Sentence examples for a maximum reflection of from inspiring English sources

The phrase "a maximum reflection of" is correct and usable in written English.
It can be used to describe something that represents the highest degree or fullest expression of a particular quality or characteristic.
Example: "The final report is a maximum reflection of our team's hard work and dedication throughout the project."
Alternatives: "a true representation of" or "the fullest expression of".

Exact(2)

An inspection of this figure reveals that the spectrum of PSS PhC templates measured at the incident angle of 10° exhibits a maximum reflection of 34% at the wavelength of 432 nm.

Commercial paints absorb in the UV light, resulting in a maximum reflection of the blue model frog at longer wavelengths than in the actual moor frogs (Fig.  3).

Similar(58)

When the concentration of PNIPAM reached 0.05 g/mL, a maximum reflection ratio of 33% was observed which led to a decrease of the cell temperature by 6.0 °C compared with the cell without PNIPAM inside.

Lue et al. (2011) found an average reflection efficiency of ~10% and a maximum reflection efficiency of ~50% for the strongest magnetic anomalies.

Taking both the synergistic benefits of magnetic CoNi nanocrystals and electric nitrogen-doped graphene, the CoNi/nitrogen-doped graphene hybrids show a maximum reflection loss of −22 dB at 10 GHz with a matching thickness of only 2.0 mm, and the effective absorption bandwidth with reflection loss exceeding −10 dB is 3.6 18 GHz with the absorber thickness of 1.35 5.0 mm.

The results show that the rGO/porous Bi2Fe4O9 composite exhibits a maximum reflection coefficient of −71.88 dB at 13.8 GHz with a sample thickness of only 2.0 mm and an effective absorption bandwidth (reflection loss below −10 dB) of 4.24 GHz, greatly superior to the present graphene-based metallic oxide composite.

When the thickness is just 1.25 mm, the reflection loss values below −10 dB can be achieved from 13.8 to 18 GHz, with a maximum reflection loss of −25.9 at 16.1 GHz.

The epoxy based nanocomposites exhibited semi-conductive behavior and a maximum reflection loss of −15.4 dB at 16.5 GHz were obtained with thin thickness (1.6 mm) and low particles loading (2 wt%) of specimen.

A maximum reflection loss of −65.3 dB can be achieved at 6.8 GHz with a matching thickness of 3.4 mm for the hybrids with 20 mg original graphene oxide, and the effective absorption bandwidth with reflection loss values less than −10 dB covers 12 16 GHz with the absorber thickness of only 2.0 mm.

The double-layer absorbers, consisting of 30 wt% CNZF composite as matching layer and 30 wt% rGO composite as absorption layer, with total thickness of 2.5 mm, exhibited a maximum reflection loss (RL) of −49.5 dB at 16.9 GHz, as well as an effective bandwidth below −10 dB of as wide as 6.0 GHz from 12.0 GHz to 18.0 GHz.

By simply controlling annealing temperature, the hybrid nanowires annealed at 1300 °C present a maximum reflection loss (RL) of −22 dB at 16.8 GHz with a small thickness of 1.7 mm and an effective absorption bandwidth (RL < −10 dB, 90% EM wave absorption) covers from 8 to 18 GHz.

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