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1 larities retain appropriate type 1 error and high power.
2 we found stronger effects of low power than high power.
3 ed at detecting reproducible phenotypes with high power.
4 eased efficiency at the posterior wall using high power.
5 s, or using lasers with short wavelengths or high powers.
6 e, we demonstrate this scheme for generating high-power (~100 GW), near single-cycle, wavelength tuna
7 (129)Xe hyperpolarizer utilizing continuous high-power (~170 W) pump laser irradiation and a novel a
10 ought to evaluate the safety and efficacy of high-power ablation using unipolar signal modification a
13 nize micro-PMFC performance to attain stable high power and current density (38 muW/cm(2) and 120 muA
19 power management circuits, aiming to deliver high power and rectified outputs ready for serving as ba
27 unleash the possibility of a wide variety of high-power and high-temperature solid-state lighting, la
32 in the search for achieving high efficiency, high power, and low cost photo Zirconium phosphate was c
33 ever, such nano-structures can be damaged in high power applications such as heat resisted magnetic r
34 nergy storage has been driven by the rise of high-power applications such as electric vehicles, aircr
37 a new electrode design capable of delivering high power at a low current density to increase the ther
40 constant, Kelly's [Formula: see text] offers high power, but is outperformed by a novel statistic tha
43 ly intuitive and quantifiable ways, enabling high-powered comparative analyses of vocal acoustics.
44 tensive bioinformatic training need to apply high-power computational analyses to critical tasks like
45 th access to a high-throughput sequencer and high-power computing can adapt this protocol with ease,
46 nal semiconductor devices face challenges in high power consumption and short channel effects when sc
47 cing increasing efficiency challenges due to high power consumption associated with managing the wast
48 of different modules, complex operation, and high power-consumption hinder their widespread applicati
49 panedinitrile]), have become synonymous with high power conversion efficiencies (PCEs) in bulk hetero
51 de-coated perovskite solar cells (PSCs) with high power conversion efficiencies (PCEs), that is, grea
53 ronic quality semiconductors and have led to high power conversion efficiencies for solution-processe
54 organic halide perovskites have demonstrated high power conversion efficiencies in a range of archite
55 his is vitally important in order to achieve high power conversion efficiencies in organic solar cell
58 eration and transport properties that enable high power conversion efficiencies to be achieved in the
59 fficients and long diffusion lengths suggest high power conversion efficiencies, and indeed perovskit
63 from optimized BHJ morphology afford a very high power conversion efficiency (PCE) (19.02%) with hig
64 required for the combination of simultaneous high power conversion efficiency (PCE) and average visib
69 air without encapsulation can still reach a high power conversion efficiency (PCE) of 7.49%, which i
71 nsport, reduced carrier recombination, and a high power conversion efficiency approaching 15% for CsP
75 tandem cells are thoroughly evaluated and a high power conversion efficiency of 11.47% is achieved,
76 l-molecule solar cells have recently shown a high power conversion efficiency of 12% using low-bandga
81 carbon-wrapped VO(2)(M) nanofiber CE showed high power conversion efficiency of 6.53% under standard
82 external quantum efficiency of 71%, a record high power conversion efficiency of 9% and a fast respon
83 ciency exceeds 6 per cent, leading to a very high power conversion efficiency of more than 30 per cen
85 e to their low-cost solution processability, high power conversion efficiency, which has recently rea
88 onic properties coupled to demonstrations of high-power conversion efficiencies (PCE) at a range of b
91 l sodium ion battery performance in terms of high-power correspondence and long-term stability and en
