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Two families of regular and vertically irregular (with setbacks) frames are examined.
Changes in multifractal properties for different streaming approaches of 3D videos with aggregated frames are examined, as well as the influence of frame types and values of quantization parameters.
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The seismic performance of the designed frames is examined at various seismic intensity levels.
To determine if a similar mechanism occurs in C9RAN, the sequence upstream of the repeat in all three reading frames was examined.
The influence of welded column splice fracture on the seismic response of steel moment frames is examined.
The systemic drivers and worldviews behind these frames were examined using causal layered analysis.
Accordingly, in total, after modeling in finite element software under cyclic and monotonic loading, 68 frames were examined in this study.
Because some arsC genes were incomplete, all three possible reading frames were examined to ensure correct translation.
The spectacle frames were examined for any cracks or repairs and the lenses were checked for any scratches.
Several different patterns and locations of semi-rigid connection replacements within the frame are examined in order to identify the hybrid frames with most energy dissipation capabilities.
Their characteristic basin fill and symmetry, inner structure, folding wavelength and amplitude, thermal regime, time frame are examined in relation to basement structure, stress field, strain rate, timing of deformation, and compared to existing modelling results.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com