandTracking #SpatialComputing #SpatialInteraction #SpaceApp #STEM #XRforEducation #PassionProject #Astrophysics #JWST #STEMLearning #EdTech #Astronomy #SpaceScience #JamesWebb #Hubble #SpaceExploration

Yoon Park (박동윤)

13,076 次观看 • 1 年前

Blast off into the far reaches of space and stake your claim in the endless frontier. Influence invites you to leave mundane life behind and embark on an epic journey among the stars. This groundbreaking blockchain-based MMO game on Starknet propels the space strategy genre lightyears ahead. Get ready to be immersed in a breathtaking 3D universe filled with adventure and opportunity. As the captain of your destiny, travel to the uncharted Adalia system and explore over 250,000 unique asteroids. Each one is procedurally generated to offer untold treasures just waiting to be uncovered. Send out core sampling missions and discover the precious ores and minerals hidden beneath the surface. Construct an expanding network of mines, factories, shipyards, and research labs. Design and build dozens of ship classes to suit every need, from swift fighters to hulking cargo haulers. Advance through multiple tech trees to equip your vessels with hyperdrives, lasers, missiles, and more. Trade resources and finished goods across the farthest reaches, but be ready to protect your empire. When conflict arises, engage in epic tactical ship battles to defend your assets and expand your influence. At every step this vast living universe adapts to your decisions and ambitions. Everything you do shapes the destiny of the Adalia system. Write your name across the stars and leave a lasting legacy. Influence blockchain backbone Starknet, means total ownership of every asset. Trading is direct, with no middlemen or fees. Form alliances and corporations to marshal even greater strength. A thousand paths lie before you. How will you traverse the void? Where will you forge your stellar empire? Find out in the most ambitious space strategy game of a generation - Influence. Your future among the stars awaits. Coming soon to Starknet!

Starknet

30,664 次观看 • 3 年前

SpaceX has officially acquired xAI and this is a HUGE deal, probably bigger than most people realize. SpaceX + xAI together are about to build a single, vertically integrated engine that connects AI, rockets, space based internet, and real time information all into one unified system. At the core of this announcement is the fact that AI can’t scale forever on Earth. Think about it. Data centers are already running into hard limits with power, cooling, land, and environmental cost. On top of this, global AI electricity demand is exploding, and doing all of this on the ground just doesn’t scale long term. Therefore Space changes this. In orbit, you can get things like near-constant solar power, you don’t have cooling problems, there’s minimal land/environmental impact, and you can build systems that can run continuously with minimal maintenance. This is why space-based AI is actually very practical and there’s only one company that can do it, which is SpaceX! The scale that SpaceX is aiming for is pretty wild. Elon is talking about 1/ 1 million satellites acting as orbital data centers, and 2/ Launching ~1 million tons of satellites per year Which means 3/ At 100 kW per ton, that’s 100 gigawatts of AI compute every year 4/ And that can scale to 1 terawatt per year. FYI, adding 100 GW of new compute capacity annually in space would be like building out roughly 20-25% of the USA’s total average electricity demand every single year. And scaling to 1 TW/year would exceed the nation’s entire power usage, ALL without burdening Earth’s grids! Bro… this is next level… I repeat, as of today, SpaceX is the ONLY company positioned to do this, especially with Starship - the largest flying vehicle ever. In the future, Elon’s saying the team is going to have Starship launch 200 tons at a time, on an HOURLY basis… WTF?! That’s is absolutely mind boggling. In my opinion, whichever company builds the lowest cost AI compute is going to be the first company that defines the next era of AI, which will all be in space… and my $ is that SpaceX is going to be the first one to do it. Then, when you zoom out even further, this will unlock things most people aren’t even thinking about yet today bc it’s too sci-fi. Like, • Powering lunar bases • In-space propellant transfer • Manufacturing in orbit and on the Moon • Deep-space AI infrastructure using massive solar collectors • Self-growing civilizations on the Moon, Mars, and beyond By tapping into space’s unlimited solar energy, this is how we get to a Kardashev-level civilization! So for SpaceX, the faster Starship progresses, there will be massive new revenue streams and will lead in building out space-based AI infrastructures. For xAI, AI scales without ruining Earth, deeply integrated with everything SpaceX is building, further understanding the universe. For us humans, AI will grow without destroying the planet, and there’s a real path to becoming multi-planetary. I believe SpaceX acquiring xAI is officially the blueprint for where AI, energy, and humanity are headed. Congratulations to everyone, this is such an exciting time to be alive!

