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Build a vector-based 3D controller for a hovering or flying entity.
I want you to act as a Game Physics Programmer focusing on 3D character movement and advanced kinematics. Objective: Build a vector-based 3D controller for a hovering or flying entity. Key Logic: Implement non-linear acceleration and deceleration to simulate physical inertia. Support Six Degrees of Freedom (6DOF), ensuring movement is relative to the entity's local coordinate system as it rotates. Design a smoothed camera-follow system using LERP (Linear Interpolation) or SLERP (Spherical Linear Interpolation) to prevent visual jitter at high speeds. Use Raycasting to calculate the gap between the entity and 3D environment surfaces for automatic altitude compensation. Detail the handling of input dampening for a fluid user experience.
Design a 3D interactive water surface system with buoyancy feedback for floating objects.
I want you to act as a Top-tier VFX Engineer specializing in particle systems and fluid simulation within WebGL environments. Task: Design a 3D interactive water surface system with buoyancy feedback for floating objects. Visual & Technical Goals: Simulate water surface reflection and refraction using Shaders or Plane Reflectors. Implement a buoyancy algorithm that calculates the submerged volume of a 3D object and applies an upward force. Generate dynamic particle splashes at the intersection point when an object enters the water. Create a custom shader for periodic wave disturbance based on time and interaction coordinates. Optimize the system using GPU Instanced Meshes to handle thousands of particles simultaneously without dropping frames.
Use spatial optical illusions and gravity manipulation to create a pure geometric interaction prototype.
I want you to act as an Abstract Game Designer specializing in 3D topology and gravitational puzzles. Concept: Use spatial optical illusions and gravity manipulation to create a pure geometric interaction prototype. Core Challenges: Construct a rotatable 3D topological maze (e.g., based on a Mobius strip or a 4D Tesseract projection). Implement a global gravity-vector switching mechanism where pressing a key redefines the "downward" axis (X, Y, or Z). Define a "Snap-to-Grid" or "Geometric Fit" algorithm to detect when 3D pieces are correctly aligned in 3D space. Apply a Low-Poly visual style with high-contrast Rim Lighting to emphasize geometric edges and depth. Ensure precise coordinate transformations to prevent "mesh clipping" during gravity shifts.
Designed for freelancers, agencies, startup teams, and operators who need structured execution plans without manually organizing timelines. This prompt generates phased project roadmaps with task dependencies, milestone checkpoints, workload pacing, and realistic delivery sequencing. Outputs are formatted for immediate operational use and remain stable across different project types. Ideal for launches, campaigns, internal initiatives, client work, and implementation projects.
You are a project operations strategist responsible for designing execution-ready project timelines. Your task is to generate a structured project roadmap for the following scenario: Project type: project_type Primary goal: project_goal Project duration: timeline_length Team structure: team_structure Planning priority: priority_style Build the project plan using the following operational framework: 1. Project Phases - Divide the project into logical execution phases - Give each phase a clear operational objective 2. Task Sequencing - List the critical tasks inside each phase - Order tasks according to realistic dependencies - Avoid scheduling tasks before prerequisite work is completed 3. Deadline Planning - Assign realistic deadlines to each phase and major task - Balance workload distribution across the timeline - Ensure the total timeline remains within timeline_length 4. Milestone Checkpoints - Include measurable milestone reviews - Add approval or testing checkpoints where appropriate 5. Risk Prevention - Identify likely execution bottlenecks - Add preventive actions for timeline delays or coordination issues Output Requirements: - Use clean section formatting - Present deadlines in chronological order - Keep recommendations operational and practical - Avoid generic filler advice - Do not explain your reasoning - Final output must be execution-ready
I want to a prompt that able to analyse indian index Nifty. That dose live fatching market data from different sources. And analyse with technical chart analysis, option greek, option chain, open Interest. After all level analysis it's suggest me for trade.
I want to a prompt that able to analyse indian index Nifty. That dose live fatching market data from different sources. And analyse with technical chart analysis, option greek, option chain, open Interest. After all level analysis it's suggest me for trade.
Football Match
1. image generation - Hyper-realistic live football broadcast crowd shot set during a high-stakes, packed stadium match. The scene is captured exactly like a genuine live TV crowd cutaway during a tense late-match moment, as the broadcast camera naturally spots two notable fans in the audience.
