Infinity-Science
2.94K subscribers
1.02K photos
26 videos
23 files
452 links
Discover the latest in physics, biology, chemistry, astronomy, and more. Experience technology, fascinating facts, and the wonders of nature. Explore science history, join Q&A sessions, and stay informed. For paid ad and comment, contact @Aurorazs1
Download Telegram
Is this the end of human soldiers? The future of war is hereπŸ€–βš”

Imagine robots fighting battles instead of people. China's army just built a special flying 5G system to make this possible. This system is super fast, so drones and robots can react instantly. To keep the signal strong, drones take turns flying and charging, ensuring constant communication. It's like a team always passing the message on, never dropping the ball. Even if someone tries to block the signal, the system is designed to keep working. This new technology could change how wars are fought, allowing for faster, more coordinated attacks.

So, will soldiers become a thing of the past, or will they learn to fight alongside these new robot warriors? Pretty wild to think about, huh🀨?

        β”β”βœ§Infinity-ScienceXβœ§β”β”
πŸ‘5πŸ”₯4😱2πŸ™‰2πŸ†’1
#JustforFun #MemeπŸ˜‚
  β”β”βœ§Infinity-ScienceXβœ§β”β”
🀣17😁5πŸ™‰1
Limitless Energy? China's "artificial sun" is bringing fusion closer to reality.!

Sustaining temperatures like that of the sun itself is no easy feat, but China's experimental fusion reactor has done just that, breaking records by maintaining 100 million degrees Celsius for over 16 minutes. This "artificial sun" represents a significant leap toward harnessing nuclear fusion, a process that holds the promise of clean, virtually limitless energy. While many hurdles remain before fusion becomes a practical reality, this achievement offers a tantalizing glimpse into a future where our energy needs could be met by mimicking the power of the stars.

More info
          β”β”βœ§Infinity-ScienceXβœ§β”β”
πŸ‘5πŸ†’3😱2πŸ€”1
While studying, I saw a super shiny planet in the sky that distracted me🀩 What planet do you think it could have been?

Any Guess? Comment down below

     β”β”βœ§Infinity-ScienceXβœ§β”β”
🀩5❀1πŸ’―1πŸ†’1
What if you could wear a fabric that turns sunlight into warmth?

Imagine stepping outside on a chilly day and feeling cozy right away. Recently, scientists have created an amazing self-heating textile that can raise its temperature by 54Β°F (30Β°C) in just 10 minutes without needing batteries or electricity! This innovative material is designed with special nanoparticles that absorb sunlight and turn it into heat, combining practicality with eco-friendliness.

But there's more! This fabric is also waterproof, so it works well even when it's raining. Plus, it changes color from red to white as it heats up, giving you a clear signal of how warm it is. With this new textile, staying warm is easier and more stylish than ever!

β”β”βœ§Infinity-ScienceXβœ§β”β”
πŸ”₯5πŸ†’4πŸ‘1πŸ€”1πŸ’―1
Hi everyone!

I've got some exciting news to share! I'm partnering with ITMO University in Russia, a really impressive school that is regularly featured in global top 100 of various prestigious international rankings. They're known for their strengths in computer science, engineering, and a whole range of related fieldsβ€”basically, all the tech topics we love to explore here.

What's really cool is that ITMO will be contributing content directly to our channel, and they're making sure it's tailored to your interests. I'm confident that you'll find their insights and perspectives, coming straight from ITMO's expert team, to be incredibly valuable.

If you're interested in learning more about ITMO University and their work, you can check them out right here: https://t.me/itmo_uni
❀9πŸ”₯6πŸ‘4πŸ’―2
Spider silk gets a superpower: ITMO researchers create magnetic material for targeted healing.

Scientists from ITMO University have created a new magnetic material composed of silk from the Linothele fallax spider and a coating of magnetic nanoparticles. Combined, the elements promote tissue regeneration and can potentially be applied in targeted drug delivery.

