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@mian.junaid358: CapCut #vairal #😍😍😍@ملک مون 93 93
Mian Junaid 🇸🇦
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Region: PK
Saturday 29 August 2026 19:11:48 GMT
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Mirza waقas :
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2026-08-29 19:16:50
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💯مہرTalha :
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2026-08-29 19:31:26
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#creatorsearchinsights تێئەپەڕێت جا چیمان تێنەپەڕان #ڕیپۆست #کورد #govirall #blowthis
🚨2/14 PYR GIRLS DISCARDED IN A FULL SHELTER & NEED HELP NOW🚨 💔 Darla & Sasha were surrendered with 12 other dogs to the Greenville, TX shelter that was already completely FULL. Their owner was arrested following a horrific domestic violence incident, and now his father-in-law is surrendering all 14 dogs in batches. 4 Friday. 4 today. 4 tomorrow. 2 after that. Fourteen dogs. None of them are fixed. The shelter was already full. The 14 are not including other owner surrenders and strays today. Now innocent dogs who had nothing to do with any of this are facing the consequences. Darla & Sasha didn’t choose their owner, to live outside 24/7, or to be surrendered. They certainly didn’t choose to end up in a tiny kennel with their lives at risk. Dogs are expected to die for space 8/25. Darla is docile & sometimes wants her space from other dogs. Sasha is docile & dog friendly. Neither one is housebroken or good with cats or chickens. They need someone willing to actually get to know, teach, and give them the life they should have had all along. They deserve INSIDE homes. Exercise. Training. Enrichment. Vet care. A family who sees them as companions instead of yard ornaments. They are not backyard decorations or dogs to leave chained outside. They need out NOW & do NOT have to be adopted together. If you can adopt, please go meet in person. If you can foster, I’ll connect you with a rescue. Please don’t just comment that you’ll take if you won’t actually follow through. Share Darla & Sasha. Tag friends. Get these girls seen. ⸻ Kennel 9 | Sasha #D261068 (right) & Darla #D261069 (left) • ~3 years, Intact Females, Great Pyrenees/Anatolian Shepherd mix, Heartworm status unknown • Owner surrender 8/24 📍Greenville Animal Control Shelter 5800 Joe Ramsey Blvd, Greenville, TX 🕘 9 AM–5 PM daily ☎️ 903 457 2990 📧
[email protected]
💲Adoption: 115 Includes 1 round of shots, mandatory spay, microchip, & rabies. Will need dewormer, heartworm test, monthly heartworm/flea/tick prevention, etc. Adopt in person or foster through a rescue. ‼️The Dogs Need Our Help is a volunteer-run networking page‼
Replying to @fantic_hugoww Worked for 3m 18s techniahqrobot on x This small humanoid robot is being pushed far beyond a normal walking demo. The test begins with direct impacts and repeated disturbances. A person swings a wooden stick toward the robot while the machine tries to stay upright, protect its posture and recover its balance. When it falls, the key is how the control system handles the loss of stability, how quickly the joints react and whether the robot can reduce damage during contact with the ground. Humanoid robots are difficult to control because every movement affects the whole body. A sudden hit on the shoulder changes the position of the torso, hips, knees and feet at the same time. The robot must estimate its orientation, detect joint position, calculate a response and send torque commands to several motors within milliseconds. A slow reaction can turn a small disturbance into a complete collapse. This type of test matters because clean laboratory walking is only one part of real-world robotics. A machine working in a factory, warehouse, school or public space may face slippery floors, uneven surfaces, accidental contact, moving objects and unexpected human behavior. Engineers need to know what happens when the robot is disturbed, not only when every condition is perfect. The video also shows an important limit. Surviving an impact does not prove that a humanoid robot understands the situation. It does not automatically demonstrate general intelligence, independent decision-making or safe operation around people. What we can observe is physical robustness, balance control and recovery behavior under a controlled disturbance. Those are valuable capabilities, but they are only part of a complete robotic system. Durability involves more than a strong outer shell. The motors, gearboxes, bearings, cables, batteries, sensors and onboard computer must continue working after vibration and impact. The software also needs safe fall behavior, joint limits, emergency stopping and reliable recovery routines. A robot that stands up quickly but swings its limbs unpredictably could still create a safety risk. Serious testing should measure both performance and safety. How much force can the structure absorb? Can the robot detect that a person is close? Does it reduce motor power before falling? Can an operator stop it instantly? Are the results repeated across many trials? One dramatic demonstration can look impressive, but repeatability is what turns a prototype into dependable hardware. Compact humanoids are useful research platforms because developers can study locomotion, reinforcement learning, robot perception, motion planning and human-robot interaction without using a full-size machine. Smaller platforms can still reveal major problems in dynamic balance, sim-to-real transfer, actuator control and recovery after disturbances. The next step should be controlled behavior: remain balanced when possible, fall safely when necessary, avoid people, protect critical components and recover only when the area is clear. Would you trust a humanoid robot more after seeing this durability test, or does this aggressive testing make you more concerned about how powerful these machines could become? Keywords: humanoid robot, Booster Robotics, robot durability test, robot balance, bipedal locomotion, dynamic stability, impact resistance, disturbance recovery, fall recovery, reinforcement learning, physical AI, embodied AI, robotics engineering, robot safety, motion control, IMU sensor, actuator control, human robot interaction, autonomous robot, research robot, factory automation, warehouse robotics, artificial intelligence, robot development, real world robotics, sim to real, advanced robotics. #HumanoidRobot #BoosterRobotics #Robotics #PhysicalAI #EmbodiedAI
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