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1 or which rectangle had a slightly wider gray line (shape).
2 ent depolarization ratio, and mass-dependent line shape.
3 ne the effects of static disorder on the NMR line shape.
4 ted to a broad, asymmetric Breit-Wigner-Fano line shape.
5 of magnitude but not its final level or EPR line shape.
6 se to a third broad radical with distinctive line shape.
7 racted by a least-squares fit to a specified line shape.
8 predicated structure-factor scattering peak line shape.
9 posed to explain the observed differences in line shape.
10 molecular fragments, determined from dipolar line shapes.
11 CD3-Ala15 exhibit strong isotropic spectral line shapes.
12 omplex state affects the deuterium resonance line shapes.
13 (13)C-(14)N dipolar modulation of the powder line shapes.
14 s(-1), as determined from the deuterium MAS line shapes.
15 ed mechanism shows characteristic dispersive line shapes.
16 oduction of signal intensities, volumes, and line shapes.
17 relaxation, dipolar order parameter, and CSA line shape analyses employed in this study provides snap
18 amics that were later elucidated by means of line shape analyses of the spectral features obtained th
19 spectra, which when combined with numerical line shape analyses provided a clear description of the
20 e basis of recent elegant NMR relaxation and line-shape analyses, the energetics obtained for the var
22 new strategy is employed in combination with line shape analysis and pulsed-EPR interspin distance me
24 constants for folding and unfolding from NMR line shape analysis for the single- and double-domain pr
26 f (2)H NMR spectra were fit to a theoretical line shape analysis giving the retinylidene bond orienta
27 opropylterephthalamide) were determined from line shape analysis of 1H NMR spectra [methanol-d4: delt
31 of interaggregate exchange, measured by DNMR line shape analysis of the C-Li signal, orders of magnit
39 icantly from those reported from dynamic NMR line shape analysis on a variant with methionine at the
41 mics by variable temperature NMR studies and line shape analysis were performed for the free ligands
42 bserved in the HYSCORE spectrum, and contour line shape analysis yielded coupling constants of approx
43 chniques including coalescence measurements, line shape analysis, and selective inversion experiments
44 s employed are deuteron NMR quadrupolar echo line shape analysis, and T(1Z) (Zeeman) and T(1Q) (quadr
45 tronic energy transfer rates, as revealed by line shape analysis, are mode-specific and remarkably fa
47 nversion in the anion, measured by (19)F NMR line shape analysis, is characterized by these activatio
48 he membrane binding of ovispirin using 2D IR line shape analysis, isotope labeling, and molecular dyn
56 lts were confirmed with (2)H solid-state NMR line-shape analysis and spin-lattice relaxation at 76.78
57 hosphoryl transfer, derived from qualitative line-shape analysis of (1)H-(15)N correlation spectra ta
58 to C-C single-bond isomerization, we applied line-shape analysis of the dynamic rotational spectrum t
59 r to helical interconversion, as measured by line-shape analysis of the temperature-dependent (1)H NM
60 e-AgX complexes is nearly identical based on line-shape analysis of these (31)P NMR spectra as a func
62 etime similar to that previously measured by line-shape analysis, and provides an important calibrati
64 re 13C CPMAS NMR and quadrupolar echo 2H NMR line-shape analysis: 12.8 kcal/mol for 1A and 14.6 kcal/
65 ft in the peak frequency without a change in line shape and (2) changes in the overall line shape whi
70 ng deuterium magic angle spinning ((2)H MAS) line shape and spin-lattice relaxation measurements.
73 ining data from multiple (15)N(1)H-(13)C(1)H line shapes and analogous data from other 3D (1)H-(13)C(
74 as a result exhibits strikingly sharper 15N line shapes and higher intensities for NH3 cross-peaks t
76 of the electron paramagnetic resonance (EPR) line shapes and nonexponential spin-echo decays, which u
77 ON CP) ensures the accuracy of the extracted line shapes and provides enhanced sensitivity relative t
79 cesses are evaluated via analysis of the NMR line shapes and relaxation times observed between 12 and
80 tants showed striking alterations in the EPR line shapes and revealed two discrete subpopulations in
81 in solid-state NMR spectra as characteristic line shapes and temperature-dependent line narrowing or
83 the electron paramagnetic resonance spectral line shapes and the influence of O2 on the saturation be
84 nables the facile measurement of undistorted line shapes and two-dimensional (1)H-(17)O HETCOR NMR sp
85 ntrast, more complex spectral changes in the line-shape and maximal hyperfine splitting are observed
86 h explains the observed Fano-type absorption line-shapes and tuning of the absorption strengths with
87 ructural changes, as assessed by the amide I line shape, and (5) contributions to the FT-IR spectrum
88 vidence that the site-dependent variation in line shape, and hence motion of the spin label, is due l
89 o the conventional (slow-passage) derivative line shape, and is a more reliable way to collect spectr
93 ates folded globular proteins with broadened line shapes; and "D" are nonglobular, "unfolded" polypep
94 lvation-induced frequency shifts, but the 2D line shapes, anharmonic shifts, and lifetimes obtained f
96 he EPR spectrum broadens, but the changes in line shape are modulated by both changes in label correl
97 Microwave frequency sweeps through the EPR line shape are shown as a time domain strategy to signif
100 dues in proteins are complicated because the line shapes are derived from the overlap of both the 1L(
101 ime broadening contributions to the spectral line shape arising from electronic-vibrational coupling.
