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Exact(17)
Usually inorganic materials have higher dielectric constants than organic materials.
Nano materials have higher reactivity, larger surface contact and better disposal capability.
The physical reason is that high-Z materials have higher temperature at a given internal energy than low-Z materials.
However, some materials have higher concentrations of 238U and 226Ra such as alum shale and black shale.
Most authors have reported that nanocrystalline materials have higher yield stresses, and their grains are closer to a spherical shape [13, 30 33].
Since most brittle materials have higher compressive strength than tensile strength, fragmentation of brittle minerals through the development of tensile stresses within the minerals is more economical.
Similar(43)
All the materials have high thermal stability of up to 773 K.
The materials have high triplet energy levels of 2.68, 2.60 and 2.45 eV, respectively.
Carbonaceous materials have high stability but low volumetric capacity mainly due to their large initial irreversible capacity.
Characterization showed that the materials have high molecular and compositional homogeneity.
The real sample adsorption experiments demonstrated that these mesoporous organosilica materials have high potential for water treatment applications.
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