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1  of approximately two to three (charge ratio near unity).
2 eve conditions in which receptors had a P(o) near unity.
3 ial quantities of material if E/Z ratios are near unity.
4 ations with trait means ranging from zero to near unity.
5 ensitizers, and exhibit quantum efficiencies near unity.
6 rcinoma and squamous cell carcinoma remained near unity.
7  [Formula: see text] and branching parameter near unity.
8 ce in the 515 nm region with a quantum yield near unity.
9 toichiometry of lactate and H+ production is near unity.
10 t-range chemical reaction with a probability near unity.
11 trated independently with a Hill coefficient near unity.
12 verted into atomic motion with a probability near unity.
13 lysis, with an apparent equilibrium constant near unity.
14 with a K(a) of 1.3 mm and a Hill coefficient near unity.
15  methyl groups exhibit (13)C isotope effects near unity.
16 /AD) fall outside of the semiclassical range near unity.
17 ed with foveal size (r = 0.75), with a slope near unity (0.90 +/- 0.18).
18 arity and uniform activity rod phantoms were near unity (0.97 +/- 0.06 and 1.03 +/- 0.03, respectivel
19                                          The near-unity 1'-(14)C KIEs for both human and P. falciparu
20 but all three values attenuated to values of near unity (1.1 +/- 0.03 or 0.91 +/- 0.02) at pH 10.
21 is SEOP setup is demonstrated here to obtain near-unity (129)Xe polarization values in a 0.5 L optica
22             Goodness of fit values (R2) were near unity (.94 to .97) and were similar for all interve
23 independent perfect absorber with wide-angle near unity absorbance in the visible regime.
24 riments and simulations, we demonstrate that near-unity absorption at one or more target wavelengths
25 avy atom (13)C/(12)C kinetic isotope effects near unity also support post rate-determining C-C bond f
26 -Menten equation with a Hill coefficient, n, near unity and an equilibrium constant, K(m), near 3 mic
27  plot for the interface variants has a slope near unity and the control variants have near-wild-type
28 terconversion of the two structured forms is near unity and the time scale is > or= 10-20 ms.
29 wer K(0.5 glucose) values, Hill coefficients near unity, and enhanced equilibrium binding affinities
30 temperature but with an equilibrium constant near unity at 5 degrees C.
31 pends solely on temperature, reaching values near unity at the critical temperature.
32  than 30-fold enhancement of luminescence, a near-unity atom-cavity coupling efficiency, and an 8-fol
33 nd long-term device stability, which confers near-unity charge collection efficiency and enhanced spe
34          Surprisingly, our results show that near-unity charge-discharge reversibility can be achieve
35 ty modes and generate photoluminescence with near-unity chirality from lower polariton emission.
36                                Specifically, near-unity circular dichroism for both second-harmonic g
37 isible light at ambient temperature achieved near-unity comonomer reactivity ratios over the entire r
38       Polymer-polymer partition coefficients near unity confirmed identical absorption capacities of
39  computed for buried protein atoms, are also near unity, confirming our earlier conclusions that the
40 MPS data correlated (r(2) > 0.9) with slopes near unity, confirming quantitative TD-CRDS response to
41  the photonic transformer can operate with a near-unity conversion efficiency and high voltage conver
42  are a promising technology that can achieve near-unity coupling into a first lens.
43 or large-format superconducting cameras with near-unity detection efficiencies across a wide range of
44                 KIEs measured at pH 7.5 were near unity due to the large forward commitment to cataly
45               This will pave the way towards near unity efficiencies, long distance splitting, and po
46 ent photoluminescence at 640 and 700 nm with near unity efficiency.
47                Nevertheless, TET occurs with near-unity efficiency for all BPEA derivatives due to th
48 g anti-symmetric full 2pai phase shifts with near-unity efficiency for two orthogonal co-polarized ch
49                                 It maintains near-unity efficiency of energy transfer to reaction cen
50       Understanding the mechanism behind the near-unity efficiency of primary electron transfer in re
51      Extensions of this technique will allow near-unity efficiency transduction in both the mmwave an
52 convert NO(3)(-) to high-purity NH(4)Cl with near-unity efficiency, suggesting a practical approach t
53 sion electrode, which recirculates H(2) with near-unity efficiency.
