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Mars will be our next planetary home for human civilization. Here are a few things you need to know > Mars formed about 4.5 billion years ago alongside Earth and likely started as a warmer, wetter world before it lost its global magnetic field and dried into the cold...

22,676 Aufrufe • vor 9 Monaten •via X (Twitter)

47 Kommentare

Profilbild von 🌋🌋 Deep₿lueCrypto 🌋🌋
🌋🌋 Deep₿lueCrypto 🌋🌋vor 9 Monaten

The Sun is ~99.8% of the entire mass of the solar system.

Profilbild von 🌋🌋 Deep₿lueCrypto 🌋🌋
🌋🌋 Deep₿lueCrypto 🌋🌋vor 9 Monaten

A sad way to think about it

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🌋🌋 Deep₿lueCrypto 🌋🌋vor 9 Monaten

Scientists say dark matter may not be in our universe - but in a hidden one right next door Scientists are exploring bold new ideas to explain why dark matter has never been directly detected—even though it appears to make up about 27% of the universe and plays a crucial role in holding galaxies together. Despite decades of experiments, no confirmed dark matter particle has been observed. This has led some physicists to consider alternative possibilities. One idea, discussed by physicist Stefano Profumo of UC Santa Cruz, proposes that dark matter might belong to a “mirror” or hidden sector—a parallel set of particles and forces that interact with our universe only through gravity. In this scenario, a hidden universe could have formed during the Big Bang alongside ours, shaping cosmic structure without being visible to telescopes or detectors. Profumo has also explored another speculative possibility: that dark matter could be generated at the cosmic horizon, the expanding edge of spacetime. Similar to how black holes emit particles from their event horizons, the boundary of the universe might produce dark matter as it grows—an idea inspired by quantum gravity models. These theories remain highly theoretical, but they highlight how far scientists are pushing to understand one of cosmology’s most persistent mysteries. The difficulty in detecting dark matter may not reflect a lack of technology—it may indicate that dark matter behaves in ways we’ve only begun to imagine. H/t: @sciencegirl

Profilbild von 🌋🌋 Deep₿lueCrypto 🌋🌋
🌋🌋 Deep₿lueCrypto 🌋🌋vor 9 Monaten

The deeper you dig into science, our world, our universe, our galaxies, our black holes The more you realize that there has to be a creator who created this entire universe from energy

Profilbild von 🌋🌋 Deep₿lueCrypto 🌋🌋
🌋🌋 Deep₿lueCrypto 🌋🌋vor 9 Monaten

Ever expanding universe inside a black hole which is ever expanding inside another ever expanding universe inside another black hole Yeah… makes sense

Profilbild von 🌋🌋 Deep₿lueCrypto 🌋🌋
🌋🌋 Deep₿lueCrypto 🌋🌋vor 9 Monaten

@SpaceX is a game changer for NASA

Profilbild von 🌋🌋 Deep₿lueCrypto 🌋🌋
🌋🌋 Deep₿lueCrypto 🌋🌋vor 9 Monaten

to IPO in 2026 for $1.5 trillion The biggest ever company going for IPO ever

Profilbild von 🌋🌋 Deep₿lueCrypto 🌋🌋
🌋🌋 Deep₿lueCrypto 🌋🌋vor 9 Monaten

"The most important thing in the next 3-4 years is data centers in space. In every way, data centers in space, from a first principles perspective, are superior to data centers on earth.“

Profilbild von 🌋🌋 Deep₿lueCrypto 🌋🌋
🌋🌋 Deep₿lueCrypto 🌋🌋vor 9 Monaten

Mars doesn’t have Tim Walz 😂🤣

Profilbild von 🌋🌋 Deep₿lueCrypto 🌋🌋
🌋🌋 Deep₿lueCrypto 🌋🌋vor 9 Monaten

Here’s a high school student explaining dimensions like the first, second, third and fourth dimensions 💥💥💥💥💥 A must watch 💥💥💥💥💥