Teslaconomics

148,575 次观看 • 6 个月前

I’m seeing a lot of questions on the launch of China’s Chang’e 6 mission yesterday to get samples - for the first time - from the far side of the moon. We don’t know (afaik) why specifically they’re doing that, but we have a pretty good idea what grand vision China is working towards with their space program. How? From this 2022 video by Chas Freeman (former Assistant Secretary of Defense and Nixon's interpreter during his era-defining 1972 China visit), who imho is undoubtedly one of the most knowledgeable former US officials on China. He says that according to his own discussions with people running China’s space program, they’re following the vision described in the book "The high frontier" by Gerard K. O'Neill, which Freeman says has "become the bible of the Chinese space program". I read the book. So what vision does it describe? The book was written in 1976 by O'Neill who was a professor of physics at Princeton University. He also founded the Space Studies Institute, an organization devoted to funding research into space manufacturing and colonization. In other words, he knew his stuff. The book makes the very fair point that we have massive resource constraints on earth, especially given the growing population. He estimated in 1976 that we should be "about six and a half billion people in the year 2000", and we were 6.114 billion back then so he was pretty prescient. He estimates that these constraints will progressively give rise to more and more social tensions as the growing earth population competes for our limited resources as well as faces global problems like climate change. In his view, dealing with this will either require "an authoritarian regime capable of mounting the immense task of social reorganization needed to escape catastrophe" or, alternatively, “mankind would [need to adopt] a static society [that would be] forced in self-defense to suppress new ideas". The 3rd alternative is of course the colonization of space. The most interesting aspect of the book is that he claims everything he writes is feasible with knowledge and technology that already existed in the late 70s. In short he calls for the establishment of large human habitats in the Earth-Moon system, located at stable Lagrange points ("parking spots" in space where gravity from different spatial bodies cancel each other out). In particular he developed the concept of what's known today as the "O'Neill cylinder" which he says "could support quite easily a population of ten million people, growing its food in agricultural cylinders near but outside the main habitat". Energy-wise, it'd simply make use of solar energy via a system of mirrors. As he describes it: "the concentration of the unvarying, intense sunlight of space by very lightweight, inexpensive mirrors can provide all the energy that industry will ever need [...] at a fraction of a cent per kilowatt-hour". He envisages building these habitats with material from the moon, shot into space via "mass drivers", a form of electromagnetic catapult. Also "the habitats would have artificial gravity similar as that of earth by rotating about twenty-eight times an hour”, but he also envisages low-gravity areas, especially for recreational activities such as swimming pools or dancing representations. To trade with earth, he develops the idea of beaming solar power back to earth via "microwave from solar power stations in orbit". As he describes it "the microwave beam would arrive at Earth with a beam width of about seven kilometers. Its intensity would be modest, less than half that of sunlight. In contrast to sunlight, though, it would be there all the time, even at night or in clouds or rain, and it would be in a form ready for conversion to DC current with a loss of only 10 percent. The areas receiving these beams’ output on Earth would be fenced, and outside the fence the intensity of microwave radiation would be no higher than outside a microwave oven with the door closed. He estimates that if "Satellite Solar Power Stations (SSPS) were to become the sole source of electric energy in the United States in the year 2000, the land area necessary for the SSPS antennas would still be only 0.2 percent of that of the continental United States". In short, the establishment of space colonies could lead to the fulfillment of a good share of Earth's energy needs. Last but not least he describes life in space habitats as better than that of earth, largely thanks to the level of control we'd have over the environment (total climate control which would enable an abundance of food and no natural disaster) as well as unlimited cheap energy. To conclude, Chas Freeman typically really knows his stuff when it comes to China and he’s very intellectually honest (a rare trait among US officials) so I have no doubt he tells the truth when he says the Chinese told him that was the vision. And China famously thinks very big and very long term so it would be quite like them to go for something like this. There are also quite a few tangible signs that China is working towards that vision. See for instance this November 2022 news where “China’s space station will join a project to collect solar power from space and send it to Earth in a high-energy microwave beam”: That’s exactly O’Neill’s vision! Or check this October 2022 news that says China is developing new "electromagnetic sledges" that can propel a carriage weighing a few tonnes to a record speed, with a key application for this being “aerospace”: Remember: O’Neill’s vision is to build his habitats with material from the moon, shot into space via "mass drivers", a form of electromagnetic catapult. So there you go… Or also the fact that the Chinese will build, together with the Russians, a moon base - planned for 2028 - powered by a “space nuclear reactor” that’s already been developed (on Earth) and has passed review by China’s Ministry of Science: The space nuclear reactor can generate 1MW of electricity, enough to power 10 International Space Stations. Enough power, maybe, to undertake mining activity and power an electromagnetic catapult… After visions change, the world changes, so it’s also possible that China’s view on what they want to do has evolved. In any case, Chas Freeman is right that China’s motivation for all its initiatives in space can’t just be to “boldly explore where no-one has been before”, they have to be working towards something. And Freeman is also absolutely right to lament that the U.S. decided to ban any cooperation in space with the Chinese. Those endeavors are something that could have been jointly developed as a multilateral effort to unite us all as a species… Instead China is now forced to go at it alone with Russia and we face a future where our petty divisions on Earth will be carried with us to space…

