Nitrous Oxide N2O Molecule 3D Model – Low Poly PBR Asset, FBX, OBJ
Other

Nitrous Oxide N2O Molecule 3D Model – Low Poly PBR Asset, FBX, OBJ

$7.2

File Formats

Native Format

.blend
Cycles | 2.8 • 2.21 MB

Exchange Formats

.obj.autodesk fbx.gltf.textures.alembic.stereolithography.cinema 4d.collada

Features

File & scene

Binary FBX No unsupported objects

Geometry

No N-gons No faceted geometry Manifold geometry Polygon mesh

Textures & material

PBR textures No embed textures Square textures Power of 2 texture sizes Assigned materials

UVs & naming

No UV overlaps UV unwrapped model Allowed characters

3D Features

Low-poly Textures Materials UV Mapping Plugins Used

Unwrapped UVs

Mixed

Download information

After purchase, you will receive an email within several hours with a download link to access your files.

Description

Introducing the Nitrous Oxide N2O Molecule 3D Model, a meticulously crafted low-poly asset perfect for scientific visualizations and educational purposes.

This model is designed using Blender 2.8, featuring a polygon mesh with a total of 7,324 vertices and 7,368 polygons. The low-poly style ensures optimal performance while maintaining a detailed appearance, making it an excellent choice for games, animations, or scientific simulations.

  • Formats included: Blender, FBX, OBJ, C4D, DAE
  • Geometry: Manifold, no N-gons or faceted geometry
  • Features PBR textures with no embedded textures and square texture sizes
  • Unwrapped UVs with no overlaps
  • Assigned materials for easy integration

This 3D model is ideal for developers, animators, and educators looking to enhance their projects with accurate representations of molecular structures. Whether you're creating a chemistry simulation, educational content, or a visually appealing game asset, this model serves as a reliable resource.

Ready to download and integrate into your projects, this Nitrous Oxide N2O Molecule 3D Model awaits your creative touch. Get it now!

Tags

atombiologychemistrychromosomemedicalmolecularotheroxidesciencescientific