Profilbild von 🌋🌋 Deep₿lueCrypto 🌋🌋
🌋🌋 Deep₿lueCrypto 🌋🌋vor 9 Monaten

Here’s a previous thread

Profilbild von 🌋🌋 Deep₿lueCrypto 🌋🌋
🌋🌋 Deep₿lueCrypto 🌋🌋vor 9 Monaten

Astronomers have discovered a colossal structure called the big ring which breaks all known laws of astrophysics in nature that we currently know A thread on space👇

Profilbild von 🌋🌋 Deep₿lueCrypto 🌋🌋
🌋🌋 Deep₿lueCrypto 🌋🌋vor 9 Monaten

How do rocket engine nozzles survive exhaust gases hotter than 3000°C?

Profilbild von 🌋🌋 Deep₿lueCrypto 🌋🌋
🌋🌋 Deep₿lueCrypto 🌋🌋vor 9 Monaten

The Solar system is a lot bigger than Earth The Milkyway is a lot bigger than Earth The Universe is much much larger

Profilbild von 🌋🌋 Deep₿lueCrypto 🌋🌋
🌋🌋 Deep₿lueCrypto 🌋🌋vor 9 Monaten

"Let's go out there and visit other star systems and see if there are alien civilizations. The universe is 13.8 billion years old and earth is about 4 1/2 billion years old. We are a mere 5500 year old civilization."

Profilbild von 🌋🌋 Deep₿lueCrypto 🌋🌋
🌋🌋 Deep₿lueCrypto 🌋🌋vor 8 Monaten

Halley's comet visits Earth

Profilbild von 🌋🌋 Deep₿lueCrypto 🌋🌋
🌋🌋 Deep₿lueCrypto 🌋🌋vor 8 Monaten

Who farted all that

Profilbild von 🌋🌋 Deep₿lueCrypto 🌋🌋
🌋🌋 Deep₿lueCrypto 🌋🌋vor 8 Monaten

FUTURE LOOKS BRIGHT WITH SPACE EXPLORATION, MOON MISSIONS, MARS MISSIONS, SPACE ENERGY GRIDS, SPACE DATA CENTERS etc. By the mid-2040s, humanity's foothold on the Moon has transformed from tentative outposts into thriving metropolises, powered by SpaceX's Starship fleets that shuttle resources and personnel with the regularity of transatlantic flights. Vast lunar bases, sprawling across craters like Shackleton and Malapert, serve as hubs for mining helium-3 and rare earth elements, fueling fusion reactors back on Earth and enabling self-sustaining habitats with 3D-printed domes and hydroponic farms. These settlements aren't just scientific enclaves; they're economic powerhouses, where private enterprises lease land from U.S.-backed alliances to conduct zero-gravity manufacturing, producing flawless pharmaceuticals and advanced alloys impossible on Earth. As SpaceX's dominance ensures seamless logistics, the Moon becomes the gateway to the stars, with tourists gazing at Earthrise from luxury resorts while robots assemble massive solar arrays to beam unlimited energy to our planet. Venturing further, Mars emerges as the ultimate frontier by 2050, with SpaceX's reusable megaships establishing interconnected colonies that house millions in pressurized cities beneath transparent biodomes. Red Planet outposts like Olympus City leverage in-situ resource utilization to extract water from ice caps and fabricate habitats from regolith, creating a new society where AI-managed greenhouses yield bountiful harvests and underground tunnels connect research labs to industrial zones. The U.S., through strategic partnerships with SpaceX, leads in terraforming initiatives, deploying fleets of atmospheric processors to thicken the thin Martian air, fostering an ecosystem where humans adapt with genetic enhancements for lower gravity. This monopolistic grip accelerates innovation, turning Mars into a backup for civilization—data vaults preserving Earth's knowledge, experimental fusion plants providing inexhaustible power, and even off-world economies trading in digital currencies mined from asteroid belts. In the vast expanse of orbit and beyond, by 2060, space becomes the ultimate infrastructure for humanity's insatiable demands, with colossal energy farms orbiting Earth like glittering necklaces, capturing solar power unfiltered by atmosphere and wirelessly transmitting it to power entire continents. SpaceX's Starlink constellation evolves into a neural network of data centers floating in Lagrange points, where quantum computers process exabytes of information in the cold vacuum, free from earthly heat constraints and enabling real-time global AI governance. These orbital facilities, guarded by autonomous drones and serviced by robotic swarms, host everything from virtual reality worlds to genetic archives, ensuring data sovereignty for the U.S. amid geopolitical shifts. As SpaceX's unparalleled launch cadence floods the cosmos with infrastructure, space transforms from a void into a vibrant extension of human ambition, where energy is abundant, computation infinite, and the boundaries of possibility dissolve into the stars.