102 he signal magnitude as well as the resonance line shape at various H(2)O/D(2)O solvent mixtures.
103 cing the aqueous phase, and the EPR spectral line shapes at these sites indicate considerable motiona
104 nhancement increases and the absorption band line shape becomes more asymmetric as the AgNCs' LSPR fr
106 in distance was estimated from the extent of line shape broadening in the double-labeled proteins.
108 f-field transition, Fourier deconvolution of line-shape broadening, and computer simulation of line-s
110 We compare our experimental results to 2D IR line shapes calculated using the lowest free energy stru
111 resonances with a characteristic asymmetric line shape can be observed in light scattering, transmis
112 re present, the amplitude and phase of the R line shape can vary significantly with phi, leading to d
120 PIXMb show no temperature-dependent spectral line shape changes suggestive of Jahn-Teller dynamics, a
123 3)-Leu51) along the TM-PLB peptide exhibited line shapes characteristic of either methyl group reorie
124 Caille analysis of the small-angle x-ray line shape confirms that for 7:3 wt:wt CTAT:SDBS bilayer
125 lypeptide ligand, showed changes in spectral line shape consistent with restricted motion of the nitr
127 ork utilises HPLC-MS and a constrained total-line-shape (CTLS) approach applied to (1)H NMR spectra t
128 ose ring motion to the analysis of deuterium line shape data obtained from sugar rings in solid hydra
133 -limited absorption-mode over magnitude-mode line shape depends on the collision mechanism: factor of
134 developed to accurately simulate the 2H NMR line shape due to the distribution of bond angles and th
135 d, appearing as evolution of the 2D spectral line-shape during the first 200 fs after excitation.
136 , we demonstrate that protein fingerprint by line shape enhancement (PROFILE), a 1D (1)H NMR spectros
140 the peptide but only a slight change in the line shape for POPC bilayers, indicating that the peptid
141 he 3D (2)H-(13)C-(13)C spectrum reveals (2)H line shapes for 140 resolved aliphatic deuterium sites.
142 -(13)C=(18)O labeling, we measured the 2D IR line shapes for 15 of the 18 residues in this peptide.
145 endent changes in the 2D IR vibrational echo line shapes for both of the substates are analyzed using
146 ion of the magnetic axes and analysis of NMR line shapes for H. thermophilus ferricytochrome c(552) i
148 partially relaxed) solid-state deuterium NMR line shapes for the sample [2' '-2H]-2'-deoxycytidine at
149 nsion, and a strong correlation with 13C NMR line shapes for the terminal methyl group of the hydroca
150 ear in analyte concentration and has a Raman line shape free of nonresonant background distortions.
151 ermine the relative contributions to the NMR line shape from the electric field gradient and the anis
152 aphy were used to examine the origins of EPR line shapes from spin-labels at the protein-lipid interf
155 10E requires the simulation of two different line shapes, implying two different copper-bound species
157 he time-dependent buildup of asymmetric Fano line shapes in absorption spectra has been of great theo
158 rving the corresponding (1)H line widths and line shapes in water-saturated spider dragline silk.
159 his approach provides an absorption envelope line shape, in contrast to the conventional (slow-passag
161 changes in tyrosyl radical intensity or EPR line shape, indicating that the oxyferryl heme, and not
165 Structural interpretation of the amide I line shapes is enabled by spectral simulations carried o
172 local chemical environment on the intrinsic line shape of isolated carbon nanotubes are discussed.
177 e width of the Chl(Z)(+) EPR signal, but the line shape of the D1-H118Q mutant remained unchanged.
