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Surprisingly, Windows 10's explorer.exe still works in Windows 11 Version 26H1, albeit bit buggy (e.g., non-working Task View). When ran (11's explorer isn't running), it'll use the taskbar from Windows 10, more features than Windows 11's taskbar such as resizing and moving it.

335,073 görüntüleme • 7 ay önce •via X (Twitter)

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Holy shit... someone built a free portable tool that activates Windows, kills the bloatware, and shuts down every telemetry service Microsoft buried in your OS. It's called GTweak. One .exe file. No install. No subscription. You download it, run it, and your Windows is finally yours. Every "Windows debloater" before this made you pick one trade-off. Activate but keep the spyware. Debloat but lose update control. Disable telemetry but break Defender toggles. GTweak does all of it inside a single portable executable. Here's what makes it different from every Windows tweaker that came before: → HWID + KMS activation built in, no sketchy batch scripts, no Massgrave links, no PowerShell one-liners pasted from a Reddit thread → Removes Cortana, Copilot, Recall, OneDrive, Edge, and every pre-installed UWP app on Windows 10 and 11 in one click → Disables keyloggers and telemetry across Windows and NVIDIA including the data collection tasks hiding in Task Scheduler that nobody talks about → Blocks Microsoft's shadow domains at the hosts file AND firewall level so the OS literally cannot phone home → Disables Defender, SmartScreen, Antimalware, VBS, and UAC with proper toggles instead of registry hacks that break on the next update → Pauses Windows Updates entirely and wipes the cached update files Microsoft refuses to let you delete → Kills Teredo, ISATAP, and IPv6 along with the diagnostic services running silently in the background → Activates the hidden Ultimate Performance power plan and fixes the Realtek audio delay bug nobody at Microsoft has patched in 5 years → Runs custom .ps1, .cmd, .bat, .reg scripts with TrustedInstaller privileges, the highest permission level Windows has → Built-in hardware monitor, NTFS compression, RAM cleaner, and secure Windows.old wipe Killed: $30 Windows 11 Pro keys, every "debloat script" repo with 47 forks and no maintenance, the $5/mo "PC optimizer" garbage running on YouTube ads. Works on every official Windows build since 10 (18362.116). One .NET Framework 4.8 dependency that's already on your machine. BSD 3-Clause License. 100% Opensource.

Guri Singh

171,691 görüntüleme • 4 ay önce

Nibiru has moved from 4 o’clock position to 3 o’clock position. Moving up towards the elliptic (center of Sun - circle) and seen closer to the Sun. Nibiru is moving infront of the Sun, just as predicted by the Zetas. 10/24/25 vs 11/04/25 ☄️ #Nibiru #Atlas “November is when the Nibiru Complex will move from the left of the Sun to center in front of the Sun.” “• Planet X, finding itself tilting along the flow lines while close to the Sun, does a slow roll to align with the Sun at its middle, the S Pole slung away from the Sun's S Pole, this direction and momentum continuing until it rolls 270° to click into a side-by-side alignment with the Sun. This is implied in Eastfield, a 270° roll both before and after the timeline. • Planet X does more than one 270° roll, as the fastest way to align itself again with magnetic flow lines after piercing the Ecliptic, as implied in Eastfield, the second roll culminating in the passage where the visible presence of Planet X increases enormously during the week of rotation stoppage. The timeline implies a position of Planet X prior to the passage that include angles of 45° on either side and a 180° reversal in between. • Planet X first approaches creating wobbles in the orientation of the Earth as it passes the Sun's S Pole, then a tight lock while rising through the flow lines to the Ecliptic, then slinging the Earth in a radically different orientation (denoted by the beak) during a 270° roll, and then halting the rotation of the Earth as the Atlantic Rift is gripped in line with Planet X.”