54 d focus visible light (lambda = 532 nm) with near-unity efficiency.
55 ulfide transfer to graphene in 1 ps and with near-unity efficiency.
56 hat triplet excitons can be transferred with near unity efficiently across the organic-inorganic inte
57 clude stable, reproducible, and large (often near-unity) emission quantum yields (QYs).
58                                   We achieve near unity emitter creation probability and a mean posit
59 e a procedure capable of making ensembles of near-unity emitting cadmium selenide/cadmium sulfide (Cd
60 richment liquid-N(2) baths and far costlier, near-unity-enrichment configurations employing high-H(2)
61 cient (alpha) as 0.7 on average, with values near unity especially for low volatility species.
62 In neat films, we demonstrate fission yields near unity even when monomers are separated by >5 A.
63 oxidized on alpha-Fe2O3 to formaldehyde with near unity Faradaic efficiency.
64  with a high Coulombic efficiency (~95%) and near-unity Faradaic efficiency for H(2) production (~99%
65 ater splitting for over 5 h is achieved with near-unity Faradaic efficiency.
66 en the input and output frequency modes with near-unity fidelity and favorable scaling.
67 aging system, single atoms are detected with near-unity fidelity on individual sites of a Hubbard-reg
68 on a lossless waveguide network and achieves near-unity fidelity under single- and two-photon excitat
69 lecules exhibiting visible-range absorption, near-unity fluorescence quantum yields, and, to our know
70  range of 34 to 8 degrees C, Q10 values were near unity for all evoked release (0.8 and 1.3 for CGRP
71  linearity of the REFER plots and Phi values near unity for all ligands tested implies that CFTR chan
72        Solvent hydrogen isotope effects were near unity for amine activation, which is consistent wit
73 ron transfer efficiencies to the Pt tip were near unity for both CdS and CdSe/CdS nanorods.
74  consumption and lipid product formation was near unity for both PGHS and lipoxygenase, indicating a
75  space showing robust ferromagnetism, rho is near unity for Fermi liquid states.
76  optical gain, although the quantum yield is near unity for low-intensity applications.
77 with an onset at ages 10-19 years; they were near unity for onset in adulthood.
78 e accumulates and that Mo(V) content remains near unity for the duration of the reaction.
79 ium isotope effects on V and V/K(MgHIc) were near unity for the K206M mutant enzyme but approximately
80 emained active during head-free pursuit with near-unity gain.
81 ules showing both efficient luminescence and near-unity generation yield of excited states with spin
82 ) production at near zero-overpotential with near unity H(2)O(2) selectivity at 0.27 V vs. RHE.
83  A mole ratio of hydrogen to carbon monoxide near unity (H(2)/CO ~ 1) was obtained over 5Ni/ZrO(2) an
84                     Beads with a force ratio near unity had approximately equal probabilities of exit
85                            Likelihood ratios near unity have little effect on decision-making; by con
86 afety for glasshouse grown peduncles is very near unity (i.e. S=1.03), and that the factor of safety
87 at works in concert with DDDMA(+) to produce near-unity (i.e., >90%) QYs.
88 pe effect on k(cat), which was 2.0 in WT, is near unity in H48A.
89 he photoisomerization yield, enhancing it to near unity in nonpolar solvents while largely suppressin
90 yme thermodynamic equilibrium constant (Keq) near unity in the temperature range between 20 and 30 de
91                      Sirtuin1 mean B/A ratio nearing unity in all tissues reveals inertness of BPA to
92 ereas the triplet yield increases 60-fold to near unity, independent of the site of sulfur atom subst
93                  The correlation has a slope near unity, indicating equal sensitivity of the NO and C
94 ator-strength NIR absorptivity up to 850 nm, near-unity intersystem crossing (ISC) quantum yields (Ph
95 el cells (SOFCs), owing to its stability and near-unity ionic transference number.