180 fluence of surface segregation of tin on the line shape of the localized surface plasmon resonance (L
182 ectron paramagnetic resonance (EPR) spectral line shape of the reduced [2Fe-2S] cluster, which remain
184 spin-lattice relaxation of YD.; because the line shape of the S2-state multiline EPR signal is domin
189 re found to profoundly affect the absorption line shapes of both linear and symmetric complexes for s
190 By using a dipolar model that includes the line shapes of both the YD. and S2-state multiline EPR s
192 spectra and electron paramagnetic resonance line shapes of labeled mutants are blue-shifted and more
194 As a consequence of this phenomenon, 15N line shapes of NH3 signals in a conventional 1H-15N hete
197 re, electron paramagnetic resonance spectral line shapes of sites in the N-terminal domain are narrow
199 ver, complex electron paramagnetic resonance line shapes of spin-labeled mutants suggest several conf
201 However, significant differences in the line shapes of the 2H NMR spectra were observed in the l
203 ertain cases, initially symmetric Lorentzian line shapes of the G-band features with narrow line widt
204 s of the spinning sideband envelopes and the line shapes of the individual spinning sidebands corresp
211 ial and shielding functions), we predict the line shapes of Xe in SSZ-24 zeolite under various condit
213 cosatetraenoic acid and also retains the EPR line-shape of the native peroxide-induced 29-30-G wide s
214 ohmic losses that can drastically alter the line shape on the millielectron volt scale that is now o
216 Isotopic editing resulted in an altered line shape only when tyrosine residues of the enzyme wer
217 analyzed on the basis of 31P and 2H spectral line shapes, order parameters, and T1 relaxation measure
219 ion to explaining the unusual brightness and line shape peculiarities, this result leads to the predi
221 d-type E. coli QFR, HQNO causes EPR spectral line shape perturbations of the iron-sulfur cluster FR3.
224 we demonstrate that the characteristic Fano line shape results from the spectral interference of a b
229 trogen of NO and, as measured across the EPR line shape, showed a hyperfine coupling range from 36 to
230 rmediate, assigned to a Mn(V) species, had a line shape similar to that of the later intermediate, as
231 inhomogeneous broadening of the conventional line shapes, similar to multiply spin-labeled membranous
232 nd H(delta1)/H48 resonances was confirmed by line shape simulation that follows the McConnell equatio
235 mma)-C(delta) bond axes as indicated by (2)H line-shape simulations and reduced quadrupolar splitting
236 ynamic 1H NMR spectroscopic measurements and line-shape simulations suggested that the energy barrier
237 R3) in U-shaped, L-shaped, and long straight line-shaped (SL-shape) conformations are assembled into
239 tary method to other techniques that utilize line shapes, such as fluorescence, NMR, and ESR spectros
240 spectrum of the cluster shows an asymmetric line shape that is broader than what would be expected f
241 segregated near the surface show a symmetric line shape that suggests weak or no damping of the plasm
242 nyl)amino]styryl}-2,5-dicyanobenzene exhibit line shapes that vary strongly with temperature, display
243 ine how water chemistry in main distribution lines shape the microbiome in drinking water biofilms an
244 gnetic field and an analysis of the (2)H NMR line shapes, the angles between the individual C-CD(3) b
245 unt of information contained in the spectral line shapes, the problems with sensitivity and resolutio
247 demonstrates that B and C formulas from EPR line shape theory are useful for qualitative analysis of
248 overbroadening arising from this approximate line shape theory, we demonstrate that our model Hamilto
251 udiating the common practice of using such a line shape to infer the absence of metallic species.
254 tected EPR spectra of yeast Y* reveal an EPR line shape typical of a tyrosyl radical; however, when c
255 rated no change in high-field (1)H and (13)C line shapes up to 573K in 1, 3-([D(3)]methoxy)benzene.
259 mpound lacks beta-methylene protons, the EPR line shape was dramatically altered when compared to tha
260 e temperature dependence of (17)O NMR powder line shapes, we have not only confirmed that the SO(3)(-
263 tronger in the presence of acidic lipid, EPR line shapes were not strongly affected by the presence o
266 nges according to the observed deuterium NMR line shapes, whereas the furanose rings of nucleotides m
267 in line shape and (2) changes in the overall line shape which may or may not be accompanied by a freq
268 QA(-) exhibit a derivative-like, complicated line shape, which differs considerably from the HF ENDOR
270 not alter the [2Fe-2S] cluster EPR spectral line shapes, which remain indicative of one ubiquinone o
271 different positions yielded nearly identical line shapes while a fourth 15-mer containing AAATT produ
272 ion is resolved into two bands of Lorentzian line shape, while the DNA-bound monomer spectrum in this
273 The transition rate exhibited a resonance line shape with an extremely narrow width as small as 1.
274 e phase-memory time T2M and conventional EPR line shapes with predominantly homogeneous broadening, o
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