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The coordination number of a particular complex is determined by the relative sizes of the metal atom and the ligands, by spatial (steric) constraints governing the shapes (conformations) of polydentate ligands, and by electronic factors, most notably the of the metal ion.
The structure of the 3iPO-ACh+ complex is determined by single crystal X-ray crystallography.
We compare the experimental findings with numerical calculations, where the total anisotropy for a complex is determined in terms of single-ion anisotropies using both projection operator techniques and exact matrix diagonalization methods.
The stability of a metal chelate complex is determined by such factors as the number of atoms that form a bond with the metal ion, the number of rings that are formed, the nature and concentrations of the metal ions, and pH.
Then, the overall secondary structure of the target complex is determined, specifying the arrangement of nucleic acid strands within the structure, and which portions of those strands should be bound to each other.
Therefore differential regulation of cryptic promoters at STE11 by the RSC1 complex is determined by events downstream of ORF acetylation.
Similar(49)
The X-ray structure of new complex was determined.
The crystal structure of the HLA complex was determined to 2.3 Å resolution (Table 1).
The protein concentration of the resulting Eu-anxA5-DTPA complex was determined by BCA protein assay.
After optimizing the enzyme extraction all enzyme activities comprising the cellulosic complex were determined.
To understand how MABP-1 confers erythromycin resistance, the crystal structure of the complex was determined.
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