ZetaTalkLive👽

11,452 görüntüleme • 10 ay önce

It’s just a video player on localhost:8080. That’s what I keep telling myself. Minimax H3 on Fish Creative Prompt Fixed-camera desktop screen recording of a real Windows 11 Chrome window filling the entire frame. Do not restyle the browser as a mockup, poster, or floating card. Keep the exact chrome from the reference still for every frame. Browser frame (locked, zero motion): - Tab title: Local Video Player - Address bar URL: localhost:8080 - Bookmarks bar left to right: Apps, Work, Personal, Google, GitHub, Docs, YouTube, then Other bookmarks on the right - Chrome controls: back, forward, refresh, extensions, profile avatar “M”, puzzle piece, shield, three-dot menu - Windows 11 taskbar along the bottom: search “Type here to search”, File Explorer, Google Chrome, Visual Studio Code, system tray, time 10:30 AM, date 5/20/2024 Page layout (labels, colors, and positions never change): - Left: large HTML5 video canvas - Under the canvas: play/pause triangle, timecode starting 00:00 / 00:10, purple seek bar, speaker, purple volume slider, fullscreen icon - Right sidebar on near-black: - “Video Player” with purple clapperboard icon - Controls: Space Play / Pause; ← → Seek ±5 seconds; ↑ ↓ Volume ±10%; F Toggle Fullscreen; M Mute / Unmute - Playlist: purple play arrow, “Sample Video”, 00:10 - Playback Rate: 0.5x, 1x filled purple and selected, 1.5x, 2x Character identity (must stay the same person in every pose): Photoreal young woman, long wavy blonde hair, gray school-style blazer over a white collared shirt, gray pleated mini skirt, black knee-high socks. Same face, same proportions, same outfit. Location stays the green grassy hill under a pale overcast sky. No costume change, no second character, no extra props. Motion rules: - Camera never moves. Browser chrome, sidebar, bookmarks, taskbar, and all UI text stay perfectly still. - Only the video canvas animates. Treat the canvas as a short fashion / pose test clip of the same girl on the hill. - Playback runs continuously at 1x. Do not pause the player. Do not flash a big pause icon. Do not cut away from the hill. - Timecode and the purple progress thumb advance smoothly from 00:00 to 00:10. Pose sequence inside the canvas (hold each pose ~1.5–2 seconds, then transition with natural body motion, hair, and cloth, not a hard cut): 1. Start pose (match the reference still): leaning forward, both hands on her knees, looking into camera with a pout. 2. Rise and stand tall: she straightens up, hands leave her knees, stands facing camera with arms relaxed at her sides, chin slightly lifted, wind moving her hair. 3. Hands-on-hips: she plants both hands on her hips, weight on one leg, slight hip cock, blazer and skirt settling, confident look into camera. 4. Turn / three-quarter: she twists her torso to her right, looks back over her shoulder toward camera, hair swinging, one hand lightly holding the hem of the skirt so it does not lift unnaturally. 5. Crouch / ready: she drops into a low athletic crouch, fingertips brushing the grass, still looking up at camera, same pout softening into a small smirk. 6. End pose: she stands again, steps one foot forward, both hands clasp in front of her thighs, then eases back toward the original lean-with-hands-on-knees so the last frame rhymes with the first still. Transitions must look like the same live-action take: weight shifts, knee bend, hair lag, grass and sky stay consistent. No teleport, no outfit swap, no extra readable text burned into the video. Audio: quiet outdoor hill ambience only. No music, no voiceover, no UI click spam. Style: photoreal live-action screen capture of a local demo page running in Chrome. Not animation, not a trailer, not a poster. Duration: about 10 seconds. Aspect: 16:9 desktop.

