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It is shown that liquid hydrogen is not the best shielding material for the same mass as polyethylene for missions that last longer than 225 days.
Hirono et al. (2009) examined other temperature proxies (i.e., fluid-mobile trace elements, strontium isotopes, magnetic minerals, inorganic carbon content, and Raman spectra of carbonaceous material) for the same gouge in the megasplay fault zone.
Comparison of S N curves generated under both zero-tension and fully reversed cyclic loading has determined that the fatigue resistance of the lattice is substantially poorer than that of the constituent Ti 6Al 4V material for the same remote applied (macroscopic) stress.
In tissue engineering, one often uses biomaterial scaffolds or matrices, here using the word scaffold to refer to a macro- or microporous material used to provide a structural support and the word matrix to refer to a nanoporous continuous material for the same purpose.
For thermomechanical fatigue, standard tests usually allow comparing material for the same temperature and strain ranges although differences in thermal properties such as conductivity or thermal expansion could make significant deviations when the same thermal flux is applied particularly for structure with forced heat flux operating regimes.
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There was no significant difference in porosity, pore size, and interconnectivity among the different materials for the same porogen fraction.
Usually the increase of strength or modulus is similar for all tested materials for the same curing periods.
This technological shift will require not only changes in concrete raw materials and mix designs, but also new building techniques, using less materials for the same final structure.
Of the four lattice types investigated, Kagome structures perform best and also show superior strength compared to traditional core materials for the same density, while their energy absorption capacity is competitive with titanium and aluminium honeycomb materials.
Training materials for the same course duration differed between countries.
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