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1 m at the earth surface from near infrared to near ultraviolet.
2  of the protein as inferred from visible and near-ultraviolet absorption and circular dichroism spect
3 e transient CH(2)OO is quantified rapidly by near-ultraviolet absorption spectra via its B((1)A') <-
4 Our initial experiments are performed in the near-ultraviolet and in the visible spectral ranges with
5 nd for porphyrins is usually observed in the near-ultraviolet at approximately 400 nm, and few exampl
6                       The tertiary structure near ultraviolet CD signals of sigma N do not require re
7                                              Near-ultraviolet CD spectra of the enzyme-nucleotide com
8 , surface balance measurements, and far- and near-ultraviolet circular dichroic spectroscopy.
9                                              Near-ultraviolet circular dichroism (near-UV CD) spectra
10 her drug is prebound, a novel application of near-ultraviolet circular dichroism (UVCD) was developed
11                           As we anticipated, near-ultraviolet circular dichroism measurements and int
12                          Far-ultraviolet and near-ultraviolet circular dichroism spectroscopic analys
13                                          The near-ultraviolet circular dichroism spectrum of this pro
14 obule characteristics of T. maritima IscU by near-ultraviolet circular dichroism, 1-anilino-8-naphtha
15 bon, the far-infrared dust continuum and the near-ultraviolet continuum emission from a galaxy at a r
16 cular lens that may be modified in vivo with near ultraviolet energy.
17                                  Fiber-optic near-ultraviolet evanescent-wave sensors have been const
18 les by up to three orders of magnitude using near-ultraviolet excitation, depending on the substrate,
19                                         Upon near-ultraviolet excitation, two new Pb-Cl and Pb-Br per
20 lfonium salts that are photosensitive in the near-ultraviolet have been prepared.
21                  After triplex formation and near-ultraviolet irradiation (360 nm), DNA templates mod
22                                         Upon near-ultraviolet irradiation (360 nm), psoralen-Asp41-Ta
23                                         Upon near-ultraviolet irradiation (360 nm), this synthetic ps
24                                        Using near-ultraviolet irradiation under low-intensity one-pho
25 ul triplet diradicals under visible light or near-ultraviolet irradiation.
26 ing the residual particles in a flow cell to near-ultraviolet (lambda>300 nm) radiation, we find that
27           During continuous irradiation with near-ultraviolet light (l = 36510 nm; 16 mW/mm(2)) for 2
28             Mechanistic studies suggest that near-ultraviolet light (lambdamax = 313 nm) photoinitiat
29       This study discusses the coupling of a near-ultraviolet light-emitting diode (340 nm) to a comm
30 ted by harmful and poorly tissue-penetrating near-ultraviolet light.
31 ase Ca2+ when cleaved upon illumination with near-ultraviolet light.
32 atic absorption across large portions of the near-ultraviolet (NUV) to near-infrared (NIR) spectrum a
33 o pSC and ST are conditionally assembled via near-ultraviolet or pulsed near-infrared irradiation, as
34                     TRCD is monitored in the near-ultraviolet, over a time scale of 10 ps.
35 temic administration of aziPm with bilateral near-ultraviolet photoadduction in the rostral pons, at
36                                    Moreover, near-ultraviolet pumped white light is demonstrated with
37 n spectrum with two distinctive peaks in the near ultraviolet region.
38 d, redder surfaces initially brighten in the near-ultraviolet region (i.e., become bluer at shorter w
39 phosphatase, increase the ellipticity in the near-ultraviolet region of the CD spectrum of the enzyme
40 rough the appearance of intense bands in the near-ultraviolet region of the spectrum (250-380 nm).
41 0 nm and a significant secondary peak in the near-ultraviolet region of the spectrum.
42 nous pH-sensitive absorbance in the blue and near-ultraviolet regions of light.
43 ioactive isotope of beryllium, (7)Be, in the near-ultraviolet spectra of the classical nova V339 Del
44 ve inhibitor Li+ causes little change in the near-ultraviolet spectrum in the absence or presence of
45                                              Near-ultraviolet stimulation of opsin regenerated with a
46 on of SO(2) with authentic urban grime under near-ultraviolet sunlight irradiation leads to a large s
47 ), while anthracenes emit exclusively in the near-ultraviolet to blue wavelength regime.
48 were shown to have tunable emission from the near-ultraviolet to the near-infrared region.
49 the direct bandgap of this material from the near-ultraviolet to the near-infrared region.
50 oader exploration of FRET with spectrum from near-ultraviolet to visible wavelength.
51                           Here we report the near-ultraviolet transmission spectrum of the ultra-hot
52 ients of dispersed particulate matter in the near ultraviolet (UV) spectral region.
53 sol particles in the troposphere that absorb near-ultraviolet (UV) and visible solar radiation and ha
54 d light microscope equipped with visible and near-ultraviolet (UV) illumination, and a custom-built m
55                  NPs absorb radiation in the near-ultraviolet (UV) range of the electromagnetic spect
56 vailable only in the infrared to visible and near-ultraviolet (UV) spectral region.
57                                          The near-ultraviolet/visible circular dichroism spectrum als