Profilbild von 🌋🌋 Deep₿lueCrypto 🌋🌋
🌋🌋 Deep₿lueCrypto 🌋🌋vor 8 Monaten

@SpaceX is driving the most traffic in space

Profilbild von 🌋🌋 Deep₿lueCrypto 🌋🌋
🌋🌋 Deep₿lueCrypto 🌋🌋vor 8 Monaten

Raptor 3 is an engineering marvel in space engineering

Profilbild von 🌋🌋 Deep₿lueCrypto 🌋🌋
🌋🌋 Deep₿lueCrypto 🌋🌋vor 8 Monaten

SpaceX’s Raptor 3 engine is sublime engineering • No basic heat shield needed → saves mass and dramatically boosts reliability • Small fuel leaks aren’t dangerous — they simply burn off safely in the open plasma • Major improvements in payload capacity, efficiency, and overall reliability • Radically simplified design with deeply integrated electronics and fluid systems • So clean and minimalist that even propulsion experts initially thought it looked “unfinished”

Profilbild von 🌋🌋 Deep₿lueCrypto 🌋🌋
🌋🌋 Deep₿lueCrypto 🌋🌋vor 7 Monaten

The TIME magazine cover from February 9, 2026, captures the dawn of a new era in space exploration with its striking imagery of the moon looming large against a starry void, symbolizing humanity's bold return to lunar ambitions. Titled "Back to the Moon," it features the Artemis II crew in profile, their helmets gleaming under dramatic lighting, evoking a sense of unity and determination. From left to right, the astronauts—Canadian Space Agency's Jeremy Hansen, NASA's Victor Glover, Reid Wiseman, and Christina Koch—stand as pioneers, their orange suits adorned with mission patches that blend national pride with international collaboration. The subtitle boldly proclaims that these astronauts will venture farther than any humans before, hinting at the mission's audacious goal to orbit the moon and push the boundaries of human endurance in deep space. This cover not only celebrates the technological marvels of NASA's Artemis program but also ignites a collective imagination about what lies ahead for interstellar travel. By highlighting a diverse team including the first Canadian, the first Black man, and a woman on such a lunar journey, it underscores themes of inclusion and progress amid the challenges of spaceflight. The artwork, crafted by Jeffrey Kluger, transforms a scientific endeavor into an inspirational narrative, reminding us that after decades since Apollo, we're on the cusp of rediscovering our celestial neighbor—not just as a destination, but as a stepping stone to Mars and beyond, fueling dreams of a multi-planetary future.

Profilbild von 🌋🌋 Deep₿lueCrypto 🌋🌋
🌋🌋 Deep₿lueCrypto 🌋🌋vor 7 Monaten

Did you know that wood is one of the rarest items in the universe WOOD IS RARER THAN DIAMONDS WOOD IS RARER THAN GOLD

Profilbild von 🌋🌋 Deep₿lueCrypto 🌋🌋
🌋🌋 Deep₿lueCrypto 🌋🌋vor 7 Monaten

WATCH HOW GRAVITY BENDS TIME

Profilbild von 🌋🌋 Deep₿lueCrypto 🌋🌋
🌋🌋 Deep₿lueCrypto 🌋🌋vor 7 Monaten

Strangelet, a fragment of a dead star, is the universe’s deadliest object, capable of turning Earth into dead rock. H/t: @Rainmaker1973

