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Green structure

Residue of a PNA chain. The phantom green structure shows the relationship to a nucleotide. [Pg.227]

Fig. 7 3D orbital tracking of a polyplex inside a cell(a) The 3D trajectory (blue) of a polyplex was tracked in HuH7 cells with EGFP labeled tubulin (green structures in the image). Overlayed onto the 3D trajectory are two wide-field images taken at different z-positions during the measurement. [Pg.299]

Figure 3.4 Hemoglobin transports oxygen and has a quaternary structure that shows how the chains arrange to form the molecule. As shown above, it consists of four polypeptide chains—two identical alpha globin (blue) and two identical beta globin (yellow)—each carrying a heme group (white) with a central iron atom, which bonds to oxygen. The green structure represents the amino acid glutamic acid at residue 6 on the beta chain. Figure 3.4 Hemoglobin transports oxygen and has a quaternary structure that shows how the chains arrange to form the molecule. As shown above, it consists of four polypeptide chains—two identical alpha globin (blue) and two identical beta globin (yellow)—each carrying a heme group (white) with a central iron atom, which bonds to oxygen. The green structure represents the amino acid glutamic acid at residue 6 on the beta chain.
P. M. F. J. Costa, J. Sloan and M. L. H. Green, Structural studies on single- and double-walled carbon nanotubes filled with ionic and covalent compounds. Ciencia e Tecnologia dos Materials 18, no. 3-4, 78-82 (2006). [Pg.810]

Co MeC(dppm)3 (S2 CO)] [Co MeC(dppm)3 - S2CP(Et)3 KBF4)2, NaOEt, 02 EtOH Yellow-green (structure Table 96) 6... [Pg.868]

J. C. Green, Structure and Bonding, Vol. 43, Springer-Verlag, New York, Heidelberg, Berlin, 1981, pp. 37-112. [Pg.310]

Rheological properties of ceramic dispersions and green structures are related to the interaction forces between the particles and with the microstructure of the material. Unfortunately, detailed quantitative interpretation in terms of microstructure is only possible for model systems of monodisperse particles of which the interaction energies are precisely known [14]. [Pg.158]

Figure 4.5 Example of how crystallographic packing effects can lead to ligand binding modes that are not biologically relevant. The yellow and green structure (PDB ID lqs4 the catalytic core domain of HIV integrase) shows atom coordinates generated by expanding symmetry-related molecules. Figure 4.5 Example of how crystallographic packing effects can lead to ligand binding modes that are not biologically relevant. The yellow and green structure (PDB ID lqs4 the catalytic core domain of HIV integrase) shows atom coordinates generated by expanding symmetry-related molecules.
The strengthening of ceramics is of great importance for engineering applications, especially at elevated temperamres. Various production processes exist most are based on powder technology and various sintering techniques (after the preparation of a green structure), but fusion or molten processes are also possible, albeit rarely used. Whatever the production technique may be, the aim is to attain a high-density product with minimal flaws (pores, microcracks, etc.). [Pg.351]

Fig. 29.8. Snapshot of the simulation step. The portal venous vessels are displayed in red the tumor in yellow and the the green structure represents the onco-surgical safety margin. Moreover, the PIP with action buttons and sliders, as well as the virtual pencil, is displayed... Fig. 29.8. Snapshot of the simulation step. The portal venous vessels are displayed in red the tumor in yellow and the the green structure represents the onco-surgical safety margin. Moreover, the PIP with action buttons and sliders, as well as the virtual pencil, is displayed...
FIGURE 12.3 (See color insert.) Control of activation processes. OFC, orbitofrontal cortex AM, amygdala MDT, medial dorsal thalamus AH, anterior hypothalamus RF, reticular formation SC, spinal cord HI, hippocampus CC, cingulate cortex S, septum ADT, anterior dorsal thalamus PH, posterior hypothalamus SMP, sensory-motor projections CS, corpus striatum LDT, lateral dorsal thalamus SR, subthalamic regions T, tectum. Orange, structures of the arousal network green, structures of the effort network blue, structures of the activation network. (Adapted from Pribram, K.H. and McGuinness, D., Psychol. Rev., 82(2), 116, 1975.)... [Pg.348]


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See also in sourсe #XX -- [ Pg.9 ]




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