Life begins with a single fertilized cell that gradually transforms into a multicellular organism. This process requires ...
Tessellations aren’t just eye-catching patterns—they can be used to crack complex mathematical problems. By repeatedly ...
At the intersection of mathematics and nature, scientists have found intriguing and often beautiful designs. Pinecone scales ...
Inspired by biological systems, materials scientists have long sought to harness self-assembly to build nanomaterials. The ...
Researchers uncover the mathematical structure behind mesmerizing tiling patterns, linking their visual appeal to the ...
The curved shape of a zebrafish egg causes unequal cell divisions, creating larger cells near the animal pole and smaller ...
Researchers uncover geometric principles governing how particles self-assemble, solving a long-standing challenge in ...
A new study reveals how biological branching networks use surface geometry to shape blood vessels, brains, and plants.
Life begins with a single fertilized cell that gradually transforms into a multicellular organism. This process requires precise coordination; otherwise, the embryo could develop serious complications ...
Hitem3D 2.0 adds a portrait mode described as “ strand-level fidelity ,” aiming to reconstruct head shape and facial ...
Dr Baek Jin Eon, 31, a research fellow at the Korea Institute for Advanced Study, has demonstrated that no shape larger than ...