Profilbild von 🌋🌋 Deep₿lueCrypto 🌋🌋
🌋🌋 Deep₿lueCrypto 🌋🌋vor 7 Monaten

IF YOU THINK A LOT OF CLUTTER WOULD ENDUP IN SPACE WITH A MILLION DATA CENTERS IN SPACE DO NOT WORRY… THERE IS A LOT OF SPACE

Profilbild von 🌋🌋 Deep₿lueCrypto 🌋🌋
🌋🌋 Deep₿lueCrypto 🌋🌋vor 7 Monaten

Earth is not 70% water like you were taught If you gather all the water on earth and wrapped it into a ball… it would barely register on earths size

Profilbild von 🌋🌋 Deep₿lueCrypto 🌋🌋
🌋🌋 Deep₿lueCrypto 🌋🌋vor 7 Monaten

In Elon's new letter: "Factories on the Moon can take advantage of lunar resources to manufacture satellites and deploy them further into space. By using an electromagnetic mass driver and lunar manufacturing, it is possible to put 500 to 1000 TW/year of AI satellites into deep space, meaningfully ascend the Kardashev scale and harness a non-trivial percentage of the Sun’s power."

Profilbild von 🌋🌋 Deep₿lueCrypto 🌋🌋
🌋🌋 Deep₿lueCrypto 🌋🌋vor 7 Monaten

Orbital refueling will be a reality in space soon

Profilbild von 🌋🌋 Deep₿lueCrypto 🌋🌋
🌋🌋 Deep₿lueCrypto 🌋🌋vor 7 Monaten

Cosmic events which reshaped human history

Profilbild von 🌋🌋 Deep₿lueCrypto 🌋🌋
🌋🌋 Deep₿lueCrypto 🌋🌋vor 7 Monaten

Elon Musk just announced a major strategic pivot for @SpaceX: the company is officially shifting its primary focus to building a "self-growing city" on the Moon. The logic is centered on speed. While Mars missions are restricted by orbital alignments every 26 months, SpaceX can launch to the Moon every 10 days. This allows for much faster iteration and development. @elonmusk estimates that a lunar city could be achieved in less than 10 years. In contrast, a similar presence on Mars is now projected to take 20 or more years to establish. Mars remains on the long-term roadmap with work potentially starting in 5 to 7 years, but the immediate priority is now "securing the future of civilization" via the faster lunar route. H/t: @mark_k

Profilbild von 🌋🌋 Deep₿lueCrypto 🌋🌋
🌋🌋 Deep₿lueCrypto 🌋🌋vor 7 Monaten

@SpaceX

Profilbild von 🌋🌋 Deep₿lueCrypto 🌋🌋
🌋🌋 Deep₿lueCrypto 🌋🌋vor 7 Monaten

@SpaceX Lunar base to be a reality soon

Profilbild von 🌋🌋 Deep₿lueCrypto 🌋🌋
🌋🌋 Deep₿lueCrypto 🌋🌋vor 7 Monaten

@SpaceX Andromeda is the closest galaxy to us And it’s physically impossible for humans to travel to the closest galaxy even if we travel at the speed of light

Profilbild von 🌋🌋 Deep₿lueCrypto 🌋🌋
🌋🌋 Deep₿lueCrypto 🌋🌋vor 7 Monaten

@SpaceX China has successfully landed reusable rockets on the sea And @grok confirmed that this is in fact true

Profilbild von 🌋🌋 Deep₿lueCrypto 🌋🌋
🌋🌋 Deep₿lueCrypto 🌋🌋vor 7 Monaten

@SpaceX @grok @grok confirmed that China successfully tested a reusable rocket on Feb-11 2026

Profilbild von Ronnie~"Real"(not blue).Gentleman, Single. ~❤️✨🕊~
Ronnie~"Real"(not blue).Gentleman, Single. ~❤️✨🕊~vor 6 Monaten

@SpaceX Very Cool… Thanks. But…"Hey Now"... "What's The Baggie … "Mid-Screen… "There?" "Lunch Break Sandwich Bag"? ☮️❤️✝️🕊✨ I pray for all persons, life and... ✨☮️🇺🇸🌏❤️✝️🕊✨ I pray for all souls, That Persons, Lives, Souls To Be Saved, in Jesus's name I Pray, Amen.