Arnaud Bertrand

265,181 次观看 • 2 年前

I'd like to formally introduce everyone to the game my team has been working on for 2+ years: Influence Influence is a highly strategic space colonization game, where players vie for dominance and control in the newly formed colony within the Adalian asteroid belt. We are headed towards our Pre-Release and would love to show everyone the hard work the team has been putting in, to bring to the table a game we believe every strategy & blockchain game enthusiast will have a hard time putting down. What makes us different? - Building on Starknet and backed by StarkWare 🥷 - Based on hard science & futuristic realism - Hardcore strategy game - Fully onchain The Gameplay: Players assume the role of their crew(s) where they will play alongside the other colonists in Adalia. Competing through multiple avenues: mining, building, trading, (and later researching, and warfare). In action, players will take mined raw materials and push them through player-owned marketplaces and deep realistic production chains, to purchase and craft hundreds of intermediate products enabling the construction of the pinnacle of industry: buildings and ships. Overtime players will grow their settlements across asteroids and utilize ships to deliver and pick up goods within the Adalian belt. With an emphasis on strategic decision making the game prioritizes impactful actions rather than grinds. Much of the “action” within Influence is in the thought process that goes into taking an action and the coordination between players and alliances. Influence isn’t played in minutes or hours, rather over the course of months and years. What is the game similar to? Influence lives at the intersection between Sandbox MMO and 4X Strategy. In addition the game is designed around futuristic realism, allowing players to make educated conclusions about how to craft goods, travel the belt, and what might be useful at different phases within the game. The game is non-linear, rather all options for players are there and it is up to them to choose what they want to do in this open-world, allowing for emergent gameplay in a peer-to-peer, player-driven experience. How is the game played? Influence is rendered in 3D, and players interact in third-person through control of their ships and the installations they build. The game is browser based, and is accessible to anyone with a modern computer, phone, and internet connection. Want to learn more? - Follow Influence - Join our Discord (link in the Influence bio) - Share this post to spread awareness

