DESCRIPTION

Low-poly 3D model of Maqam Echahid, an iconic monument, perfect for game development, architectural visualization, and VR/AR projects. This model is highly optimized for performance, featuring detailed textures and efficient geometry with only 886 triangles.

Low Poly: Just 886 triangles, designed for performance optimization.Maps: Includes 1 atlas, 3 materials, and 6 high-quality textures.Textures: 2048x2048 resolution in PNG and JPG formats for versatile use.File Formats: Provided in FBX, OBJ, and STL formats for compatibility with various platforms.UV Mapped: All materials and textures are UV mapped for precise detailing.Prefab: Includes a Unity-ready prefab for easy implementation.This model is game-ready and optimized for both mobile and desktop platforms, making it suitable for a wide range of applications including simulations, games, and virtual enviro

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Maqam Echadid - Algeria 3D model

Royalty Free License
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File formats
STL
Stereolithography<br />File Size: 115 KB
OBJ
OBJ | 2 files<br />File Size: 194 KB
FBX
Autodesk FBX<br />File Size: 108 KB
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3D Features
The model includes animations (movement or actions) that can be played in supported software or engines.
The model has a skeleton or bone structure, making it ready for posing or animation.
PBR
Uses Physically Based Rendering materials, which give the model realistic lighting and surface properties.
Textures
The model includes image files (textures) that add color, patterns, or detail to its surfaces.
Materials
The model has material settings that define how surfaces look (color, shine, transparency, etc.).
UV Mapping
The model's surfaces are mapped to a 2D image, allowing textures to display correctly.
Plugins Used
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3D printing
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Model is not 3D printable
The designer indicates this model is intended for digital use only (rendering, animation, or AR/VR) and not for 3D printing.
Geometry
886 polygons
The total number of polygons (flat shapes) that make up the 3D model.
/ 886 vertices
The number of points (corners) that define the shape of the model's polygons.
Unwrapped UVs
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