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New 3D device harnesses living brain cells for computing
Princeton researchers have combined brain cells and advanced electronics into a single 3D device that can be programmed to recognize patterns using computational techniques. Past attempts at using ...
Radiation patterns for antennas can be utterly confusing, especially when presented in two dimensions, as they usually are. Fear not, [Hunter] has your back with 3D printed and color-coded radiation ...
Researchers have created a 3D programmable device merging living neurons with flexible electronics, achieving high-efficiency pattern recognition.
Barredo and team report their use of precision optical-engineering methods to sort atoms into arbitrary 3D patterns. Barredo et al. extend their previously reported method for 2D atom sorting to three ...
(Nanowerk News) The fabrication of three-dimensional (3D) polymer structures with controlled composition, physical properties and morphology is important for a number of applications. In tissue ...
As impressive as the 3D printing process is, it can also be a bit time consuming. You are creating something out of nothing after all, and your printer needs to dispense and layer every square inch of ...
For decades researchers have been exploring how to store data in glass because of its potential to hold information for a long time — eons — without applying power. A special type of glass that ...
People can now download, share and edit files for use in 3D printers from a new government website. The site has files that can be used to create models of anything from a human brain to deadly ...
The eutectic structure of metals and ceramics occurs when multiple solid phases solidify from a liquid phase, forming a three-dimensional (3D) pattern through a self-organizing phenomenon.
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