Jean-Paul Faraj

26,643 次观看 • 3 年前

So did Neil deGrasse Tyson’s mentor, Carl Sagan prefer non-government exploration and colonization of space? A robust and emphatic, yes. But Neil has somehow concluded a private company funding to space is of no financial value and should be done through government programs that has kept humans grounded since Apollo. Neil has done significant damage to himself and popularization of science in general and I am more than disappointed. So I am speaking up. Here are the receipts: Sailing The Seas Of The Cosmic Oceans The Planetary Society’s Solar Sail Launch was a private funded space launch. I know Nevis not only did I donate to make this happen a number of us met with the team to think out the process. Carl Sagan, the renowned astrophysicist, cosmologist, and science communicator, made significant waves in the scientific and space exploration communities when he announced his intention to pursue the development of solar sail technology using private funds in collaboration with Russian spaceflight capabilities. Solar sails, which harness the momentum of photons from sunlight to propel spacecraft, had long been a topic of interest for Sagan, who recognized their potential for enabling long-term, low-cost exploration of the solar system and beyond. The concept of solar sailing dates back to the early 20th century, but it gained public attention during the 1970s and 1980s, thanks in part to Sagan’s advocacy. He often discussed the promise of solar sails in making space exploration more sustainable and accessible. His vision for a solar sail program crystallized in the 1990s, during a period of renewed interest in private-public partnerships and international collaboration in space exploration. Sagan’s announcement marked a major turning point in the movement to make solar sail technology a reality. In the early 1990s, Sagan began to explore the idea of privately funding a solar sail spacecraft. At the time, NASA and other national space agencies were constrained by tight budgets, making it difficult to prioritize experimental technologies like solar sails. Sagan and supporters, proposed that private financing could circumvent these limitations and accelerate progress. Sagan reached out to Russian space agencies, which had decades of expertise in rocketry and a surplus of launch vehicles following the dissolution of the Soviet Union. By 1994, Sagan had partnered with the Planetary Society, an organization he co-founded in 1980, to spearhead the development of a solar sail mission. The project: a lightweight spacecraft equipped with reflective sails that could demonstrate the feasibility of solar propulsion. With funding secured from private donors and philanthropic organizations, the program quickly gained momentum. In parallel, Sagan and his team negotiated with Russian aerospace contractors to secure a launch vehicle. The Russian space program, eager to find new applications for its technology, agreed to provide a converted missile as the launch platform for the solar sail mission. By 1995, initial designs for the solar sail spacecraft had been completed. The spacecraft, later named "Cosmos 1," was designed to use ultra-thin reflective materials to capture the momentum of sunlight. Testing of the sail and deployment mechanisms took place in the mid-1990s. Tragically, Carl Sagan passed away in December 1996, before he could see the project come to fruition. By 1999, construction of the Cosmos 1 spacecraft was completed, and the launch was scheduled to take place in 2001 using a Russian Volna rocket. While the initial launch attempt failed due to a malfunction in the rocket’s booster, the project inspired further advancements in solar sail technology with successful missions by organizations like NASA and JAXA in subsequent years. Carl’s vision lives on with the private funding efforts of Elon Musk. We endeavor to be bold to venture past humanity’s largest mountain on promethean fire. With Godspeed…

Brian Roemmele

669,665 次观看 • 1 年前

Elon Musk just explained why the SpaceX IPO is an energy story and the energy constraint is why he believes space becomes the only viable path for AI to scale (Save this). The argument he is making is one of the most important and least understood things happening in technology right now. The United States currently consumes roughly 500 gigawatts of electricity on average. To double that capacity which is what continued AI expansion on the current terrestrial trajectory would eventually require would mean building as many power plants as currently exist in the entire country. He is not arguing that this is technically impossible, just that communities are not willing to accept it, that permitting timelines make it unrealistic, and that the hard ceiling on Earth based power generation means the expansion of AI compute will eventually hit a wall that no amount of capital can overcome on the ground. His observation is that in space, that wall does not exist. A solar panel in orbit produces roughly five times more power than the same panel on Earth, operates in continuous sunlight uninterrupted by weather or nighttime, and benefits from the vacuum of space as a completely passive cooling system meaning the two largest operating costs of any terrestrial data center, energy and cooling, are effectively eliminated. He then said that you could theoretically increase harnessed energy by a factor of one million and still be using less than a millionth of the sun's total energy output. This is the underlying physics of why SpaceX filed with the FCC to launch up to one million solar powered AI satellites, and why they described that constellation in their own filing as a first step toward becoming a Kardashev Type II civilization capable of harnessing the full power of the sun. To understand what makes this credible rather than visionary, you need to understand what SpaceX already controls that no other company on earth possesses. Starship, once operating at full cadence, can deliver 100 to 150 tons of payload to orbit per launch, at a target cost per kilogram that is an order of magnitude lower than any existing vehicle. Musk's stated ambition is to scale Starship to 10,000 to 30,000 launches per year, a frequency that would allow the deployment of orbital compute infrastructure at a pace that is currently unimaginable with any existing rocket. He told xAI staff earlier this year that achieving space-based AI at scale will eventually require manufacturing facilities on the moon, building solar panels and heat dissipation structures from lunar silicon and aluminum, and launching them into orbit from there rather than from Earth's surface because the moon's lower gravity makes the economics of launch dramatically more favorable. SpaceX's S-1 filing explicitly states that its launch capabilities could enable massive AI compute satellite constellations with the potential for millions of satellites for orbital data centers, with the first launch potentially occurring as soon as 2028. Google and Alphabet are already in advanced talks with SpaceX about deploying space-based data centers. Starcloud, a startup running Nvidia H100 GPUs in orbit, has already validated that high-performance AI inference workloads can operate in space, with plans to scale to five gigawatts of orbital compute power by 2035. This is why Musk believes the cost crossover happens in two to three years because SpaceX's launch cost trajectory intersects with the accelerating energy constraint on the ground in a way that makes space genuinely cheaper, faster, and less regulated at exactly the moment AI demand is hitting its hardest physical limits.

