We have walking chairs now???
“The Walking Chair” transforms a found chair with a pneumatic piston, creating unexpected, irregular movements that give a familiar object an eerie sense of intelligence.
Credit: Jason Cook / @onipro_
#Robotics#Art#Engineering#Telixia#AI
@JosephEkene12 Exactly. Lifting is the easy part. The real breakthrough is handling unpredictable loads, tight spaces, and constantly changing conditions. That’s where robots could transform logistics from the ground up.
@IntEngineering The A2 shows how efficiency can come from many small design choices working together.
Aerodynamics, battery options, and drivetrain efficiency are all pushing EVs toward longer range with less energy.
@IntEngineering Thanks for sharing.
Audi has revived the A2 name as an electric compact and says it is the most efficient car the brand has ever built, at 12.8 kWh per 100 km on the WLTP cycle. Aerodynamics do most of the work, with a 0.24 drag coefficient, a largely enclosed underbody and gap reducers in the wheel arch trim, while three battery sizes of 52, 61 and 84 kWh deliver up to 646 km, or 401 miles, and a 10 to 80 percent DC charge in 29 minutes. Orders open in Germany on September 10, 2026 from 38,200 euros, with first deliveries in December.
@Bober_smart Turning everyday foot traffic into small amounts of usable energy is a clever idea.
It’s not about replacing major power sources, but capturing energy that would otherwise be wasted.
@Bober_smart Thanks for sharing.
@Siccuma The possibility of an interstellar visitor passing through our Solar System is mind-bending.
Objects like 3I/ATLAS give us a rare glimpse into material formed far beyond our own cosmic neighborhood.
@SicCuma Thanks for sharing.
@ZappyZappy7 Human-like wrists are a key piece of dexterous robotics. Compact, flexible joints could let robots perform precise tasks even in tight spaces.
@ZappyZappy7 Thanks for sharing.
@WevolverApp Teleoperation is an important bridge between human skill and robotic autonomy.
Every real-world interaction helps reveal what robots need to become more capable outside the lab.
@WevolverApp Thanks for sharing.
@problyx Football predictions become even more fun when they’re social and competitive.
Turning match opinions into a community challenge is a smart way to keep fans engaged.
@problyx Thanks for sharing.
@IsaacSin12@rickythefrog33@Ryan_Resolution@makermodsai The impressive part is getting from a single demonstrated trajectory to real end-to-end robot control.
Combining vision, simulation, and AI planning could make robotic manipulation much easier to develop.
@IsaacSin12 Thanks for sharing.
@ZentrixHQ The exciting part is how quickly AI can turn complex anatomical data into something interactive and easy to explore.
Tools like this could make medical education far more accessible.
@ZentrixHQ Thanks for sharing.
@Alacritic_Super@ultralytics Real-time baggage tracking could turn airport logistics into a much more data-driven operation.
Faster detection and fewer errors mean smoother baggage handling and fewer delays.
@Alacritic_Super Thanks for sharing.
@Shred_0x The strongest argument for humanoids may be safety, not speed.
If robots can take on the most injury-prone tasks, their value could be measured in lives and injuries prevented.
@Shred_0x Thanks for sharing.
@0xNextCore The strongest case for Physical AI is keeping humans out of dangerous environments.
If robots can reliably inspect, map, and respond to hazards, they could make some of the world’s riskiest jobs much safer.
@0xNextCore Thanks for sharing.
@0xMavex The real value of teleoperation may be the data it generates.
Every human-guided action can become training data that helps robots eventually perform the same work autonomously.
@0xMavex Thanks for sharing.
@simworld_ai The exciting part is moving from generating individual 3D assets to creating complete, coherent worlds from a simple prompt.
Text-to-scene generation could make interactive environments dramatically faster to build.
@simworld_ai Thanks for sharing.
@genrobotics_ai The big shift is from robots needing step-by-step engineering to systems that can figure out how to achieve a goal themselves.
That could dramatically shorten the path from an idea to a working robot.
@genrobotics_ai Thanks for sharing.
@TelixiaAI@ZJU_China The real innovation is making the drone itself adaptable.
One platform can squeeze through tight spaces and handle objects without needing extra hardware.
@TelixiaAI Thanks for sharing.