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DCC Bridge
Anonymous1770791288
02-11 06:49
Model Name
chemistry lab bench 3d model
Tags
furniture
simulation
realistic
Prompt
Create a highly detailed, realistic 3D model of a complete chemistry laboratory environment optimized for AR/VR immersion on devices like Oculus Quest, Apple Vision Pro, or HoloLens. The scene should be modular, with all essential lab models as separate, interactable assets that can be manipulated in virtual space (e.g., scalable, rotatable, with physics-enabled interactions where possible). Use photorealistic textures, accurate proportions based on standard lab dimensions (e.g., lab benches at 90cm height), and high-poly counts for smooth rendering in VR without performance issues. Include dynamic lighting with adjustable lab lights (fluorescent overheads, task lamps) and shadows for realism. Key components to model individually and integrate into the scene: Lab layout: A spacious rectangular room (10m x 8m x 3m) with white tiled floors, epoxy-resin countertops, stainless steel sinks with eyewash stations, emergency showers, and wall-mounted cabinets for storage. Include multiple lab islands with black granite benches arranged in rows for group work. Workstations: Central lab tables with gas outlets, electrical sockets, and built-in fume hoods (transparent glass enclosures with adjustable sashes and exhaust fans). Glassware: Assortment of borosilicate glass items including beakers (various sizes: 50ml to 1000ml), Erlenmeyer flasks, volumetric flasks, test tubes in racks, pipettes (graduated and volumetric), burettes, funnels, and graduated cylinders. Include stands and clamps for holding them. Equipment: Bunsen burners with gas hoses, hot plates, magnetic stirrers, analytical balances (digital scales), pH meters, centrifuges, microscopes (compound and stereo), spectrophotometers, autoclaves, and incubators. Add a chemical storage refrigerator and freezer. Chemicals and reagents: Labeled bottles of common substances (e.g., acids like HCl, bases like NaOH, solvents like ethanol) in safety cabinets with hazard symbols (flammable, corrosive). Include spill kits and waste disposal bins (sharps, chemical, biohazard). Safety gear: Wall-mounted first-aid kits, fire extinguishers (CO2 and ABC types), safety goggles, lab coats on hooks, gloves (nitrile and latex), face shields, and emergency exit signs. Additional details: Whiteboards or chalkboards on walls, lab stools (adjustable height), computer stations with monitors for data analysis, ventilation systems with ducts, and windows with blinds for natural light simulation. Add subtle wear and tear for realism (e.g., minor stains on benches, organized clutter). Ensure the models are exportable in formats like GLTF/GLB or USDZ for easy integration into AR/VR apps. Optimize for low-latency rendering: under 1 million polygons total, with LOD (level of detail) variants. Make the scene interactive-ready, such as animatable elements (e.g., opening cabinet doors, pouring liquids in beakers with particle effects). Focus on educational accuracy, referencing standard high school/university chemistry lab designs from sources like OSHA guidelines.
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