96                      Photosynthesis achieves near unity light-harvesting quantum efficiency yet it re
97 minescence linewidth of roughly 350 ueV with near-unity linear polarization.
98 mission of photons at accelerated rates with near unity luminescence efficiency.
99            We show that a line-shape index q near unity (maximum asymmetry) may be produced in hydrog
100  oxide heterodimer nanocrystals (NCs) with a near-unity morphological yield.
101 maximal open probability (P(o)) of KCNQ3 was near unity, much higher than that of KCNQ2, KCNQ4, and K
102 ermal free-carrier concentration producing a near-unity negative refractive index shift.
103                                   In theory, near-unity nuclear spin polarization can eliminate decoh
104 tically tunable delay of 50 nanoseconds with near-unity optical transparency, and superluminal light
105  a factor of 0.16 in DLPC bilayers but has a near-unity order parameter of 0.96 in POPC bilayers.
106 f micrometer plasmon propagation facilitates near-unity-order modulation of nanoscale energy flow tha
107 ts show that the transfer efficiency remains near unity over a distance variation of approximately on
108 0(5) s(-1) from 1.4 x 10(4) s(-1), each with near-unity Phi(PL)s.
109 nprecedented photoluminescence quantum yield near unity (Phi(absolute) 1.0+/-0.1) and an excited-stat
110  ground-state Cu(I)-Au(I) covalent bonds and near-unity phosphorescence quantum yields.
111 d PXZ-Dipp-SO2B, respectively, but retaining near unity photoluminescence quantum yield.
112  than 10%, these silica-shelled samples gain near-unity photoluminescence efficiency.
113 we present a hybrid copper-iodide that shows near-unity photoluminescence quantum yield (99.6%) with
114 gle crystals not only show red emission with near-unity photoluminescence quantum yield (PLQY) and hi
115 kali carbonates, the resulting NPLs attained near-unity photoluminescence quantum yield (PLQY) and pu
116  metal halides is achieved, which leads to a near-unity photoluminescence quantum yield (PLQY) at aro
117                 In this work, we demonstrate near-unity photoluminescence quantum yield (PLQY) blue a
118 presses its dynamic disorder, resulting in a near-unity photoluminescence quantum yield of PeNC films
119 ctronically isolated, thereby resulting in a near-unity photoluminescence quantum yield, akin to that
120 bit high exciton recombination features with near-unity photoluminescence quantum yields (97%), and t
121 results helped us designing hetero-NPLs with near-unity PL quantum yield in the CdSe/CdSe(1-x)Te(x)/C
122 pressed EEA in monolayer TMDCs, resulting in near-unity PL QY at all exciton densities despite the pr
123 tal dichalcogenide (TMDC) monolayers exhibit near-unity PL QY at low exciton densities, nonradiative
124 S-AgGaS(2) (AIGS-AGS) core-shell NCs bearing near-unity PL QYs in almost full visible range (460 to 6
125 oidal and phase stability, as well as showed near unity PLQY.
126 )HfBr(6) powders showed blue emission with a near-unity PLQY (96.2%), and green emission was also ach
127 nced radiative rates contribute to achieving near-unity PLQY in the strongly confined regime (<7 nm).
128 eband amplification and dynamics that permit near-unity power conversion.
129 sential for the high Faradaic efficiency and near-unity product selectivity for isopropylamine.
130  molecular wire due to high yield synthesis, near-unity purification, and nanoscale self-organization
131 nverting photoenergy to chemical energy with near unity quantum efficiency and under high light inten
132 robust photoactivated charge separation with near unity quantum efficiency is not fundamentally under
133 ht and converts it into chemical energy with near unity quantum efficiency, which generates low poten
134 ganisms convert sunlight to electricity with near unity quantum efficiency.
135  energy transport and charge separation with near unity quantum efficiency.
136 otosynthetic organisms harvest sunlight with near unity quantum efficiency.
