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Multi-year high-temperature stability of the poled guest host and side-chain materials was predicted.
The surface deformation for different backfill materials was predicted by an equivalent mining height model and numerical simulations.
Assuming an hypothesis about blend morphology, the mechanical behaviour of the materials was predicted from various models involving the percolation concept.
With these data and other derived micromechanical parameters, the stress-strain and failure point of these materials was predicted using existing models, and excellent agreement with the experiments was obtained.
The effective diffusion coefficient of MPL-coated GDL materials was predicted from 3D images in a pore network modeling environment without resolving the nano-scale structure of the MPL.
Similar(55)
Hierarchical cellular materials are predicted to have superior energy absorption capability.
These two-dimensional materials are predicted to exhibit a wide range of behavior, etc.
Hence, M (P, As or Sb) codoped CuGaS2 materials are predicted as promising candidates in photovoltaic applications.
The relative water vapor corrosion resistance of these materials is predicted by comparing the values of Mulliken population.
Furthermore, composites consisting of insulating materials containing dispersed phase change materials are predicted to exhibit an order of magnitude increase in their characteristic response time.
These novel materials are predicted to demonstrate the promising hole/electron mobility values which are typical for the ambipolar organic semiconductors.
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materials was achieved
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