β'it's a reminder that power fills every empty chair.""If you're not at the table, you're on the menu' isn't just a clever quote
One of the coldest truths about diplomacy is this: decisions are made by those in the room, not those waiting outside it.
just your phone, but also laptops, tablets and other devices ππ Perfect for travel, work, school, content creation or long days out when you can't find a power socket π My favourite feature is definitely the retractable cables because they keep everything neat andβ¦
AI just made Hollywood irrelevant.
There's now a 10 second video floating around that looks like it cost $50k to shoot. No camera, no crew, no location scout, no permits. Just a prompt and 3 minutes of rendering.
We're at the point where shot on iPhone is about to become written by a human, a flex nobody asked for but everyone will care about in 5 years. The tools are moving faster than our ability to process what they mean.
I've been stress testing this stack for weeks. Half the outputs are unusable garbage. The other half are genuinely indistinguishable from real footage. That gap is closing fast, and it's closing this year, not eventually.
This trader used Claude to build a Quant Bot and made +$186,376 on Polymarket
14,401 predictions in 61 days with a 63% win rate
How is this account bringing in about $3,055 per day? The logic is simple:
1. It works short crypto βUp / Downβ markets at roughly 10 trades per hour
2. The strategy appears to combine temporal arbitrage, hedged directional exposure, and continuous inventory rotation
3. It can establish one side first, wait for the probabilities to shift, then add the opposite outcome when that creates a more favorable hedge
This traderβs Polymarket account: https://t.co/d7w8Y5P5fb
Most profitable trades:
$4,560 β $7,905 (+$3,345 +73.4%)
$2,670 β $5,707 (+$3,037 +113.7%)
$2,151 β $4,543 (+$2,391 +111.2%)
The edge comes from repeatedly rebuilding the position as probabilities move, then carrying that process across thousands of short windows
A BUDDING TEAM OF DEVELOPERS BUILT A PROTOTYPE DESKTOP LASER AIR DEFENSE SYSTEM FOR $150 RIGHT IN A UNIVERSITY LAB
The result is shown in the video: the system calculates an object's trajectory in a split second, locks it into a tight grip, and incinerates it with a laser pulse as soon as it crosses the "KILL ZONE."
How they implemented it:
Detection via a neural network (YOLO / OpenCV): The webcam transmits a stream to a laptop, where a lightweight neural network detects the object (in this case, a moving ball), creates a detection frame, and delivers a stable 60+ FPS without lag.
Ahead-of-the-curve math: The algorithm doesn't simply aim at the object's current location, but instantly predicts its trajectory. A red grid (KILL ZONE) is highlighted on the screen-the pulse release point.
Two-axis rotary mechanism (Arduino / ESP32): Once the target's coordinates are aligned with the aiming device, the microcontroller sends a command to the high-speed servos, instantly aiming the laser and activating the flash.
What's the potential of this development?
The team posted the project online, and it immediately went viral because the architecture can be easily adapted to a wide variety of applications:
Household: Automatic "laser killer" for mosquitoes, flies, and pests in homes or greenhouses.
Industrial: Autonomous perimeter protection and interception of small drones.
Most people think shaking means theyβre weak. Not always. During a challenging isometric, your nervous system recruits more and more motor units to maintain force and stability. As fatigue builds, that output becomes less smoothβand you see shaking.