Gsus4

joined 1 year ago
[–] Gsus4@programming.dev -4 points 3 months ago* (last edited 3 months ago) (4 children)

e.g. https://www.yahoo.com/tech/ryzen-3000-fix-sinkclose-vulnerability-183025768.html AMD has these sorts of flaws too, I don't know enough to tell if AMD is significantly better at this when deciding to buy

[–] Gsus4@programming.dev 4 points 3 months ago* (last edited 3 months ago)

fine, fine, I learned 3/4 new things there, thanks for taking the time

[–] Gsus4@programming.dev 22 points 3 months ago (7 children)

.......linux cars? Pretty please?

[–] Gsus4@programming.dev 12 points 4 months ago

maybe ask on reddit...there are subs where you can check...I can't remember anymore...sth like shadowban or amibanned

[–] Gsus4@programming.dev 23 points 4 months ago* (last edited 4 months ago) (5 children)

Yea, like a giant pile of statically charged asbestos that are hard to clean away.

[–] Gsus4@programming.dev 15 points 4 months ago* (last edited 4 months ago) (2 children)

This is so exciting because it sounds doable. Unlike Mars, which is a tragedy awaiting the overconfident.

[–] Gsus4@programming.dev 13 points 4 months ago* (last edited 4 months ago)

I mean, lunar water exists...they just have to figure out if it flows when the moon faces the sun for 14 days at a time and gathers in these lava tunnels or stays in the form of beads

https://www.sciencealert.com/huge-amounts-of-water-on-the-moon-may-have-just-been-located

[–] Gsus4@programming.dev 9 points 4 months ago* (last edited 4 months ago) (1 children)
 

"Permanent lunar colonies could soon become an attainable target for space agencies"

 

See, Apple? Even cars can do it :)

 

Abstract from the paper in the article:

https://agupubs.onlinelibrary.wiley.com/doi/10.1029/2024GL109280

Large constellations of small satellites will significantly increase the number of objects orbiting the Earth. Satellites burn up at the end of service life during reentry, generating aluminum oxides as the main byproduct. These are known catalysts for chlorine activation that depletes ozone in the stratosphere. We present the first atomic-scale molecular dynamics simulation study to resolve the oxidation process of the satellite's aluminum structure during mesospheric reentry, and investigate the ozone depletion potential from aluminum oxides. We find that the demise of a typical 250-kg satellite can generate around 30 kg of aluminum oxide nanoparticles, which may endure for decades in the atmosphere. Aluminum oxide compounds generated by the entire population of satellites reentering the atmosphere in 2022 are estimated at around 17 metric tons. Reentry scenarios involving mega-constellations point to over 360 metric tons of aluminum oxide compounds per year, which can lead to significant ozone depletion.

PS: wooden satellites can help mitigate this https://www.nature.com/articles/d41586-024-01456-z

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