In a paper published in the journal Small, a team of physicists from IISER Pune have developed tiny electronic devices from a special semiconductor material called bismuth oxyselenide (Bi2O2Se). This ...
Experiments reveal that unsaturated lipid membranes promote vesicle fusion and DNA retention during freeze–thaw cycles, highlighting icy environments as potential drivers of protocell evolution. Today ...
Borosilicate glass offers extreme stability; Microsoft’s accelerated aging experiments suggest the data would be stable for ...
At the rack level, AI training clusters are now so dense that the thermal ceiling, not compute power, is what limits ...
Alloy engineering marked a pivotal shift in steel development, allowing the tuning of material properties to enhance performance across various technological fields.
Wang, J. , Li, G. , Song, X. , Wang, P. , Wang, S. and Luo, D. (2026) The Effect of Cold Rolling Process on Microstructure Evolution and Performance of Thin-Walled Titanium Alloy Tubes. World Journal ...
Fast Thermal Cycling and Process Efficiency Shape Demand The global market for kiln furniture and heat-resistant components is being reshaped by several long-term industry trends. Among them, the need ...
Compare popular steel alloys used in modern engineering. Learn where A36, 4140, 304 stainless, A572 Grade 50, and 2205 duplex perform best.
Film, foil blister and lidding products manufacturer ACG Packaging Materials has launched its cold-form blister technology, SuperPod. SuperPod enables blister cavities to become smaller – by up to 39% ...
Abu Dhabi, UAE: A research team, led by Professor of Chemistry at NYU Abu Dhabi Panče Naumov, in collaboration with a research team led by Professor Hongyu Zhang at Jilin University, China, has ...
ACG Packaging Materials has revealed SuperPod, its cold-form blister technology believed to downsize blister cavities by up to 39% and use less material per pack. Set to be showcased at Pharmapack ...
Graphene has long been hailed as a "wonder material." It is incredibly strong, highly conductive and almost impossibly thin—just one atom thick. These properties make it a promising candidate for next ...
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