How it works: researchers add liposomes – microscopic spheres made of the same molecules as cell membranes – to a biological sample, allowing them to penetrate cells easily. Medication is placed inside them and coated with nanoparticles. When exposed to an external magnetic field, the particles heat up and destroy liposomes, which causes medication to be released at the injury site; at the same time, silk threads facilitate directional growth and serve as a support system for cells.

Guest post by ITMO University
β”β”βœ§Infinity-ScienceXβœ§β”β”
πŸ‘4πŸ”₯4πŸ†’1πŸ™‰1
Hey everyone! Let's brainstorm:

What's next for science and space? What research areas do you think will be the biggest game-changers in the coming decade? What are the major challenges and exciting opportunities you see?

Come and comment your ideas – let's chat
!
πŸ”₯5πŸ€”2πŸ‘1πŸ†’1
Upcoming Celestial Spectacles You Can't Miss!πŸ”₯
β”β”βœ§Infinity-ScienceXβœ§β”β”
❀9πŸ†’5πŸ”₯4🫑2
Hey everyone!

I'm looking for someone who's passionate about science and can regularly share reliable information, knowledge, and thought-provoking questions on this channel. If you think you'd be a great fit, DM me at @Auror_azs. I'm prepared to offer payment for those who consistently go above and beyond.

Thanks!
πŸ”₯7πŸ†’4🫑1
AI can facilitate treatment of heart attacks πŸ«€

Cardiovascular diseases are the leading cause of death globally. For their timely detection, it’s important to identify fibrosis – scar tissue caused by heart attacks or infectious diseases. Today, clinicians manually process MRI images to measure fibrosis volume, which can be time-consuming.

Researchers from ITMO University and Almazov National Medical Research Centre used deep learning to develop a way to quickly detect cardiac fibrosis. While it takes a clinician about one to two hours to process an image, the model can do it in a few minutes by breaking down the problem into stages:

βœ… locate the cardiac muscle
βœ… detect fibrosis within each of the 17 traditional heart segments
βœ… evaluate its amount in each of them

Currently, the algorithm’s output matches the opinion of two experts in 86% and 77% of cases respectively, which means that the model has human-level performance.

Guest post by ITMO University
πŸ”₯3❀2πŸ†’2
Critical Question

If you guys were in charge of designing the ideal high school science curriculum, what single subject would you make mandatory for all students, regardless of their future career paths and what convinced you of its importance?

We'd love to hear your thoughts! Drop your ideas in the comments belowπŸ‘‡πŸ˜„
πŸ”₯4πŸ†’3πŸ’―2❀1
They walked the Earth 13,000 years ago. Now, they're back...in a way😳🐺

Meet Romulus and Remus-the world's first de-extinct animals🐺
In a groundbreaking development, Colossal Biosciences, a U.S.-based genetic engineering company, announced in April 2025 the birth of three genetically modified wolf pups named Romulus, Remus, and Khaleesi. These pups were created using ancient DNA extracted from dire wolf fossils-specifically, a 13,000-year-old tooth and a 72,000-year-old ear bone-and gene-editing techniques applied to gray wolf embryos.

Experts argue that the resulting animals are not true dire wolves but rather genetically modified gray wolves exhibiting some physical characteristics of their extinct counterparts. Concerns include the welfare of the genetically modified animals, the potential ecological impact of reintroducing extinct species, and the allocation of resources that might otherwise support the conservation of existing endangered species
β”β”βœ§Infinity-ScienceXβœ§β”β”
πŸ”₯6🀣2πŸ™‰2🀩1
An 18-Year-Old Teen Discovers 1.5 Million Space Objects

Californian 18-year-old Matteo Paz identified 1.5 million new space objects with AI. He won $250,000 in the Regeneron Science Talent Search for his efforts.

Paz's algorithm analyzes data from NASA's NEOWISE mission. The VarWISE catalog, created by Paz's AI algorithm, contains 1.9 million variable objects, of which 1.5 million were previously unknown to science. This groundbreaking dataset offers valuable insights into phenomena such as the expansion rate of the universe and the formation of distant star systems.

β”β”βœ§Infinity-ScienceXβœ§β”β”
πŸ”₯12🫑5πŸ‘4❀3