Materials research generates vast amounts of data, but the information often exists in manufacturer-specific formats and the terminology is inconsistent, making it difficult to aggregate, compare, and ...
For years, scientists noticed that magnetic fields could improve steel, but no one knew exactly why. New simulations reveal that magnetism changes how iron atoms behave, making it harder for carbon ...
Overview: AI is transforming materials science by dramatically reducing the time needed to discover and test new ...
For a long time, material development has focused on enhancing performance and reducing costs. Efforts have been directed toward making products lighter, tougher, better insulated, more beautiful, ...
Scientists are learning how to temporarily reshape materials by nudging their internal quantum rhythms instead of blasting ...
An introductory course focused on the new and existing materials that are crucial for mitigating worldwide anthropogenic CO2 emissions and associated greenhouse gases. Emphasis will be placed on how ...
Recognition as a top packing materials manufacturer is generally the result of sustained performance rather than short-term ...
The integration of self-driving laboratories and advanced automation software is revolutionising the fields of chemistry and materials science. By harnessing the power of robotics, artificial ...
Clinical expectations in minimally invasive interventions is rising, making collaboration in the medical value chain ...
Graphene has long been hailed as a "wonder material." It is incredibly strong, highly conductive and almost impossibly ...
Some results have been hidden because they may be inaccessible to you
Show inaccessible results