![]() Rare and ancient artifacts that are housed in restricted locations can be held and examined closely, and cities and buildings that no longer exist can be explored to provide a deeper understanding of the real-life experience of them. 3D models of equipment can be exploded to show their constituents parts and the relationship of those parts to one another, deepening understanding of complex machinery.Ībstract concepts presented in 3D can greatly aid education for example, calculus equations can be modified by changing the variables, and the 3D graph on which they are presented can be rotated and viewed from multiple angles, engaging our natural senses in grasping what the equation represents. ![]() This is the case, for example, in the automotive industry, where engineers can conduct design reviews and make changes on the spot, or in architecture, where clients can be invited into a virtual structure before it has been built to approve the plans. Sometimes interacting with 3D models even surpasses what can be done in the real world, as the digital nature of objects permits real time adaptation and modification of them without the investment of costly resources. The ability to interact with and collaboratively work on 3D models in a virtual space expands the ways we understand them and enables shared experiences that may be a near substitute for working together on real physical objects in person.
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