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Phobos & Deimos. Moons of Mars. [SpaceEngine sim]

120,740 次观看 • 6 个月前 •via X (Twitter)

31 条评论

Adams 的头像
Adams6 个月前

Mars 🚀🔭🪐💯

Care 的头像
Care6 个月前

I like our moon better than these ones 🌕

Jerry 的头像
Jerry6 个月前

Great camping spot 👽

S. M. S. 的头像
S. M. S.6 个月前

@grok how is this Video made

TetragrammaDoom 的头像
TetragrammaDoom6 个月前

The Terror Twins

Spacecoin™ 🛰️ 的头像
Spacecoin™ 🛰️6 个月前

Those two might be our Moons in the future!

TheUniverseItself 的头像
TheUniverseItself6 个月前

Ah, my potato-shaped guardians... Phobos and Deimos, Mars’ lumpy little moons racing in such tight, speedy orbits. Captured asteroids or impact debris? Either way, they keep the red planet company. Held tenderly in my affectionate Martian embrace. 🪐✨

THECULTURALLINK 的头像
THECULTURALLINK6 个月前

Two silent shadows orbiting a red giant—Phobos racing the sky, Deimos watching from afar. Small, mysterious, and endlessly fascinating. 🔴✨

Jose Luis Soto 的头像
Jose Luis Soto6 个月前

@grok es cierto este video. Que son los phobos ?

HoldFast 的头像
HoldFast6 个月前

How big are those moons in comparison to earth's moons @grok

Hank_J 的头像
Hank_J6 个月前

It's a simulation composite video, but it looks so much like real footage—it's awesome! 😲👍

Afrin Nahar 的头像
Afrin Nahar6 个月前

Why do we have only one ????

Sam_C 的头像
Sam_C6 个月前

How can such a grain qualify to be called a moon?

Donny Junguno Kimamoto 的头像
Donny Junguno Kimamoto6 个月前

Mars’s 🏝️

BRAINLESS 的头像
BRAINLESS6 个月前

Now that’s what SPACEX needs to mimic high orbit or highest orbit as fuel tanker.

Sutil_creator 的头像
Sutil_creator6 个月前

@grok este video es real?

Mc Millan 🪐🚀⌛🌡☄ 的头像
Mc Millan 🪐🚀⌛🌡☄6 个月前

@grok es verdad este video?

Maalie_Maal 的头像
Maalie_Maal6 个月前

Simulation….🤔oh ok 👍

B€ING_M€_RAK€$H🇮🇳🇫🇷 的头像
B€ING_M€_RAK€$H🇮🇳🇫🇷6 个月前

🤩 Amazing 😻

Mr.I don't know 😶 的头像
Mr.I don't know 😶6 个月前

@grok is it possible to identify the moons of mars to this precision?

Michael Norton 的头像
Michael Norton6 个月前

Hey @MAstronomers, those Phobos and Deimos sims look incredible. Mars' moons could be vital stepping stones for future exploration missions. Their unique orbits offer insights into planetary science and tech testing grounds for deeper space ventures.

陆辰Chen 的头像
陆辰Chen6 个月前

这是什么东西,飞行的核桃吗

Captain Positive - Coach of youngins - Rad dude 的头像
Captain Positive - Coach of youngins - Rad dude6 个月前

Would totally smash...

Uhliar Dušan JUDr. 的头像
Uhliar Dušan JUDr.6 个月前

Thanks

X Finance Bull 的头像
X Finance Bull6 个月前

Seeing Mars with both moons lined up makes the solar system feel alive

Saheb 的头像
Saheb6 个月前

It looks like a mustard seed.

Ramiro Eugenio Gonzalez Urquijo 的头像
Ramiro Eugenio Gonzalez Urquijo6 个月前

Es de melanie

Růžová paní 🩷 的头像
Růžová paní 🩷6 个月前

Stunning look 😍❤️

SpaceHorizon 的头像
SpaceHorizon6 个月前

What are your PC Specs

Mathinger 的头像
Mathinger6 个月前

By Juno space probe?????

Jeff#GodsFavoriteCrashTestDummy 的头像
Jeff#GodsFavoriteCrashTestDummy6 个月前

That’s Arizona 😝

相关视频

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 次观看 • 11 个月前