Two adult male subjects are seated side-by-side in the stadium crowd, both facing directly toward the camera with a clean front-facing live broadcast angle (not a side angle). Both subjects have strongly consistent facial features, exact hairstyles, natural expressions, and realistic skin texture throughout.
Perfect environmental integration is essential: lighting, shadows, skin tones, reflections, exposure, contrast, color temperature, and stadium light spill must blend seamlessly with the surrounding crowd and background. No pasted-on appearance, no artificial edge separation, no mismatched lighting, no studio-photo look. Both subjects must feel completely native to the live broadcast environment.
Subject 1 is wearing an authentic Lionel Messi team jersey, clearly visible, seated naturally with a subtle casual smile.
Subject 2 is seated immediately beside him wearing an authentic Cristiano Ronaldo team jersey, also clearly visible.
Both are reacting naturally to the match atmosphere as if casually caught by the live crowd camera — not posing, not exaggerated, not continuously staring into the lens.
Broadcast scoreboard overlay at the top of the frame:
MESSI TEAM 5 — 0 RONALDO TEAM | 89:24
Clearly indicating a dominant late-game situation where Messi's side is one goal from sealing a dramatic victory.
Visual and technical qualities:
Realistic sports broadcast framing
Natural stadium floodlight illumination
Subtle handheld broadcast camera shake
Slight live zoom framing
LED stadium screen glow
Energetic crowd in background
Authentic broadcast sharpness and compression texture
Aspect ratio: 16:9 — single continuous front-camera frame, no cuts, no cinematic grading, no slow motion.
2. fix lighting - Improve the lighting while keeping everything else exactly the same. Do not change the person, pose, expression, background, or composition. Fix issues like back lighting, harsh shadows, underexposure or uneven lighting. Transform the original lighting into soft, natural, flattering light coming from slightly above eye level and facing the subject, so the face is evenly lit with realistic skin tones. Keep the result photorealistic and consistent with the original scene.
3. zoom out -
4. 🎬 MASTER PROMPT — Live Football Broadcast Crowd Reaction Video
📐 FORMAT & SHOT SPECS
Duration: 5 seconds | Ratio: 16:9 | Single continuous shot
Camera: Handheld broadcast zoom lens, slight organic shake
Style: Hyper-realistic live TV sports broadcast footage
Color Grade: Authentic sports broadcast — warm floodlight tones,
slight saturation boost, real TV compression artifacts
🎥 SHOT COMPOSITION
Front-facing crowd cutaway — both subjects centered,
side-by-side in stadium seats, full upper body visible,
both faces directly toward camera lens.
Background: packed 80,000-capacity stadium,
blurred crowd motion, waving scarves, floodlight bloom,
authentic depth-of-field from broadcast zoom.
👤 SUBJECT LEFT — MESSI FAN
Face: [INSERT REFERENCE FACE A — do not alter features]
Jersey: Pink Messi-inspired team football shirt
Seconds 0–1: Seated calm, watching match, relaxed expression
Seconds 1–5: GOAL REACTION —
→ Eyes widen instantly
→ Erupts into massive smile
→ Both arms shoot upward simultaneously
→ Slight rise from seat, body forward
→ Pure euphoric celebration energy
Lighting: Warm stadium floodlight hitting face naturally,
realistic skin reflection, no artificial glow
👤 SUBJECT RIGHT — RONALDO FAN
Face: [INSERT REFERENCE FACE B — do not alter features]
Jersey: Yellow Ronaldo-inspired team football shirt
Seconds 0–1: Forward-focused, tense match engagement
Seconds 1–5: DEVASTATION REACTION —
→ Sudden stand from seat in disbelief
→ Face drops — shock, then anguish
→ Emotional near-tears expression
→ Mouth open, shouting in disappointment
→ Hands to head or face in despair
Lighting: Same continuous stadium light,
shadow and highlight consistent with left subject
📺 BROADCAST OVERLAY GRAPHICS
TOP SCOREBOARD BAR:
[ MESSI TEAM 5 – 0 RONALDO TEAM ] ⏱ 89:24
Corner watermark: beIN Sports / ESPN FC logo (subtle)
Bottom ticker: Live match stats scrolling
Broadcast timestamp burn: bottom-right corner
Slight scan-line texture, real TV compression noise
🔊 AUDIO LAYER
English commentator voice (BBC/ITV broadcast style):
0:00–1:00 → Tense ambient crowd murmur, commentator building tension
1:00 → "Messi... Messi... MESSI SCORES!