Profilbild von Colleen Huber, NMD, CTP
Colleen Huber, NMD, CTPvor 9 Monaten

@SpaceX Money down the drain. Work with the Goldilocks planet: Earth

Profilbild von Dark Mousy📀
Dark Mousy📀vor 4 Monaten

@SpaceX just wait for that 38% gravity to punish your physique because it simply can't pull enough from you. Living in Mars is impossible for humans.

Profilbild von Irene Abbott
Irene Abbottvor 6 Monaten

@SpaceX Block the radiation with lead and maybe it could be habitable in domes.

Profilbild von Sunshine
Sunshinevor 6 Monaten

@SpaceX Very interested !

Profilbild von • Her_Divine_Path •
• Her_Divine_Path •vor 6 Monaten

@SpaceX Send the liberals, Democrats, and criminals there. Life will be beautiful on earth then.

Profilbild von الشيخـــــة
الشيخـــــةvor 6 Monaten

@SpaceX Not sure but it’s looks like GCC countries land

Profilbild von 66SHOEBOX77
66SHOEBOX77vor 6 Monaten

@SpaceX Wow, thanks for the info!

Profilbild von Luis Alfredo Lillo
Luis Alfredo Lillovor 4 Monaten

@SpaceX hay muchos errores en su twit, solo comparar o mencionar la "tierra utilizable" que existe en la tierra vs marte es de por si un error. bueno , supongamos que puedes ir y vivir ahi, estas 15kms de altura en casa y tu trabajo esta a -20kms. si puedes eres no humano.

Profilbild von Suseela Ippagunta
Suseela Ippaguntavor 4 Monaten

@SpaceX Informative 👍 Beautiful 🤩 Thanks 🙏

Profilbild von mary folkerts
mary folkertsvor 4 Monaten

@SpaceX Did you mention the ground is caustic and we need to do thing to it first to make it livable that will take us years

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🔊 Elon Musk did a live phone interview earlier today with a guest host of the Sean Hannity radio program, discussing his latest SpaceX timelines. I only caught about the last 5 minutes of it: “The best way to expand compute is really in space. There’s a lot of room in space and if you look at the size of Earth relative to the sun or relative to the solar system, you realize just how tiny Earth is. We’re very, very tiny. We only receive about half a billionth of The Sun’s energy. So if you really think of Earth as being like a tiny dust mote in a vast darkness. So the way to expand compute— without, ya know, using up all the land on Earth— is to do so in space. And then you can do it without using up space for power & water on Earth. You can just do it in space, so… I think we will probably be launching our first AI satellites next year and then we will probably be able to do that, I think, at large scale in about two years. Yeah, well, I’ve always had the philosophy that everyone at the company should receive stock in the company so that they can participate in the upside of the company and it’s great for aligning incentives as well, so as the company prospers, then the people at the company— the employees — also prosper, so that’s just been, ya know, my philosophy from Day 1 is just to make sure everyone gets stock in the company, so there are, I think, several thousand people who’ve been – it’s not just one welder – it’s several thousand people who were, you know, working on the production line and started at the company relatively early… then probably their stock is worth over $1 million at this point “Yeah, so, Mars is much harder to get to than the moon and you can only travel to Mars roughly every two years. So Earth and Mars align such that you can travel to Mars only once every 26 months. So that makes it a lot harder than the moon where you can go to the moon pretty much anytime and it only takes a few days to get to the moon whereas it takes about six months to get to Mars. So that’s why we can do the moon faster than we can do Mars. But I think, probably, if things go well, we can probably send the first people to Mars in about five years, and then rapidly increase the cadence of sending people to Mars thereafter, so every two years we could dramatically increase the number of ships going to Mars and, ya know, hopefully in a 10 or 12 year timeframe we’ve sent thousands of people to Mars.”

