Russian Journal of Inorganic Chemistry, Tập 45British Library Lending Division with the cooperation of the Royal Society of Chemistry, 2000 |
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Kết quả 1-3 trong 58
Trang S-106
... topological properties of P3 without regard to specific features of p ( x , y , z ) , these properties are more conveniently examined in M3 . Hereafter , we ignore the peculiarities of p ( x , y , z ) in P3 , unless otherwise specified ...
... topological properties of P3 without regard to specific features of p ( x , y , z ) , these properties are more conveniently examined in M3 . Hereafter , we ignore the peculiarities of p ( x , y , z ) in P3 , unless otherwise specified ...
Trang S-112
... Topological characteristics of atomic sublattices in the structures. I II Fig . 4. Contraction of graph fragment I to fragment II . The contracted vertex is marked . Let us consider , as an example , the topological properties of the ...
... Topological characteristics of atomic sublattices in the structures. I II Fig . 4. Contraction of graph fragment I to fragment II . The contracted vertex is marked . Let us consider , as an example , the topological properties of the ...
Trang S-117
... topological type , since the NaNO3 structure has to be modified before comparison . In terms of the above scheme of crystal - chemical classification , the following three levels of topological similarity of two groups of compounds can ...
... topological type , since the NaNO3 structure has to be modified before comparison . In terms of the above scheme of crystal - chemical classification , the following three levels of topological similarity of two groups of compounds can ...
Nội dung
Effect of Defects on Electronic Structure Chemical Bonding | S-3 |
Contents | S-16 |
Silicon Nitrides and NitrideBased Materials | S-18 |
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Thuật ngữ và cụm từ thông dụng
ų Acta Crystallogr Akad analysis anions anisotropy atoms band bandgap calculated cations CdAs₂ Central atom characterized Chem chemical bonding chemical shift Chemistry coefficient complexes composition compounds Condens coordination polyhedra coordination sphere corresponding covalent crystal structure crystal-chemical curves decrease density diffusion distance domain of influence electron energy example exciton Fedorov fluorides formation H₂O heterovalent impurity increase Inorganic interactions interatomic interface ionic isomorphism Khim lattice layer ligand magnetic Marenkin Mater melting metal method molecular molecules Moscow nanotubes Nauk SSSR Neorg nitride nuclear nuclei overlap oxide oxo ligand oxygen atoms parameters phase Phys point defects polyhe polyhedron properties radii reaction respectively Russian Journal silicon single crystals Solid angle solid solutions space group spectra stability struc studied sublattices symmetry Table temperature tion topological transition tungsten(VI ture vacancies valence values VD polyhedra VVDP ZnAs₂