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Tree, schematic diagram

Figure 30-15 (A) Diagram of the two-dimensional tree formed by dendrites of a single Purkinje cell of the cerebellum. From Llinas.404 (B) Schematic diagram showing input and output pathways for Purkinje cells. (C) Recordings of output from four different neurons of the inferior olive. These action potentials are thought to arise from oscillations that arise within the neurons or within arrays of adjacent neurons coupled by electrical (gap junction) synapses. These oscillations synchronize the generation of action potentials so that some cells oscillate in synchrony while others (e.g., cell 4 above) do not. From McCormick.412... Figure 30-15 (A) Diagram of the two-dimensional tree formed by dendrites of a single Purkinje cell of the cerebellum. From Llinas.404 (B) Schematic diagram showing input and output pathways for Purkinje cells. (C) Recordings of output from four different neurons of the inferior olive. These action potentials are thought to arise from oscillations that arise within the neurons or within arrays of adjacent neurons coupled by electrical (gap junction) synapses. These oscillations synchronize the generation of action potentials so that some cells oscillate in synchrony while others (e.g., cell 4 above) do not. From McCormick.412...
FIGURE 23.7 Schematic diagram of a decision tree. Nine of the eleven active compounds (yellow) are characterized by MW < 450, charge = 1 and logf) < 3.8. Two active compounds are misclassified. [Pg.500]

The company Polymer Char (Valencia, Spain) was created for developing fully automated PO characterization instruments. The first device, commerciahzed and patented in 1994, was the CRYSTAF, crystallization analysis fractionation, for the fast measurement of the chemical composition distribution (CCD) in PE, PP, copolymers, and blends. Next came the SEC (with a quadruple detector system) and then SEC/a-TREF and p-TREF instruments. The first commercial, fully automated cross-fractionating SEC/TREF apparatus for microstructure characterization of POs was described by Ortin et al. (2007). The instrument yields a bivariate distribution CCD by TREE fractionation and then SEC fraction analysis in a single run. A schematic diagram of this new cross-fractionation instrument is shown in Fig. 18.7. [Pg.1577]

Fig. 18.8 (left) Schematic diagram of an automated TREF-CRYSTAF apparatus and (right) chromatographs of a bimodal LLDPE resin as detected by TREE and CRYSTAE... [Pg.1579]

Figure 10.3 (a) Schematic diagram of a 16-column microfluidic DNA synthesizer. The control lines, fluidic lines, herringbone mixers, and the square profiled binary tree and reactor columns are shown, (b) Close up schematic of the column array. The normal valve and the individually addressable inlet valve close fully when activated the sieve valve and compression valve of the reaction columns allow fluid flow while trapping the CPC beads. [Pg.303]

What are the system boundaries Specifications (and their family tree), drawings, schematics, functional block diagrams, etc., all contain useful data to help define the FMEA boundaries. [Pg.106]

FIGURE 13.11 A schematic tree-energy versus reaction coordinate diagram for the 1,2- and 1,4-addition of HBr to 1,3-butadiene. An allylic carbocation is common to both pathways. The energy barrier for attack of bromide ion on the allylic cation to form the 1,2-addition product is less than that to form the 1,4-addition product. The 1,2-addition product is kinetically favored. [Pg.607]


See other pages where Tree, schematic diagram is mentioned: [Pg.27]    [Pg.912]    [Pg.68]    [Pg.182]    [Pg.216]    [Pg.182]    [Pg.57]    [Pg.212]    [Pg.413]    [Pg.212]    [Pg.407]   


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