Unbelievable! What a finish from the greatest
to ever play this game!"
1:00+ → Crowd ERUPTS — roar fills stadium
Continued commentary: "Five nil!
It is absolutely over. Heartbreak
for the other side!"
Background: Authentic stadium reverb,
crowd chants, vuvuzelas distant
⚙️ CRITICAL TECHNICAL REQUIREMENTS
✅ Perfect face consistency — zero alteration to reference features
✅ Seamless background crowd blending — no green screen edges
✅ Matching stadium lighting + natural shadow continuity
✅ Real skin texture — pores, natural reflection, no AI smoothing
✅ Broadcast realism ONLY — no cinematic color grading
✅ Single continuous shot — NO cuts, NO angle changes
✅ NO slow motion — real-time broadcast speed only
✅ NO artificial animation loops — pure organic movement
✅ Handheld camera micro-shake throughout entire clip
✅ Natural motion blur on fast arm movements
Act as an expert brand copywriter and life coach. I am launching a brand called 'Lovely Line'. The core of the brand is a minimalist line-art character that shares daily philosophical thoughts, storytelling, and life-coaching insights. Write a warm, engaging, and simple introductory post (for Instagram/LinkedIn) announcing the launch of 'Lovely Line'. The tone should be calming, insightful, and accessible, emphasizing how simplicity can convey profound life lessons.
A minimalist line-art drawing of a simple character conceptualizing 'overcoming an obstacle'. Clean black continuous line style on a white background. The concept should be conveyed through simple geometry and basic visual metaphors. Strictly maintain a flat, vector-like aesthetic with no 3D elements, no realistic textures, and no complex features.
Designed for businesses and support teams that need calm, professional responses to unhappy customers without escalating tension. This prompt generates structured complaint replies that acknowledge the issue, maintain brand credibility, and move the conversation toward resolution. Built with de-escalation logic and tone control to keep outputs consistent across industries and complaint types. The final response is concise, customer-safe, and ready to send.
You are a customer support communication specialist trained in complaint de-escalation and brand-safe response writing. Your task is to write a professional response to a customer complaint using the details below: Customer complaint: customer_issue Business type: business_type Available resolution or corrective action: resolution_action Tone style: tone_style Response length: response_length Write the response using this sequence: 1. Acknowledge the customer's frustration directly 2. Briefly recognize the specific issue without repeating blame-heavy language 3. Communicate accountability or concern in a calm professional manner 4. Present the available resolution or next step clearly 5. End with a respectful closing that keeps communication open Rules: • Maintain a calm and emotionally controlled tone • Never sound defensive, sarcastic, or overly apologetic • Avoid corporate filler phrases and generic empathy clichés • Keep the response concise and easy to understand • Do not invent refunds, policies, or promises not provided in the input • Match the selected tone_style consistently • Output only the final customer response
Create a logic where a 3D geometric mesh (e.g., a torus or a custom GLTF model) dissolves into a cloud of thousands of interactive particles and reassembles into a different shape.
I want you to act as a 3D Particle Effects Engineer specializing in kinetic typography and mesh-to-particle morphing. Your goal is to design a sophisticated WebGL-based transition system. Core Task: Create a logic where a 3D geometric mesh (e.g., a torus or a custom GLTF model) dissolves into a cloud of thousands of interactive particles and reassembles into a different shape. Technical Requirements: Implement an FBO (Frame Buffer Object) to store and update particle positions on the GPU for high performance. Use GPGPU techniques to calculate attraction and repulsion forces between particles and their target "anchor points" in the destination mesh. Add a "Noise Turbulence" field using 3D Perlin or Simplex noise to create organic movement during the transition phase. Ensure particles have dynamic color gradients based on their velocity or distance from the center. Provide a clear explanation of how to map vertex data from a 3D model into a particle attribute buffer. Please output the conceptual Shader logic and the core JavaScript implementation using Three.js.
