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Atomically-precise quantum antidots via vacancy self-assembly

Scientists demonstrated a conceptual breakthrough by fabricating atomically precise quantum antidots using self-assembled single vacancies in a two-dimensional transition metal dichalcogenide.

Superlensing without a super lens: Physicists boost microscopes beyond limits

Attempts to break the diffraction limit with 'super lenses' have all hit the hurdle of extreme visual losses. Now physicists have shown a...

AI enabled soft robotic implant monitors scar tissue to self-adapt for personalized drug treatment

Research teams have detailed a pioneering breakthrough in medical device technology that could lead to intelligent, long-lasting, tailored treatment for patients, thanks to...

GPay और Paytm से मोबाइल रिचार्ज कराना अब फ्री नहीं, देना होगा इतना प्लेटफार्म चार्ज

भारत में पेटीएम, गूगल पे, फोनपे ऐप खूब इस्तेमाल किया जाता है. ये देश के प्रमुख यूपीआई ऐप्स हैं. इन ऐप के जरिए...

Brain signals transformed into speech through implants and AI

Researchers have succeeded in transforming brain signals into audible speech. By decoding signals from the brain through a combination of implants and AI,...

Machine learning contributes to better quantum error correction

Researchers have used machine learning to perform error correction for quantum computers -- a crucial step for making these devices practical -- using...

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