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Selected particles were defined by a ROI of a defined pixel size (2 × 2) and fitted to two-dimensional (2D) Gaussians.
Type 2 particles were defined by their fibrous shape, and 6 out of 52 category 3 particles were defined as type 2. Type 3 particles were deemed faint type, having a very smooth surface marked by very few tiny surface particles.
Category 4 particles were defined as particles containing synthetic material originating from the sample catcher, the micro-manipulator, and the clean chamber (e.g., aluminum flake, quartz glass, and stainless steel).
The regions between nucleosomal core particles were defined as linker locations, and 50,299 linker DNA sequences of at least 6 bp in length were identified (for details, see Table S6 and Table S7).
Centroid positions of particles were defined on the basis of the intensity distributions of the original untransformed images.
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The particles are defined on a separate Lagrangian mesh that is free to move over an underlying Eulerian grid.
Formally, the quantum state of an object which consists of N particles is defined in 3N dimensional configuration space.
In the PIC scheme, particles are defined in a continuum position and velocity space.
Bridging of particles is defined as the buildup of solids that reduces inflow.
Now, our overall fitness function of particles is defined as (13).
Certainly, the compositions of such particles are defined by the concentrations of elements in vapor, i.e., the vapor pressures.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com