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Among these three types, footprint segments are our primary targets.
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For the remaining five cell types, footprints were called on deep sequenced single-hit DNase-seq data, but these datasets were not sequenced as deeply as the double-hit for the other four cell types.
Table 5 All 13 xx-type footprint states generated by the xx-type dimmers.
Table 6 All 20(F) eij-type footprint states generated by the eij-type dimmers.
Thus we have the relation: no. of eij-type footprint states = = (no. of eij-type dimer states).
The number of xx-type footprint states is identical to the number of xx-type dimers, as enumerated in Table 5.
Given an eij-type footprint state of length in dimers, there are precisely possible positions for the implied eij-type dimer to occur within the footprint state's string of primitives.
For xx-types, it is sufficient to specify the generating dimer only, such as i 0 i 0 for the xx-type footprint state i 0 i 0⋯ i 0. For eij-types, a position must also be specified for the location of the generating dimer within the generated footprint state.
The poor preservation of these tracks, and their association with more common Iguanodon-type footprints, many of which were made by quadrupeds, has led to doubt about the correct affinity of these tracks.
These are recognisable types of footprint that cannot be matched precisely with the species of animal that left them.
We apply the framework to a single case study concerning one type of footprint (namely the carbon footprint) of a copier (closed-loop) supply chain.
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CEO of Professional Science Editing for Scientists @ prosciediting.com