137 tion toward a site of charge separation with near unity quantum efficiency.
138 ed triplet-triplet quenching and therefore a near unity quantum yield in the neat thin film.
139 mission, the copper doping into CQWs enables near-unity quantum efficiencies (up to approximately 97%
140  abundance, environmental compatibility, and near-unity quantum efficiencies.
141            Photosystem II (PSII) can achieve near-unity quantum efficiency of light harvesting in ide
142 he fundamental mechanism responsible for the near-unity quantum efficiency of the transfer.
143 s through a network of antenna proteins with near-unity quantum efficiency to reach the reaction cent
144 isms transport and convert solar energy with near-unity quantum efficiency using large protein superc
145 of-the-art examples nevertheless demonstrate near-unity quantum efficiency.
146 l system for unprecedentedly efficient (with near-unity quantum yield) light-driven reduction of meth
147 red wavelengths, negligible self-absorption, near-unity quantum yield, and high light yield.
148    By virtue of their narrow emission bands, near-unity quantum yield, and low fabrication cost, meta
149 ttractive as a laser gain material despite a near-unity quantum yield.
150 ne displays endothermic singlet fission with near-unity quantum yield.
151 eta-factor from laser physics(10,17-20), the near-unity Raman beta-factor we observe exposes the SERS
152 electronvolts requires host materials with a near-unity refractive index, which are limited to bulky
153 n rates, excellent long-term stabilities and near-unity selectivities.
154 achieving 103.21 mmol g(cat) (-1) h(-1) with near-unity selectivity for CO generation and meanwhile e
155 lectrochemical reduction of CO(2) to CO with near-unity selectivity in water at an overpotential as l
156 es show high correlation (r(2) = 0.9999) and near unity slopes.
157 ily reversible, with an internal equilibrium near unity, such that the amount of product observed is
158 se metabolic rates and recovery coefficients near unity suggest that quantitatively accurate dynamic
159                       Hill plots with slopes near unity suggested noncooperativity for catestatin eff
160 d in sludges showed enrichment factors (EFs) near unity, suggesting dust or soils as likely dominant
161                      The Hill coefficient of near unity suggests a single molecule of diltiazem media
162 mains host topological interface states with near-unity thermal emissivity.
163 e ratio of NO3- to NO2- formation rates from near unity to <0.5, in reasonable agreement with the dat
164  system, enabling chiral mode switching with near-unity transmission efficiency at 1550 nm.
165 abling large (>n) polarization rotation with near-unity transmission over a large operation bandwidth
166  triplet generation (<100 ps) and subsequent near-unity triplet transfer efficiency from surface liga
167 the ground state and low triplet yields, the near-unity triplet yields in the thiothymine series acco
168 to date among bio-organic molecules and have near-unity triplet yields, whereas the triplet yields of
169 ructural elements that lead to ultrafast and near-unity triplet-state population in thiobases in gene
170 m yield per absorbed photon (QYAP) values of near unity were observed for submonolayer coverages of 2
171 jection of (18)F-MK-6240 indicated linearity near unity when compared with DVR estimates and minimize
172 rocessed MoS(2) and WS(2) monolayers reaches near-unity when they are made intrinsic through electros
173 pt is inferred to succeed with a probability near unity, whereas the efficiency for creating an unpol
174  [M + 54]+/[M + 54 - 32]+ (loss of methanol) near unity, which distinguishes them from homoallylic FA
175 lls, followed by infection at a multiplicity near unity with HIV-1 or an HIV-1-derived vector.
176 ied compound and the tetramethyl variant are near unity, with values of 95 and 92%, respectively, in
177 l contamination while providing pathways for near unity yield and scalability.
178  energy transfer for all three compounds has near unity yield, regardless of differences in the sensi
179 crystals layer by layer into monolayers with near-unity yield and with dimensions limited only by bul
180 eld of P(+)H(B) (-) This all but matches the near-unity yield of A-side P(+)H(A) (-) charge separatio
181  structures with high production throughput, near-unity yield, pristine interfaces, precisely control

 
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