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"This is a very, very minimal reflection of your genetic makeup".
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Moreover, among all BC-CNF/Fe3O4 nanocomposites, the BC-CNF/Fe3O4 containing 52.7 wt% Fe3O4 exhibited excellent absorption performance with the minimal reflection loss (RL) of −62.1 dB at 9.12 GHz, which is the best among all relevant CNF-Fe3O4 composites reported so far.
At the outer boundaries of the units, absorbers were installed which caused minimal reflection and "hot spots".
An interesting application of plasmonic nanostructures is the perfect absorber which absorbs all incident light with minimal reflection and transmission.
Minimal reflection conditions can be achieved by considering these restrictions.
At the minimal reflection loss (RL) values over −10 dB, the EMW absorption bandwidth can reach up to 13.8 GHz with an absorber thickness of 1.5 5 mm.
The optimal viscous and viscoelastic support stiffness for minimal reflection at the edge was calculated.
The minimal reflection condition can be obtained by taking into account these restrictions.
Around zero reflection is achieved by the Nanoneedles structure design presented in this work, leading to minimal reflection losses from the Si surface.
This assertion was supported by molecular calculations and the presence of minimal reflections in the 20° ≤ 2θ ≤ 30° region of the powder diffractograms, associated with side chain van der Waals interactions.
Therefore, we cannot be confident that this is a true reflection of the minimal prevalence across the country.
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