Sharon Riley

30,886 görüntüleme • 21 gün önce

I told you to claim your free 16GB NVIDIA GPU for learning Local LLMs. Now I’m going to show you how to double its inference speed without touching the hardware. Google Colab gives you an enterprise grade NVIDIA Tesla T4 GPU for free, roughly 4 hours every single day. It is the absolute perfect sandbox for learning AI engineering, testing inference flags, and pushing massive context windows. The local AI timeline is moving way too fast. If you aren't using Multi Token Prediction (MTP) yet, you are leaving massive performance on the table. I just pushed DeepMind’s Gemma 4 26B to 64.9 t/s on this exact free tier. Let's look at the raw benchmark data running on an Ubuntu Linux environment with the latest compiled llama.cpp binaries and quantized GGUFs from Unsloth via HuggingFace: # Qwen 3.5 9B (Dense): Base: [ Prompt: 626.7 t/s | Generation: 21.0 t/s ] With MTP: [ Prompt: 539.1 t/s | Generation: 24.8 t/s ] # Gemma 4 26B QAT (MoE): Base: [ Prompt: 634.2 t/s | Generation: 48.3 t/s ] With MTP: [ Prompt: 572.1 t/s | Generation: 64.9 t/s ] If you are paying attention, this single Colab notebook reveals 3 massive observations about the current state of local LLMs: # 1. The MTP Speedup (Software Overclocking) Standard autoregressive decoding guesses one token at a time. MTP acts like a highly optimized, built in speculative decoder. It predicts multiple future tokens at once and the main model verifies them in parallel. The result? Zero accuracy loss and a massive throughput increase. Gemma jumped from 48 to 65 t/s just by flipping a flag. # 2. The MoE Paradox (Bigger is Faster) How does a 26B parameter model absolutely destroy a 9B model in raw speed on the exact same hardware? Architecture. Qwen 3.5 9B is a dense model. it activates all 9 billion parameters for every single token. Gemma 4 26B is a Mixture of Experts (MoE) model. It routes data efficiently, activating only 4B parameters per token. You get the reasoning capabilities of a 26B model with the compute cost of a 4B model. 3. Thinking Efficiency When I ran the exact same complex prompt on both models, the larger MoE spent significantly fewer "thinking" tokens to arrive at the correct answer. A smarter model doesn't just give better answers; it gets to the point faster, saving you compute cycles and preserving your context window. # Want to run this yourself? Here are the exact llama.cpp CLI commands. For Qwen (MTP is baked into the main model): ./llama-cli -m Qwen3.5-9B-UD-Q4_K_XL.gguf -p "Explain quantum computing." -n 2000 -c 8000 -ngl 99 -fa on --spec-type draft-mtp --spec-draft-n-max 4 --spec-draft-p-min 0.7 For Gemma (Using a separate lightweight draft model): ./llama-cli -m gemma-4-26B-A4B-it-qat-UD-Q4_K_XL.gguf --model-draft mtp-gemma-4-26B-A4B-it.gguf -p "Explain quantum computing." -n 2000 -c 8000 -ngl 99 -fa on --spec-type draft-mtp --spec-draft-n-max 4 --spec-draft-p-min 0.7 Stop waiting for a $3,000 rig. Boot up Colab, pull these models, and start building your stack. I’ve put together a completely free, cell by cell Google Colab notebook that automates this entire workflow so you can test it yourself in 5 minutes and learn. Link to the notebook is in the comments below. Experiemt with different MTP parameters, context windows and post your results in the comments.

Alok

170,442 görüntüleme • 2 ay önce

I want to believe, but there's too much evidence that not only tells me but shows me that they lied. I feel like low Earth orbit is as far as we can go... 1. The van Allen radiation belt. 2. The disgusted, unexciting, ashamed post moon landing conference with the three astronauts. Their body language, mannerisms, and answers scream that they're lying. 3. The lack of noise of the jet engines in the "videos." 4. How did they get the lunar rover on the spaceship? 5. No craters or dust underneath the spaceship. 6. How did the film the spaceship take off perfectly if nobody was left on the moon to operate the camera, and how was it so perfect if there was a delay? 7. The rockets and the spaceship look like a model. 8. The video of them saying that they are 130,000 miles away from Earth when all they really did was cover up the windows when they are in low earth orbit and film a small portion of Earth from low Earth orbit to simulate that they were far away, but then you find out that they're only in low Earth orbit when they uncover the windows. (Shown in the video below) 9. How we have to redesign the space suits to be able to handle the atmosphere on the moon. 10. The lack of talk and missions to the moon ever since. 11. The numerous blacked out photos from NASA. 12. How an older smartphone has way more technology than the entire spaceship back in 1969, and how we were able to even communicate with them in the spaceship as the one astronaut who passed away before the moon launch specified that they had trouble communicating between buildings and the shuttle on the ground. 13. Not one single astronaut would put their hand on the Bible and say they went to the moon. Why? 14. All the CGI and bubbles caught on NASA videos. 15. All the green screen captures and astronauts on wires in the "shuttle" and on the "ISS." There are so many bloopers and outtakes of astronauts and shuttle hatches malfunctioning, people appearing in the background of videos of the shuttle, people fading in and out, I could go on forever... How would you convince me against the evidence or prove me wrong from the arguments that I have provided?

