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Research from the University of Minnesota Twin Cities gives new insight into a material that could make computer memory ...
New alloy Ni₄W enables field-free magnetization, promising faster, energy-efficient memory tech for AI, electronics, and HPC systems.
Synthetic antiferromagnets are carefully engineered magnetic materials made up of alternating ferromagnetic layers with ...
Scientists identify the complex interplay of promoting and resisting factors that occurs between microscopic magnetic domains ...
Transformer magnetization characteristics can change from their original conditions with the aging of the transformer, and hence, the actual characteristics may deviate from the manufacturers' data.
Magnetic hysteresis loss (iron loss) is an important magnetic property that determines the efficiency of electric motors and ...
Determination of normal magnetization curve is a well known problem, solved and described in many papers. But none of the normal magnetization curve measurements were performed applying current ...
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Researchers boost semiconductors with magnetic atoms to create more than 20 new materials
A new method for combining magnetic elements with semiconductors—which are vital materials for computers and other electronic ...
Researchers at the University of Minnesota Twin Cities have made a promising breakthrough in memory technology by using a nickel-tungsten alloy called Ni₄W. This material shows powerful magnetic ...
Scientists utilized principal component analysis to extract essential features from the persistent homology concept.
A team of researchers at the University of Minnesota has unveiled a powerful new alloy, Ni4W, that could radically reshape how electronic devices store and process information. This metal can switch m ...
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