Science, Volume 333, Issues 6039-6044John Michels (Journalist) American Association for the Advancement of Science, 2011 |
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Page 207
... structure in the [ 110 ] zone axis . Images from top to bottom : the atomic structure from the selected section in ( A ) ( top ) , simulated image ( second row ) , structural model ( third row ) , and simulated electron diffraction ...
... structure in the [ 110 ] zone axis . Images from top to bottom : the atomic structure from the selected section in ( A ) ( top ) , simulated image ( second row ) , structural model ( third row ) , and simulated electron diffraction ...
Page 208
... structural do- mains , as well as changes in the atomic structure of a Cu2S nanorod during structural transforma- tion , can be observed . Figure 2 shows the trajectory of the structur- al transformation from low- to high - chalcocite ...
... structural do- mains , as well as changes in the atomic structure of a Cu2S nanorod during structural transforma- tion , can be observed . Figure 2 shows the trajectory of the structur- al transformation from low- to high - chalcocite ...
Page 460
... Structure of the hTOP2ẞcore - DNA cleavage complex stabilized by the anticancer drug etoposide . ( A ) Linear domain organization of hTOP2B . The middle fragment ( residues 445 to 1201 ) , corresponding to hTOP2ẞcore , was used in this ...
... Structure of the hTOP2ẞcore - DNA cleavage complex stabilized by the anticancer drug etoposide . ( A ) Linear domain organization of hTOP2B . The middle fragment ( residues 445 to 1201 ) , corresponding to hTOP2ẞcore , was used in this ...
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