In a significant collaboration, high-quality powder diffraction data is being collected, enhancing the understanding of APIs ...
The nonrepeating Smith hat tile created twisting, pinwheel-like light patterns that ordinary quasicrystals do not produce.
Researchers at the George W. Woodruff School of Mechanical Engineering have developed a new approach to nanoscale 3D printing ...
Researchers have developed a new approach to nanoscale 3D printing that improves both speed and fidelity, overcoming a ...
Aperiodic Einstein tile nanostructure produces chiral diffraction pattern under laser light, reported in Nature ...
Researchers in the lab of Sam Peng , the Pfizer Inc. - Gerald Laubach Career Development Assistant Professor of Chemistry at ...
Researchers have found that an aperiodic structure based on ‘Smith hat’ showed different diffraction behaviors from those ...
A shape that captured worldwide attention for solving a decades-old mathematical puzzle has returned to the spotlight. While ...
The “hat” tile is a mathematical wonder. Discovered by amateur mathematician David Smith in 2022, it can be used to cover every square inch of an endless bathroom floor (or any other surface) ...
Researchers at KAIST have developed a new holographic telepresence framework that captures and replays the physical light ...
A research group led by Assistant Professor Takafumi Tomita and Professor Kenji Ohmori at the Institute for Molecular Science, National Institutes of Natural Sciences, has developed a new microscopy ...
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