The SCIF

32,813 görüntüleme • 1 yıl önce

BREAKING: SpaceXAI has released a major new update for Grok Build (v1.0.13). The update improves reliability with automatic retries and recovery from truncated responses, inference failures, oversized images and session-saving issues. It also adds smarter hooks, better Windows support, faster MCP and session startup, improved scheduled tasks and quicker compressed CLI downloads. Features • Length-truncated responses now continue automatically instead of failing the turn. • Hooks can now ask the user to confirm a tool call instead of always allowing or denying. • Hooks can now request deferral or add context shown to the model after a tool runs. • Session close now records detailed timing data for performance analysis. • Credit limit upsell now offers a Try Again button to retry the last prompt. • Pasted images now show a live pixel preview in the prompt box on iTerm2. Bug Fixes • Transient inference failures (stalls, drops, 5xx) now retry automatically instead of ending the turn. • Windows users can now correctly open ~/.grok and worktree sessions. • Session data is now more reliably saved after prompts and on power loss. • Compaction failures now show the actual error instead of a generic message. • Truncation error messages now show the right guidance instead of suggesting an unhelpful retry. • Truncated tool calls are now executed instead of failing the turn when arguments are complete. • Images larger than 2000px no longer brick sessions on many-image requests. • Wrapped hyperlinks in the pager now remain fully clickable on Windows Terminal instead of only the first line. • Recurring scheduled tasks now include a reminder to stop the monitor when work finishes. • Scheduled task IDs are now full UUID strings, preventing collisions when tasks are created in the same millisecond. Performance • Subagent spawning is faster when connections drop during bursts. • Session startup with MCP servers is now much faster when auth is already configured. • MCP server startup no longer stalls behind a fixed batch size. • CLI downloads are now compressed, making fresh installs and updates substantially faster. Download Grok Build: Update to the latest Alpha release: grok update --alpha Update to the latest Stable release: grok update

DogeDesigner

487,748 görüntüleme • 28 gün önce

Created with PixVerse V6 on BudgetPixel AI Title : From Blueprint to Reality Style: Ultra-realistic, cinematic, emotional, 4K, shallow depth of field, realistic lighting, smooth camera movements, detailed architecture, cinematic color grading. Full Prompt: A highly realistic cinematic 15-second video. The scene begins inside a modest room during golden hour. A young man in casual clothes sits at a wooden desk beside a window. Warm sunlight falls across the table, illuminating a detailed blueprint of his dream house. The room is quiet except for the soft sound of birds and a gentle breeze moving the curtains. The camera slowly moves over the blueprint, showing detailed floor plans and sketches. The young man touches the drawing with his fingers, imagining his future home. Suddenly, the blueprint begins to glow with soft golden light. Tiny particles rise into the air, and the room slowly fades away. In a magical transition, the young man finds himself standing at the entrance of the exact house from the blueprint. The camera circles around him as he looks at the beautiful modern home with large glass windows, a green lawn, and warm interior lighting. He slowly walks inside, seeing the spacious living room, elegant furniture, and sunlight entering through the windows. He walks toward the balcony and looks around in disbelief. His eyes fill with happiness and pride. The camera pulls back to reveal the entire house at sunset while he smiles, realizing his dream has become reality. Ultra-realistic textures, cinematic lens flare, volumetric sunlight, realistic shadows, smooth motion, 4K quality. Scene Timing 0–4 sec: Young man studying the blueprint in his room. 4–7 sec: Blueprint glows and magical transition begins. 7–11 sec: He arrives inside the dream house. 11–15 sec: He explores the home and smiles with joy. Voice Over (English) "Every dream starts as a simple drawing... a vision held in our hearts. One moment, it was only lines on paper. The next, I was standing inside the life I always imagined. Dreams become real when we dare to believe in them."

Yashal Ai

13,850 görüntüleme • 2 ay önce