Milk Road AI

12,738 次观看 • 2 个月前

The CUNTENT CREATION CHALLENGE started today! DOMME SPACE is your #1 online community for Mıstresses, where we have a private yet global Network of hundreds of Alpha Women, both Lifestyle, Pros, beginners and highly experienced. Every month we have Live events - classes, trainings, Guest speakers, and Mastermind Calls - available to all our Pro Members, and a Mistress Happy Hour for all our Members to connect and Network. And August is all about building online momentum on your social platforms! Visibility and presence are key components to be found and to build trust with your fans, which is how you get to connect with them and have them book you for sessions, join your fansites, send you tributes and gifts, etc. Boosting your online presence = boosting your income. Some do SFS, we are running this challenge to learn how to create sexy and SFW content, while all supporting each other grow in the FəmDom space. I am co-hosting this challenge with my Domme Sister, the one and only GoddessSultanaAisha who is a Mıstress who has Mastered dominating in the online space (and beyond). You will have direct access to both of us through Telegram, where we will be reviewing the content, giving feedback, offering guidance and tips ! By joining you also get access to all the VIP features. Comment or DM me 'DOMME SPACE' for the link! And if you are joining the new round of The Domınatrıx Academy starting on the 8/8, well.. you automatically get access to the Membership for 6 months! Let's make 2025 the year you took the space that belongs to you 😈 online and beyond.

