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Today's Nobel trio showed that electrical properties of a large class of materials can be understood by mapping real physical quantities (say, the interactions of electrons) into an abstract mathematical (or topological) space.
To find proper combinations of materials, one needs to probe a large class of materials combinations and layer sizes.
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The proposed approach is not limited to the statistical idea and can, in principle, be used to derive the Paris behaviour in a larger class of materials.
The problem is one of a larger class of materials related simulation challenges in which one needs to couple calculations spanning about 10 orders of magnitude in length and time scale in order to produce macroscopic predictions.
"The ingenuity of Kosterlitz, Thouless and Haldane has been to show how a large class of real materials - particularly films and chains of atoms - can be understood in terms of the simple mathematical principles of topology - that is how the atoms are connected: a doughnut and a teacup have the same topology as they each have a hole in them.
Soft condensed matter (SCM) physics has recently gained importance for a large class of engineering materials.
Specifically, we have developed an object-oriented based simulator that possesses the required flexibility to model a large class of composite materials processing operations.
In the first part of this work, it has been shown that by using the simplified formulation, it is possible to develop a linear least square approach to the residual stress identification problem capable of treating a large class of orthotropic materials.
As a large class of highly crystalline hybrid materials, metal-organic frameworks (MOFs) have the potentials to act as electrochemical sensors due to their active metal sites and diverse structures.
It is expected that this work can encourage the designing and experimental implementation of a large class of strong magneto-electric multiferroic materials with large magnetization and electric polarization above room temperature.
While the tetragonal alloys exhibit features attractive for STT applications (high TC, strong PMA, high spin polarization, low MS), the cubic systems represent a large class of 100% spin polarized half-metallic Heusler materials that robustly follow the Slater Pauling rule similar to the Co2YZ compounds.
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