SMERFs enable real-time, high-fidelity 6DOF navigation in large scenes on standard devices, surpassing current more expensive methods in speed & quality: https://t.co/r3Y7PKGwhu <--- there's likely an entire side hustle waiting here for those more business/service minded.
GPTs are a new way for anyone to create a tailored version of ChatGPT to be more helpful in their daily life, at specific tasks, at work, or at home — and then share that creation with others. No code required. https://t.co/SPV4TcMiQw
Merging streetwear editions with digital.
Flash sale today & tomorrow only: Ordering our Cloudbreaker embroidered packable jacket ($159 USD) unlocks master files to Sky Lounge for customizable, interoperable use across platforms before official release: https://t.co/87ORRTUcKg
Link for PHSDS merch went live last night: https://t.co/MFso0bOFnG 📡🌐
Additional links & hidden merch can be found at our HQ via https://t.co/ccHJ7JiMjh or our new games hub, https://t.co/lUabjA5BCz.🫡
Fam, it's time to pour out into the street:
🫠🤸🏾♂️ Shoutout @gravitysketch, @unity & @Spatial
for offering the tools to take "what if" to "this works" within 24 hours at zero cost. You guys are the future.
#GRIDSHOT started as a morning design sprint & a few weeks later is ending as a finished, cross-platform gameroom:
If you haven't been following the LK-99 "conflama", now might be a great time to tune in - if this all washes out clean, it's another sure fire sign of the singularity on the horizon.
First claimed successful replication of LK-99
Accomplished by a team at the Huazhong University of Science and Technology and posted 30 minutes ago.
Why this is evidence:
The LK-99 flake slightly levitates for both orientations of the magnetic field, meaning it is not simply a magnetized piece of iron or similar 'magnetic material'. A simple magnetic flake would be attracted to one polarity of the strong magnet, and repelled by the other. A diamagnet would be repelled under either orientation, since it resists and expels all fields regardless of the polarity.
Caveats
There is no way to verify the orientation of the strong magnet in this video, also, there are yet to be published experimental measured values of this sample. Diamagnetism is a property of superconductors but without measured and verified data, this is just suggestive of a result.
Take-away
If this synthesis was indeed successful, then this material is easy enough to be made by labs other than the original research team. I would watch carefully for results out of Argonne National Lab, who are reported to be working on their own synthesis of a sample.
This overall corroborates two independent simulation studies that investigated the original Korean authors claim about material and crystal structure, and both studies supported the claims.
Lawrence Berkeley National Lab: https://t.co/1Blls3VcgL
Shenyang National Lab: https://t.co/I0NHAP3KsR
The attached video shows a small flake of their sample responding to an external magnetic field. I scroll through the video to skip to the relevant part.
original video credit to: @altryne
Introducing Objaverse-XL, an open dataset of over 10 million 3D objects!
With it, we train Zero123-XL, a foundation model for 3D, observing incredible 3D generalization abilities: 🧵👇
📝 Paper: https://t.co/2oNakoka7v
"Suddenly AI has turned every WiFi router into a camera that can work in the dark, specially tuned to track the living being"
Join for more exciting events like this:
https://t.co/piX9d7Dd35