News
12d
Interesting Engineering on MSNPrinceton invents shape-shifting robot that moves, molds, morphs with magnetic powerDrawing inspiration from the folding art of origami, Princeton University engineers created a structure that blurs the lines ...
The invention is a metamaterial, which is a material engineered to feature new and unusual properties that depend on the ...
12d
Tech Xplore on MSNMagnetic 'metabot' can expand, assume new shapes, and move like a robot—but without motor or internal gearsIn an experiment reminiscent of the "Transformers" movie franchise, engineers at Princeton University have created a type of ...
To tattoo a tardigrade, Zhao and his colleagues adapted a nanofabrication technique called ice lithography. This is a form of ...
Tsinghua scientists 3D print multifunctional magnetic soft robots - opening doors to advanced biomedical and robotic ...
Furthermore, a soft robot with a hard magnetic material-superparamagnetic ... However, traditional processes like mold-assisted forming and UV lithography are restricted by mold shapes and ...
One of the most complex parts of this process is lithography: the step in which shapes are drawn onto a silicon wafer. There are several ways to do this, all of them rather complicated ...
11d
ExtremeTech on MSNMIT's Laser-Printed 'Metamaterial' Is Both Stretchy and StrongThe material could someday be used in flexible semiconductors, tear-resistant textiles, bioengineering scaffolds, and more.
In a research paper, scientists from the Tsinghua University proposed a novel enhanced Digital Light Processing (DLP) 3D printing technology, capable ...
Extreme ultraviolet (EUV) lithography is the next step in this trend. It uses radiation of wavelength 13.5 nm, thereby offering significant potential to extend the resolution of photolithography ...
Extreme-ultraviolet (EUV) lithography at 13.5 nm is expected to be introduced in high-volume semiconductor chip production over the next three years. Research is now underway to investigate sub-10 ...
Results that may be inaccessible to you are currently showing.
Hide inaccessible results