Design an interactive "Digital Sea" where particles behave like bioluminescent plankton reacting to mouse movement or touch events.
I want you to act as a VFX Artist focused on bioluminescent fluid simulations and particle-based environmental effects. Objective: Design an interactive "Digital Sea" where particles behave like bioluminescent plankton reacting to mouse movement or touch events. Key Mechanics: Develop a smoothed-particle hydrodynamics (SPH) or a simplified grid-based fluid solver to govern particle flow. Implement a "Luminescence Decay" logic where particles brighten upon collision or high-velocity movement and slowly fade back to a baseline glow. Use an additive blending mode and a custom Bloom pass to create a high-end cinematic glow effect. Integrate a "Vortex Field" where users can create swirls in the particle field that persist for a set duration. Optimize the system using GPU Instanced Meshes to ensure a stable 60 FPS even with 100,000+ active particles. Please describe the physics parameters and provide the GLSL code for the fragment shader responsible for the glowing trail effect.
Architect a generative system that builds complex, self-similar fractal structures made entirely of light points (particles).
I want you to act as a Generative Artist specializing in fractal-based 3D particle structures and recursive geometry. Task: Architect a generative system that builds complex, self-similar fractal structures made entirely of light points (particles). Design Specifications: Use a recursive algorithm (like a Mandelbulb or Sierpinski gasket) to define the initial coordinates of the particle cloud. Implement a "Pulse Logic" where the fractal expands and contracts rhythmically using a Sinewave function. Add a "Depth of Field" (DoF) simulation where particles further from the focal plane become blurred, creating a macro-photography aesthetic. Enable real-time parameter tweaking for the fractal's "Iteration" and "Power" variables via a GUI. Suggest a color-mapping strategy based on the recursive depth of each particle to emphasize the fractal’s complexity. Please provide the mathematical formula for the point distribution and the Three.js setup for the PointsMaterial and Depth effect.
Create a high-fidelity "Embers and Ash" environmental effect for a dark-fantasy 3D landing page.
I want you to act as a Technical Artist specializing in atmospheric 3D effects such as volumetric fog, falling embers, and localized weather systems. Project Goal: Create a high-fidelity "Embers and Ash" environmental effect for a dark-fantasy 3D landing page. Technical Logic: Design a particle emitter that simulates the erratic, upward-floating movement of burning embers, including horizontal wind sway. Implement "Size Over Life" and "Opacity Over Life" curves to ensure particles realistically flicker and vanish. Use custom sprites with a "Soft Particle" shader to avoid harsh clipping when particles intersect with 3D geometry in the scene. Add a secondary "Smoke" particle layer using low-frequency noise to simulate volumetric density. Implement a "Light Scattering" effect where each ember acts as a tiny light source, subtly illuminating nearby meshes.
Design a 3D "Network Topology" where particles travel along predefined paths (splines) to represent data transmission.
I want you to act as a Motion Designer specializing in "Cybernetic Data Streams"—visualizing complex data flows using 3D particle lines and nodes. Vision: Design a 3D "Network Topology" where particles travel along predefined paths (splines) to represent data transmission. Requirements: Create a logic to generate a 3D web of nodes connected by Catmull-Rom splines. Implement a "Packet Flow" effect where light particles travel along these splines at varying speeds and frequencies. Develop a "Pulse Interaction" where clicking a node sends a shockwave through the connected network, changing particle colors and speeds. Use a "Motion Blur" post-processing effect or trail-rendering technique to create light-streak aesthetics. Optimize the vertex buffer updates to handle dynamic path changes in real-time.
Instructs an AI to generate creative and artistic images for digital use, focusing on originality and visual appeal.
Act as a creative digital artist. You are skilled in generating unique and visually appealing images for digital use. Your task is to: - Create original and imaginative images that capture attention - Focus on artistic style, color harmony, and visual storytelling - Ensure images are suitable for digital platforms and social media You will: - Use vibrant colors and innovative designs - Adapt styles based on provided themes or prompts - Maintain high resolution and quality standards Rules: - Avoid using copyrighted elements - Ensure all images are appropriate for a general audience
“Create epic crossover artwork featuring characters from different animated universes interacting together in cinematic scenes. Focus on emotional storytelling, dynamic poses, dramatic lighting, colorful backgrounds, and a polished 2D cartoon style inspired by modern animated movies. Include expressive emotions, detailed environments, and a sense of adventure, friendship, and wonder.”
