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According to this model, fourfold rings are interpreted as four atoms forming a closed path with a maximum bonding distance and with all four three-atom bond angles, plus the angle between the planes defined by two triplets of atoms, being a maximum of 20° from the ideal angles of 90° and 180°, respectively.
The TrF joint appears to be fixed on the front legs of B. discoidalis, but for the middle and hind legs, we estimated the TrF angle as the angle between the planes defined by the TiTa-FTi-CTr points and the FTi-CTr-ThC points (Fig. 7).
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The datasets were projected onto the planes defined by the first two principal components.
The angle that matters is the one between the horizontal plane and the plane defined by the tire contacts and the location of the center of mass of bike and rider.
The axes in the frontal plane was in the plane defined by the markers and perpendicular to the saggital plane.
To define t r, first project P r to the plane defined above.
The plane defined by n 2 = 0 then cuts the surface in a perpendicular manner.
The dihedral angle between the two planes defined by a set of copper, oxygen and nitrogen atoms was about 41°.
The hydrophobic interactions described in 3) follow the pi-pi stacking geometry, which are: Distance (d2) between the center of the apolar sidechains and the center of BAF aromatic rings: 4.0∼5.0 angstrom; Dihedral angle between the surface plane defined by Phe18 and Val20 and the aromatic ring of the BAFs: 0∼40°.
The bisecting planes defined 4 anatomical regions: anterolateral (AL), anteromedial (AM), posterolateral (PL), and posteromedial (PM).
The x − z and y − z planes corresponds to the coronal and sagittal planes, defined as the plane in which the two connected bones are constrained to move and the orthogonal plane, respectively.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com