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ABS Sajadi(Latin)
"Using Weibull Probability Distribution to Calibrate Prevailing Wind Applying in Oil Spill Simulatiion"
Numerical simulation of oil pollution due to optimum pattern of turbulent flow, wind and tide effects
The upper panel shows microscopic photographs of the MCF-7 cancer cells in the absence (C) and presence of different concentrations of the Ni(II) complex (indicated by the number inside each photo).
(A) Molecular docking of the Ni(II) complex with the major groove side of DNA by UCSF chimera, (B) two-dimensional interactions generated by LIGPLOT+.
(A)(A)tThe Ni(II) complex docked in the binding pocket of BSA using MVD. The complex depicted in a stick model, and the BSA represented in a wireframe model, (B) two-dimensional interactions generated by LIGPLOT+.
(A) Perspective of molecular docking of the Cu(II) complex with the major groove side of DNA by MVD chimera, (B) two-dimensional interactions generated by LIGPLOT+.
(A) Perspective of molecular docking of the Ni(II) complex with the major groove side of DNA by UCSF chimera, (B) two-dimensional interactions generated by LIGPLOT+.
(A) Molecular docking perspective of the Ru (II) complex with the major groove side of DNA using MVD. The complex depicted in a stick model, and DNA, represented in a wireframe model, (B) two-dimensional interactions generated by LIGPLOT.
(A) (A)tThe docked trans-[Cu(Pir)2(THF)2] complex in the binding pocket of BSA using MVD. The complex is depicted in a stick model, with BSA represented in a wireframe model; (B) two-dimensional interactions generated by LIGPLOT+.
(A) The docked trans-[Co(Mel)2(EtOH)2] complex in the binding pocket of BSA using MVD. The complex is depicted in a stick model, with BSA represented in a wireframe model; (B) two-dimensional interactions generated by LIGPLOT+.