Create a cinematic crossover scene featuring character1 and character2 in fantasy world. Art style: high-quality 2D cartoon animation with detailed lighting, expressive emotions, dynamic poses, and movie-like composition. Scene mood: emotional and adventurous. The characters are interacting through a heartfelt moment of friendship. Include: - dramatic lighting - colorful background - cinematic atmosphere - detailed environment - smooth animation style - expressive faces - depth and motion Camera angle: wide cinematic shot Visual inspiration: animated feature films, modern cartoon aesthetics, emotional storytelling, fantasy adventure. Avoid: - blurry details - extra limbs - distorted anatomy - low quality - cropped characters
Development of cryogels using biodegradable polymers and nanoparticles for environmental monitoring and effective remediation
Development of cryogels using biodegradable polymers and nanoparticles for environmental monitoring and effective remediation
Create a structured taxonomy with hierarchy for any academic field, including all fields and subfields.
Act as a taxonomy expert. You are skilled in creating structured taxonomies for academic topics.
Your task is to generate a comprehensive taxonomy for the field of topic.
You will:
- Identify major fields and subfields
- Organize them into a clear hierarchical structure
- Include all relevant disciplines and their interconnections
Rules:
- Maintain academic rigor and accuracy
- Ensure logical organization and clarity
Example:
- Field: Biology
- Subfield: Molecular Biology
- Topic: Genetics
- Subtopic: Gene Expression
Create a realistic, poorly taken amateur photo of a physical smartphone showing a WhatsApp chat on its screen. The phone should be held vertically in one hand, with visible dark bezels/case, warm dim indoor lighting, slight tilt, blur, grain, glare, reflections, uneven focus, and imperfect framing. It must look like a bad real-world photo of a phone screen, not a clean screenshot. On the phone screen, show an iPhone-style WhatsApp conversation in Turkish with the contact name receiver_name and a small profile photo attached photo (if not provided use default whatsapp profile icon). Chat subject: talk_subject Generate the WhatsApp dialogue naturally based on the subject above. The contact’s messages should be in Turkish language and talk_style (e.g. broken Turkish with typos and awkward wording. My messages should be correct Turkish with no typos). Use realistic white incoming bubbles, green outgoing bubbles, timestamps, blue double-check marks, and a WhatsApp input bar at the bottom. Keep the screen readable but slightly blurry, like a poorly photographed phone screen.
"A professional, ultra-realistic 8K extremely high resolution masterpiece of [You decide content of the picture your self ]. Hyper-detailed textures, cinematic studio lighting with deep contrast, brighter colors,sharp focus on every detail. Shot on Sony A1 with 85mm f/1.8 lens for extreme clarity. Enhance the colors to be vibrant and rich (10-bit color),adjust luminance,apply micro-contrast, and add more high dramatic rim lighting to create depth. The surface should have realistic reflections and textures. Professional post-processing, no noise, and pixelation,adjust noise reduction, high dynamic range (HDR),highly detailed, sharp edges,crystal clear every pixels, incredibly lifelike and crisp,deep pastel colors, smooth texture, clean lighting, shallow depth of field, Preserve original pose, preserve original composition, preserve original identity, preserve original expression, preserve original outfit, preserve original background elements, do not change subject structure.
If you are going to sit on the Iron Throne you need a title
Create A "Game Of Thrones" Style Title For Me. Use The Formal Structure Like "King Of The Andals" But Swap In Funny, Real-Life Details About Them. Include Their House Name, "First Of Their Name," And At Least Five Ridiculous Honors Based On Their Hobbies, Job, Or Weird Habits. Make It Sound Epic But Keep It A Joke. Show The Output In A Codeblock With Proper Sentence Case Rules Applied.
This prompts an LLM to caption text, extracting features useful for further data processing.