James Stephenson

922,497 Aufrufe • vor 2 Monaten

ELON: MARS COULD SAVE EARTH JUST LIKE AMERICA SAVED EUROPE “I do think there is an important threshold if we are able to make life multiplanetary, that you can get to the point on Mars where Mars can grow by itself, even if the resupply ships from Earth stop coming. That's the critical threshold where the probable lifespan of civilization is dramatically greater. So, it's not enough just to go to Mars and have a small base or something like that. You've got to actually have enough resources on Mars that if resupply ships stop coming for any reason, and it could be that things on Earth ended with a bang or a whimper, and currently it's trending to end, it's sort of tragic, currently things are trending to end with a whimper in adult diapers because of the lack of birth rate, but as soon as we can make life multiplanetary, sustainably multiplanetary, the probable lifespan of civilization is dramatically greater. And I think that's really the fundamental test, can we get to that point before civilization collapses? Can we make life multiplanetary, sustainably multiplanetary before something happens on Earth to prevent that from occurring? And if we do, the future is exciting and bright, and Mars may one day come back and save Earth, just like America came back and saved Europe and saved the rest of the world three times last century. Three times, America saved the world last century. And what a disaster would have been if America had not existed. And one day, Mars may play that same role on Earth.” Source: Town hall in Philadelphia, Pennsylvania, October 18, 2024

Mario Nawfal

20,677,697 Aufrufe • vor 1 Jahr

2034 Earth–Venus–Mars opportunity looks promising. 10–15 on-orbit refueling operations may be needed to make a crewed ship full. Most can be done at an altitude of 180–200 km, made possible by Starship’s size. The final refueling may be performed at a higher altitude of ~2000 km, just below the Van Allen belt. Earth departure on 2034-08-21 from 2000 km orbit. A Trans-Venus Injection burn of ~3.7 km/s will place the ship on an Earth–Venus–Earth free-return trajectory. Venus flyby is expected on 2034-12-19, 120 days after departure. Two weeks before the encounter, if the mission proceeds as planned, a 25-m/s maneuver will shift the trajectory from Earth-return to Mars-bound. If not, the ship will free return to Earth in September 2035. The Venus gravity assist will send the ship into another Earth free-return trajectory, with Mars flyby around 2035-06-02. One week before reaching Mars, a system health check will determine whether to commit to Mars Orbit Insertion. If it’s GO, a small 10-m/s manuever will put the ship to less than 100 km altitude periapsis. Otherwise, a Mars flyby will lead to an Earth return in May 2036. The ship will enter the Martian atmosphere at about 9.4 km/s, performing an aerobrake to slow to 4.88 km/s and capture into a 100x140000 km, 7-day period high elliptical orbit. At apoapsis, a 50-m/s plane change will align the inclination with Mars’ equator, followed by additional aerobraking to remove about 650 m/s of velocity, placing the spacecraft in a 120x6128 km orbit. A 550-m/s burn at 6128 km altitude will then adjust the trajectory into Phobos orbit. The ship will stay at Phobos for about 7 days. The Mars–Phobos L1 point is only about two miles above Phobos’ surface, and Mars would dominate nearly half the sky, appearing about 80 times larger than the Moon from Earth. The ship will depart for Deimos afterward. Two burns totaling roughly 750 m/s will transfer the ship from Phobos to Deimos. And the ship will stay at Deimos for 7 days more. From Deimos, the ship will raise its apoapsis to form a 20000x140000 km altitude, 7-day orbit, requiring about 420 m/s of delta-v. At apogee, a 50-m/s burn will adjust inclination and lower periapsis to ~500 km for final Trans-Earth Injection. If time and propellant allow, the orbit can be aligned to a polar inclination for Mars ice-cap observations before departure. A Trans-Earth Injection burn at 500 km altitude, requiring 1.5–1.6 km/s of delta-v in early July 2035. If departure on the first days in July, Earth arrival is expected in December 2035. If missed that window, a March 2036 arrival may look more feasible. Nominal mission duration: 490 days, with 30 days in Mars orbit and 14 days at Phobos and Deimos. Two planets, two moons for 3.7+0.025+0.010+0.05+0.42+0.55+0.75+1.55=7.06 km/s Δv

Chun

225,455 Aufrufe • vor 11 Monaten