92 Furthermore, dexmedetomidine cannot induce high-power delta oscillations or sustained hypothermia.
93 owever, will occur in systems operating with high power densities (>5 W/m(2)) and with finite-sized h
97 e-Retarded Osmosis (PRO) would generate very high power densities exceeding those in the conventional
98 rt charging times, long cycle lifespans, and high power densities, hold promise for powering flexible
99 energy storage devices with high energy and high power densities, long-term stability, safety and lo
101 OF were able to deliver both high-energy and high-power densities, validating the promise of unmodifi
102 he MFC stack connected in series generated a high power density (1.2muW/cm(2)), which is two orders o
103 timized on small anodes in order to maintain high power density and achieve high power output in the
105 e electrochemical supercapacitors often show high power density and long operation lifetimes, they ar
108 ric materials are prospective candidates for high power density electric storage applications because
109 h interest owing to their ability to provide high power density in lithium batteries; therefore, it i
111 rtation and surface reactions to result in a high power density of 1250 W kg(-1) with stable operatio
112 abricated using the printed films produces a high power density of 4.1 mW/cm(2) with 60 degrees C tem
113 ntain an energy density of 90 Wh kg(-1) at a high power density of 6.4 kW kg(-1) (based on the cathod
115 e phase angle of -73 degrees at 120 Hz and a high power density of up to 1323 W cm(-3) with a low rel
117 tanding hybrid membrane can achieve a record-high power density up to approximately 56.4 W m(-2) with
118 ectrical energy storage devices due to their high power density with thousands of cycle life compared
119 advantages of excellent output performance, high power density, and good durability, and are expecte
122 they can produce a high energy density or a high power density, but it is a huge challenge to achiev
123 ems, as they present multifold advantages of high power density, fast charging-discharging, and long
124 h to sodium metal batteries with high energy/high power density, long cycle life and high safety.
130 gration of a power source that satisfies the high-power-density requirement and does not increase the
131 f ratios paving the way for a cost-effective high power device paradigm on an Si CMOS platform are de
132 ngle crystals have potential applications in high power devices due to their surperior operational st
136 ast positive breakdown, that is the cause of high-power discharges known as narrow bipolar events.
137 The w-LED also displays a highly durable high-power-driving capability, and its working current c
141 underlies a wide range of technologies from high-power electronic switches for efficient electrical
142 ial for microelectronics thermal management, high-power electronics, and optoelectronics applications
143 rs (or electric double-layer capacitors) are high-power energy storage devices that store charge at t
146 fectively reduced, resulting in a remarkably high power factor of 904 microW m(-1) K(-2) at 300 K for
148 emodeled, n-type nanowires display extremely high power factors (~500 uW m(-1)K(-2)) that are orders
149 s Li(2)TlBi and Li(2)InBi have exceptionally high power factors and low lattice thermal conductivitie
152 hil count less than or equal to 32 cells per high power field (4.55, 1.62-12.78; p=0.0040), rectal bi
154 ith an elimination diet (<15 eosinophils per high power field at oesophageal biopsy), and who underwe
158 gene; (3) pyuria (>=10 white blood cells per high powered field in the urine); and (4) dysuria and fe
159 s a peak count of <20 eosinophils/mm(2) in a high-power field (corresponds to approximately <5 eosino
160 post-treatment maximum eosinophil counts per high-power field (eos/hpf) and a validated dysphagia sco
163 inophil count by a mean 86.8 eosinophils per high-power field (reduction of 107.1%; P < .0001 vs plac
166 number of 30 IgG4-positive plasma cells per high-power field in the orbital tissue is compatible wit
167 owed eosinophil infiltration of more than 40/high-power field in the stomach and duodenum, so he was
169 ined as >=5 polymorphonuclear leukocytes per high-power field on urethral Gram stain plus either visi
170 duce esophageal eosinophil counts to <15 per high-power field over a short-term treatment period of 4
171 cing esophageal eosinophil counts to <15 per high-power field over a short-term treatment period, wit
176 nophil density of 15 or more eosinophils per high-power field), from May 12, 2015, through November 9
177 ponds to approximately <5 eosinophils/median high-power field); and endoscopic remission as absence o
178 classification, counting of lymphocytes per high-power field, and morphometry is important for diagn
181 at later time points (mean+/-SEM capillaries/high-power field: 67.6+/-4.7 in control versus 44.1+/-4.
182 that demonstrates 3 or more erythrocytes per high-powered field before initiating further evaluation
183 1.0 to 5.1; P = .04) and > 5 mitoses per 50 high-power fields (AHR, 2.5; 95% CI, 1.1 to 6.0; P = .03
185 in mean esophageal eosinophil count in the 5 high-power fields (hpfs) with the highest level of infla
187 sceptibility, R2*, and R2' and the number of high-power fields with CD163-positive (r range, 0.64-0.7
188 easurements and number of 400x magnification high-power fields with iron-containing macrophages.
