KOKA Signature Laksa Singapura Noodles Open Bowl(1)
KOKA Signature Laksa Singapura Noodles Open Bowl(1) is one of the Containers & Storage models in the 3D Molier catalog, listed at $34. The mesh carries 74,380 polygons and 72,630 vertices. The count is honest; whether it is heavy is a decision only your target platform can make.
Geometry is modelled to real-world proportions with a tidy edge flow, which keeps it usable both as a background element and in closer shots. Pivot points sit where you would expect them, which matters as soon as the model needs to be instanced or parented to something else. Buyers most often take it for technical visualization, architectural visualization and film & TV VFX.
Published in 2022, it has stayed in the range while a lot of other listings came and went. It works as warehouse and logistics set dressing, a game prop, or a product-rendering element.
Questions About This Model
Can the KOKA Signature Laksa Singapura Noodles Open Bowl(1) model be used in a commercial project?
Yes - the Royalty Free license covers commercial work, including client projects and released games, with no additional royalties per render or per copy sold.
Does the KOKA Signature Laksa Singapura Noodles Open Bowl(1) model include materials and textures?
Material and texture contents are listed per file on the TurboSquid product page. Where textures are included they are packaged with the download rather than linked externally.
What file formats does the KOKA Signature Laksa Singapura Noodles Open Bowl(1) 3D model come in?
The complete list of included formats is shown on the TurboSquid product page, where every file is named and sized before you buy. Native scene files and the common interchange formats are the usual pairing.
What is the KOKA Signature Laksa Singapura Noodles Open Bowl(1) model typically used for?
The listing names technical visualization, architectural visualization and film & TV VFX as the main applications. In practice it also works anywhere a finished containers & storage object is needed without modeling it from scratch.