# Die daoistische Unsterbliche He Xiangu auf separatem Sockel
**Wikidata**: [Q120422774](https://www.wikidata.org/wiki/Q120422774)  
**Source**: https://4ort.xyz/entity/die-daoistische-unsterbliche-he-xiangu-auf-separatem-sockel

## Summary
"Die daoistische Unsterbliche He Xiangu auf separatem Sockel" (The Daoist Immortal He Xiangu on a Separate Base) is a 3D computer graphics representation of a Daoist religious artwork originating from 1700 in the Republic of China. The digital model is held in the collection of the Thuringian State and University Library and is cataloged online in German.

## Key Facts
- **Instance Type**: 3D computer graphics (digital representation of three-dimensional geometric data)
- **Inception Date**: 1700
- **Geographic Origin**: Republic of China
- **Collection**: Thuringian State and University Library
- **Catalog Reference**: Described at URL https://gotha.digital/item/dig cult_mods_00281801 (German language)
- **Subject**: He Xiangu, a Daoist immortal figure, depicted on a separate base
- **Related Class**: 3D computer graphics — a subclass of computer graphics with 55 sitelinks across Wikimedia projects

## FAQs

### Q: What is He Xiangu and why is this figure significant?
He Xiangu is one of the Daoist immortals, a figure venerated in Chinese religious and philosophical traditions. This particular representation depicts her on a separate base, suggesting it is a sculptural or figurine work.

### Q: Where can this digital model be accessed?
The 3D representation is documented and accessible through the Thuringian State and University Library's digital collection at gotha.digital, with the item identifier digicult_mods_00281801.

### Q: What is 3D computer graphics as it relates to this entity?
3D computer graphics refers to digital representations that use three-dimensional geometric data to create images. This technology enables the visualization and preservation of cultural artifacts in digital form.

## Why It Matters
This entity represents the intersection of traditional Chinese religious art and modern digital preservation technology. As a 3D computer graphics representation of an artwork from 1700, it demonstrates how cultural heritage institutions like the Thuringian State and University Library are using advanced imaging technologies to document, preserve, and provide access to historical artifacts. The digitization of such works allows for broader scholarly access and study without risking damage to the original physical object.

## Notable For
- Being a digital 3D representation of a historical artwork from 1700
- Documenting a figure from Daoist religious tradition (He Xiangu)
- Integration into a major German academic library collection
- Availability through a dedicated digital cultural heritage portal (gotha.digital)

## Body

### Subject Matter
The work depicts He Xiangu, a figure from Daoist tradition recognized as one of the immortals in Chinese religious practice. The German title "auf separatem Sockel" indicates the figure is presented on a separate base, suggesting a sculptural format. The original physical work dates to 1700 and originates from the Republic of China.

### Digital Representation
The entity is classified as an instance of 3D computer graphics, a technology that uses three-dimensional representations of geometric data to create visual content. This classification indicates the work has been digitized using techniques that capture its three-dimensional form, allowing for detailed visualization and study.

### Collection and Access
The digital model is maintained within the collection of the Thuringian State and University Library, a major academic library in Germany. The item is cataloged and accessible through the library's digital portal at https://gotha.digital/item/digicult_mods_00281801, with metadata provided in German.

### Technical Context
As 3D computer graphics, this representation belongs to a broader category of digital imaging technology that enables the creation and display of three-dimensional content. The field of 3D computer graphics encompasses various techniques including freeform surface modelling and particle systems, and is widely used across industries from gaming to medical imaging. The technology was first developed in connection with holograms in 1962 and continues to evolve as a fundamental tool for digital visualization.