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The composition ratio for B4C/Al composite was firstly designed and the dependence of the neutron transmission on the thickness of the material was calculated.
The potential for transformation strain in single crystals of this material was calculated to be superior to binary NiTi in tension, compression, and torsion loading modes.
For the purpose of this paper, the safety factor on material was calculated to be 1.43.
The band gap (~3.44 eV) of the material was calculated from the optical absorption spectroscopy.
Interplanar spacing (d) in the crystalline material was calculated via Bragg's equation (nλ = 2d hkl sinθ).
The elastic modulus for each specimen, corresponding to the elastic deformation of the material, was calculated from the linear portion of the "tension-deformation" curve.
Similar(32)
Transmission, reflection and absorption coefficients of the material are calculated.
Given the heat flux, and measured temperature gradient in the material, the thermal conductivity of each material is calculated by the Fourier equation.
The CSP (F g−1) of PS-FLG-based electrode material were calculated at various current densities from 0.5 A g−1 to 50 A g−1 (Fig. 5d).
In the normal operation conditions, atmospheric dispersion of radioactive material is calculated using CAP88-PC code.
The depth of traps in this hydrothermal obtained material is calculated to be as shallow as 0.58 eV.
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