Ms. Malissia

10,964 次观看 • 1 年前

$ASTI Ascent Solar Technologies Space and Drone Solar Panels The "Going to Zero" or Mispriced Space/Drone Solar Play Intro and comparison to $RKLB and $RDW panels Let’s get the ugly stuff out of the way first. $ASTI is a distressed penny stock with a ~$5M-$10M market cap. • They burn millions in cash. • 2024 Revenue: ~$40k. 2025 Revenue (YTD): ~$60k. • They generate less revenue than a single Tesla Model Y. • They have diluted shareholders relentlessly. $ASTI just raised $2M in December with the potential of $3.5M more via warrants while being a ~$5M mcap "company". Yikes. To most, this is "uninvestable trash." Stay away. Full stop. So why did I buy ~5% of the float? IF the technology works and IF they execute then I believe this is a massive market pricing dislocation about to inflect. They have been grinding for years and may finally be hitting an inflection point. $RKLB Rocketlab is the king of space solar and they are my second largest position overall, but here is why $ASTI might be a very high risk but asymmetric bet in Space & Defense right now. 1. The Tech Pivot: Flexible CIGS vs. The World Ascent started in 2005 but pivoted 2 years ago from consumer to pure-play Space & Defense. They have sunk ~$250M and 20 years of R&D into proprietary CIGS (Copper-Indium-Gallium-Selenide) thin-film technology while building out fully domestic and vertically integrated manufacturing capabilities. The Physics: • Thickness: 0.03 mm (Thinner than paper). • Flexibility: Wraps around drones/satellites; rolls up like a poster. • Durability: "Self-Healing" capabilities against space radiation. Can take a bullet or micrometeoroid and keep working. Can handle shocks/vibration. Does not shatter. The Metric that Matters: Specific Power (W/kg) (aka energy to weight ratio) In space, mass means cost and difficult decision decisions. • Rocket Lab ($RKLB) / Spectrolab: ~150 W/kg (System level). • Ascent Solar ($ASTI): ~1,960 W/kg (Module level). $ASTI is roughly 10x lighter for the same power output potential (mass-wise). This frees up design limitations and cost. 2. The Competition: $RKLB & $RDW Rocket Lab (SolAero) & Redwire (iROSA): • Tech: Rigid Crystal Cells (Multi-junction) embedded in a fabric mesh. • Pros: Extreme Efficiency (~30%+). Perfect for limited surface area. • Cons: Heavy, Brittle, Expensive ($3k-$10k per Watt). Manufacturing multi-junction cells (SolAero) involves slowly growing crystals in a vacuum chamber. With radiation the panels degrade and loose efficiency over time which will limit the satellite lifespan. • Use Case: James Webb Telescope, Flagship missions. Ascent Solar (ASTI): • Tech: Flexible Thin-Film on Plastic. • Pros: Ultra-light, Durable, Cheap ($500-$1k per Watt). Manufacturing CIGS is roughly similar to printing newspapers (roll-to-roll). The panels are radiation degradation resistant and will outlive the satellite • Cons: Lower Efficiency (~17.5%). Requires 2x surface area. • Use Case: Mega-Constellations (Starlink/Amazon Leo), Small/Low cost satellites, Drones, Deformable surfaces. The lower efficiency is not an ASTI failing. It is the inherent physics trade-off of not using glass/rigid silicone. The downside however is increased atmospheric drag with very larger/massive panel sheets. Because ASTI modules are ~50% less efficient than rigid panels, they require ~2x the physical surface area to generate the same amount of power. In GEO (High Orbit): Drag doesn't matter. Weight savings are king. A massive solar array allows for more sensors and longer project lifespan. ASTI is highly competitive here. In LEO (Low Orbit): Atmospheric drag is real. A massive solar array acts like a large parachute, causing the satellite to de-orbit faster unless it burns more fuel to stay up. At LEO, smaller satellites are a better fit for ASTI. 3. Durability & Radiation "Self-Healing" Radiation Hardness This is ASTI's "Ace in the Hole" for physics. The Problem: In space, high-energy protons (radiation) smash into solar cells, creating atomic "defects" that trap electrons. Over time, this kills the panel's power output (degradation). The CIGS Advantage: CIGS (Copper-Indium-Gallium-Selenide) material has a unique property where heat (annealing) allows the atomic structure to relax and "heal" these defects. Self-Healing: Because CIGS heals at relatively low temperatures (often achieved just by the sun heating the panel), it suffers significantly less degradation than traditional Silicon or even some GaAs panels over long missions in high-radiation belts (like MEO or GEO). Lifespan: While a rigid GaAs panel might lose 15-20% of its power over 15 years (enough to kill a satellite), CIGS panels heal and can maintain a flatter power curve, potentially outlasting the satellite itself in high-radiation orbits. 4. Brittleness & Flexibility ASTI (CIGS on Polyimide): Flexible. You can roll it like a poster. It can take a bullet or micrometeoroid and the hole will just be a dead spot; the rest of the panel keeps working. It does not shatter. Redwire (ROSA) & Rocket Lab (SolAero): Brittle Cells on a Flex Blanket. $RDW's ROSA (Roll-Out Solar Array) typically uses rigid multi-junction cells (made by SolAero/Rocket Lab or Spectrolab) mounted on a flexible mesh fabric. The Risk: If you bend the cells too far, they crack. They rely on the mesh backing for flexibility, but the active generating material is still a brittle crystal wafer. Much heavier, more expensive, and less durable than $ASTI's option 5. The Inflection Point (Why Now?) After years of silent struggle, late 2025 has seen an explosion of activity. Recent Agreements (Nov/Dec 2025): NovaSpark: Hydrogen-powered military drones. $ASTI panels generate power in the field → NovaSpark creates hydrogen fuel. CisLunar Industries: Integrating ASTI solar with power conversion hardware for deep space longevity. Defiant Space: A strategic alliance to act as the "door opener" for classified DoD/NATO programs. More headlines: Ascent Solar Technologies Provides Leading Space Company with Thin-Film PV modules for Spacecraft Power Generation Testing in Cislunar Space December 03, 2025 08:00 ET Ascent Solar Technologies Delivers Thin-Film PV for Saltwater Environment Durability and Space-Based Power Beaming Testing October 14, 2025 08:00 ET Ascent Solar Enters Teaming Agreement with Emtel Energy USA to Advance Thin-Film PV Energy Storage Capabilities September 16, 2025 08:00 ET Ascent Solar Technologies Signs MOU with Star Catcher Industries to Improve Power Capabilities for Thin-Film Solar Technology in Space August 28, 2025 08:00 ET Ascent Solar Technologies Establishes Rapid Thin-Film PV Delivery Process to Provide Customized Space Solar Products Ahead of Schedule on Mission Enabling Timelines August 07, 2025 08:00 ET The Pipeline (From Aug Corporate Presentation) 18 new NDA's signed in 2025. They are field testing with 3 major players: • Company A: Mega-constellation (+2,500 satellites). • Company B: Space Defense (Explicitly mentioned "Golden Dome"). • Company C: Satellite Manufacturer (30-200 unit scale). Management: New board members include a former founding member of SpaceX and a retired Air Force General and Deputy Assistant Secretary for Contracting (acquisitions expert). The company started in 2005 based out of Colorado, but two years ago pivoted to Space & Defense and away from consumer applications. Made in USA: Defense contracts heavily favor domestic supply chains. ASTI manufactures in Colorado. This is a huge moat against cheap Chinese solar. In their Q3 report they note that their market has seen sudden recent acceleration. The space solar industry is currently only capable of 8 to 12 MW per year of production meanwhile the demand is growing to over 100 MW per year. 6. The Risk (The Sword of Damocles) ⚠️ This is critical. $ASTI just raised ~$2M in December. Attached to that raise are ~2 Million Warrants with a strike price of $1.70. These are exercisable immediately. If the stock rips to $3.00, warrant holders exercise at $1.70 and dump on the market for a risk-free 76% profit. This creates a massive "sell wall" and potential 40% dilution of the float. Summary: This is a binary bet. • Bear Case: They run out of cash in 6 months, dilution spirals, stock goes to $0. • Bull Case: They land one of the "Company A/B/C" contracts. Revenue jumps from $60k to projected $20M+ in 2026. The stock reprices from a "bankrupt penny stock" to a "critical defense/space supplier." I have gradually accumulated ~5% of the float. I am ready for it to go to zero. But if the space economy demands "Cheap, Light, and Durable," $ASTI is the only public pure-play. Disclaimer: This is a very high-risk microcap. Do your own due diligence. Not financial advice.

