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Maximum optical contrast of up to 15% and a visible light range averaged one of 10% was observed.
Coloration efficiency of the polymer film is 23.77 cm2 C−1, meanwhile maximum optical contrast of the polymer film reaches to 40% at the wavelength of 658 nm.
Electrochromic switching of PBTB film is performed and the polymer film shows a maximum optical contrast (ΔT %) of 44.8% at 610 nm in visible region with a response time of 1.6 s.
The copolymer film shows a maximum optical contrast (ΔT%) of 31% and a switching time of 1.2 s which are higher and faster than those of the homopolymer of BPL (PBPL, 7.8% and 2 s).
The copolymer film shows a maximum optical contrast (ΔT%) of 48.4% at 504 nm with a response time of 0.88 s and of 45.2% at 770 nm with a response time of 0.84 s.
With the feed ratio of anthracene/EDOT at 1/4, the prepared copolymer shows a maximum optical contrast of 82% at 503 nm which is much near to the highest optical contrast of electrochromic materials.
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Spatial variations in TOI allow us to rapidly locate the maximum lesion optical contrast.
Organise your unmixed, intense colours together with the mixed, duller colours to maximum optical effect.
Optical contrast ΔT630 nm up to 33% is reached without contrast loss after 1500 switches.
At 35 °C, the maximum optical power is about 1.9 mW.
CANON CANOSCAN LiDE200 and LiDE100 COLOR IMAGE SCANNER The CanoScan LiDE200 has a maximum optical resolution of 4800 x 4800 dpi while the CanoScan LiDE100 has a maximum optical resolution of 2400 x 4800 dpi.
More suggestions(15)
maximum optical attenuation
maximum optical resolution
maximum optical power
maximum disruptive contrast
maximum optical absorbance
maximum optical transmittance
maximum optical penetration
maximum optical output
maximum spectroscopic contrast
maximum optical absorption
maximum optical efficiency
maximum optical effect
maximum nucleus contrast
maximum optical gain
maximum optical cell
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