189 gment detected by histopathology in >=30% of high-powered fields was strongly associated with LBW (ad
190 e in stimulated Raman scattering, generating high-power forward and backward Stokes continuous-wave l
192 netic field gradient reduces the reliance on high-power gradient drivers, lowering the overall requir
193 =0.31) showed an ulcerative perforation in a high power group patient (treated by endoscopic stenting
198 xide (beta-Ga(2)O(3)) as a semiconductor for high power/high temperature devices and deep-UV sensors
199 y outperforms existing methods and maintains high power in a wide range of population structure setti
201 Storey's q-value procedure and maintain its high power in genomic data analysis, we propose a new mu
202 studies demonstrate that our methodology has high power in identifying gene-gene associations while m
204 radiation dose (TRD) were determined using a high-power infrared laser (at 1064 nm) trap by single an
207 ing characterized by the rapid scanning of a high powered laser over a thin bed of metallic powder to
209 essures up to 2.6 TPa (26 Mbar) generated by high-power laser irradiation and magnetically-driven hyp
210 spatio-temporal intensity distribution of a high-power laser pulse in the focal plane at full pulse
214 sent study evaluated the effect of different high-power-laser surface treatments on the bond strength
216 damage of the antennas limits their use with high power lasers: this liability can be overcome by emp
220 tical modulator, which can directly modulate high-power lasers with intensity up to 10(16) W cm(-2) t
222 ull-thickness MH from exposure to blue-light high-powered lasers from January 2012 to May 2014 at 2 i
223 ezers, which rely on expensive equipment and high-powered lasers that can degrade light-absorbing aer
224 roscopy and epifluorescence microscopy under high power LED illumination, followed by serial image se
231 sary Auger recombination characteristics for high-power light-emitting-diodes, lasers, single-molecul
232 is gaining importance because the demand for high-power lighting-emitting diodes (LEDs) is currently
236 pressions called keyholes, which occur under high-power, low-scan speed laser melting conditions.
237 ia requires expensive high speed cameras and high powered microscopes which is unsuitable for in vivo
238 ned as >=30 polymorphonuclear leukocytes per high-power microscopic field on a cervical Gram stain or
242 eases the laser-induced damage threshold for high-power nonlinear optical applications.Hybrid metal h
244 r proposed Bon-EV procedure can maintain the high power of the Storey's q-value procedure and also re
246 ted highly improved capacity retention under high-power operation ( approximately 600 mAh/g at 6.69 m
247 esting functionality of micro-PMFCs with the high-power operation of an internal supercapacitor for c
248 tion of a microbial fuel cell (MFC) with the high-power operation of an internal supercapacitor.
249 in both basic and applied sciences, such as high power optical amplification, optical communications
250 eace 1) depend on whether one belongs to the high-power or low-power party and 2) explain citizens' f
251 y based modality to ablate solid tumors with high power, or increase local permeability in tissues/tu
252 quantum cascade laser frequency comb with a high power output and narrow beatnote linewidth at room
253 ccurs when an organism produces a relatively high power output by releasing slowly stored energy almo
258 -packed structure, short acclimation period, high power output, and high sensitivity to a wide range
260 hibits low polarization, stable cycling, and high-power output (up to 10 mA/cm(2)) even in carbonate
261 ting yarn, and nonconductive binding yarn, a high-power-output textile triboelectric nanogenerator (T
262 -N system, thereby bringing all-transparent, high-power oxide electronics operating at room temperatu
263 ltrafast PCR test in less than 3 min using a high powered Peltier-based thermal cycler under bubble-f
269 photoconversion of fluorescent proteins with high-power, pulsed laser illumination is negligible, thu
270 -doped mode-locked fibre lasers that produce high power pulses recently gained popularity for industr
272 w-energy attenuation and patch antennas with high-power radiation at frequencies from 5.6 to 16.4 GHz
274 /contrast injections and steam pops, whereas high-power radiofrequency applications, drag ablations,
278 uges are seldom used in the field due to the high-power requirements, size, and operational complexit
279 emperature superconductor coils(1), and such high-power resistive magnets are available in only a few
282 mum gain coefficient, of 180 cm(-1), exceeds high-power solid-state amplifying media by orders of mag
283 d are subject to being damaged at adequately high power (some antennas can handle just a few milliwat
285 range, the quantum-cascade laser (QCL) is a high-power source with the potential for high-frequency
288 utamatergic neurotransmission constrains the high-power state because blocking ionotropic or metabotr
291 ly tunable laser architecture to demonstrate high power surface emission at a wavelength near 4.9 mum
292 (i) our samples were very large, leading to high power to detect effects that exist, and (ii) the cr
293 lection, recombination and penetrance confer high power to recover known antimicrobial resistance mec
294 zero initial stiffness, full collapsibility, high power-to-weight ratio, puncture resistant, and high
300 Although the power literature has focused on high power, we found stronger effects of low power than
301 across all levels of the tree hierarchy with high power while accounting for the overall false positi