YeahDave

208,349 次观看 • 8 个月前

For midfielders wanting to enhance their performance, Ngolo Kante should be a primary source of education. (This is also a reference point I use personally as a midfielder). Kante demonstrates himself as one of the greatest anticipators in football in a pivotal moment; he’s caught ahead of the ball. He teaches that you shouldn’t chase the ball, but protect the central space. Protecting the space allows; 1) to maintain your momentum against the opponent which can help you get goalside 2) maintain a line of travel that is parrel to the direction of the ball/opponent, always keeping eye on the ball both points mean that when the attackers tries to cut towards goal (shift their momentum) you can directly intervene with the momentum you’ve already established, you don’t need to be changing direction — or because you’ve filled the central space, even if you can’t regain/retain the ball, your prescence will push the direction of play away from goal Where most midfielders follow the ball, Kante prioritises the space, because he can recognise/predict what & where the opponent will go in reaction to the environment + their own act tendencies. The best footballers in the world are the greatest anticipators. Raya speaks about Alisson’s ability to ‘smell’ what will happen; his ‘timing’ and always being ‘close to the ball’. Being able to recognise + understand performance patterns in football will allow you to be that ‘one step ahead’ of an opponent, because you’re able to ‘anticipate’ their next action. Mastery over motion.

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213,232 次观看 • 1 年前