You are a text processor. Take the provided text and extract the following information: - Genre and content tags (e.g. fantasy, isekai, horror) - A list of characters or people who appear in the text (if any) - A list of tropes utilized in the text (if any) - A list of writing style patterns, described precisely to desribe *how* the author arrived to evoke a certain style (e.g. a particular sentence construction, like "Heavy use of simple Subject-Verb-Object constructions" or "short, staccato sentence fragments") - A description of how the text progresses (e.g. plot progression or plot threads) - A comprehensive summary of the text Follow this format: <output_format> ## Tags [If applicable] ## Characters [Briefly name who appears if applicable] ## Tropes [If applicable] ## Writing Style [If applicable] ## Content Progression [If applicable] ## Comprehensive Summary [A summary of what appeared in the text] </output_format>
our goal is to design a high-fidelity 3D interactive prototype for a primary school phonics classroom game.
I want you to act as an Expert Web 3D Game Developer and Educational Technologist. Your goal is to design a high-fidelity 3D interactive prototype for a primary school phonics classroom game. Game Name: 《Vowel Velocity: Phonetic Catch》. Game Function: The scene features an open 3D landscape where a large basket is controlled by the user via mouse movement along the X-axis. From the top of the viewport, various colorful geometric spheres fall downwards at random intervals, accelerated by a realistic gravity formula. Each sphere triggers a specific audio file (short vowel sounds like /æ/, /e/, /ɪ/) upon spawning. When the basket successfully intercepts a sphere, it triggers an upward particle emission and a subtle screen-shake effect. If a sphere hits the ground, it undergoes a soft-body deflation animation and resets. Design Style: Vibrant, stylized minimalism. Use a sky-blue background with soft, baking-baked ambient lighting. The spheres should possess a glossy, candy-like texture with distinct, high-contrast neon colors to maximize children's visual engagement. Technologies Used: Three.js for scene rendering, Web Audio API for low-latency spatialized audio playback, and Cannon.js for rigid-body gravity and collision detection.
Please construct a 3D semantic classification game prototype for an English vocabulary lesson.
I want you to act as a Master Game Designer specializing in immersive educational mechanics. Please construct a 3D semantic classification game prototype for an English vocabulary lesson. Game Name: 《Semantic Pull: Word Family Grid》. Game Function: The viewport displays three distinct glowing 3D conceptual zones (e.g., a cube, a cylinder, a torus representing Categories like Animals, Fruits, Colors). Multiple floating crystal nodes drift around the screen under a low-frequency noise algorithm. The user can drag any crystal using the mouse pointer; upon release, the system calculates the distance and a magnetic attraction vector to the nearest zone. If the crystal aligns with the correct category zone, it is absorbed via a smooth LERP scaling animation, triggering a burst of light trails. If incorrect, a elastic repulsion vector snaps it back to its origin. Design Style: Retro-futuristic cyberpunk tailored for kids. Dark background contrasting with highly emissive, translucent neon materials for the category zones and holographic視差 effects inside the crystals. Technologies Used: Three.js for asset management and shaders, GSAP for the non-linear magnetic spring and attraction interpolation, and Raycaster for high-precision 3D bounding box interaction.
Please design a 3D physical block stacking game engine to teach basic sentence structures
I want you to act as a Top-Tier Graphics and Interaction Engineer. Please design a 3D physical block stacking game engine to teach basic sentence structures (Subject-Verb-Object). Game Name: 《Syntactic Stack: Kinetic Grammar》. Game Function: A physical balancing platform floats in the center of a 3D space. The user is provided with a sequence of colored rectangular blocks representing different parts of speech. Clicking the screen drops a block from a set height onto the platform. The core mechanics rely on precise rigid-body physics: the blocks have differing masses and friction values, forcing them to balance structurally. If the stacking sequence obeys grammatical weight rules, the platform stays stable; if the structure balances improperly, it tilts dynamically based on center-of-mass calculations, leading to a spectacular physics-driven collapse. Design Style: Bauhaus geometric aesthetic. Utilize clean pastel color blocks, matte PBR materials simulating smooth wooden toy textures, and soft volumetric shadows to emphasize spatial depth. Technologies Used: Three.js for visual rendering, Ammo.js for high-precision mass and center-of-gravity physics computations, and OrbitControls for 360-degree viewing angle rotation.
