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1 ormulating, analyzing and predicting complex phenomena.
2 ovides a route to rationalize thermophoretic phenomena.
3 platform for realizing many exotic physical phenomena.
4 tructure and our understanding of collective phenomena.
5 f this shielded domain of polyionic chemical phenomena.
6 amples particularly related to the oxidation phenomena.
7 commodating both evolutionary and ecological phenomena.
8 simulations elucidate the governing buckling phenomena.
9 stems that exhibit a multitude of collective phenomena.
10 any dynamic systems display complex emergent phenomena.
11 ross SCO1 pedigrees remain poorly understood phenomena.
12 and but few artificial systems exhibit these phenomena.
13 research fields related to complex nonlinear phenomena.
14 ing process operates in all of these climate phenomena.
15 We investigated these two counteracting phenomena.
16 al properties that arise from combining both phenomena.
17 method for the development of simulating the phenomena.
18 ading to the discovery of previously unknown phenomena.
19 s underlying the spatial propagation of both phenomena.
20 anding molecular mechanisms underlying these phenomena.
21 nditions can give rise to striking dynamical phenomena.
22 hetic materials and complex condensed matter phenomena.
23 articles and forces that might explain these phenomena.
24 ithout showing self-quenching or aggregation phenomena.
25 when studying cellular and biotechnological phenomena.
26 of low-level visual and high-level cognitive phenomena.
27 ve emerged as key players in neuroplasticity phenomena.
28 onment by adopting its point of view in such phenomena.
29 , with greater attention paid to less common phenomena.
30 lations predict several novel and unexpected phenomena.
31 an allow for the exploration of new physical phenomena.
32 anding of physical, chemical, and biological phenomena.
33 m for topological, valleytronic, and optical phenomena.
34 n der Waals engineering to produce interface phenomena.
35 synthesis in the discovery of new biological phenomena.
36 es play in dictating intergranular corrosion phenomena.
37 iphile-mineral interactions in diverse other phenomena.
38 ponent of propofol-induced cortical spectral phenomena.
39 s holmium, acts to suppress Walker breakdown phenomena.
40 as a 'counter' for a vast range of molecular phenomena.
41 , being the trigger of multiple nonclassical phenomena.
42 nexpected insights into apparently unrelated phenomena.
43 transmission abnormalities in complex mental phenomena.
44 forcing that precedes switching and bursting phenomena.
45 for quantitative analysis of these nonlinear phenomena.
46 mans have implicated insular cortex in these phenomena.
47 l to a broad range of chemical and transport phenomena.
48 mically-induced stochastic pinning/depinning phenomena.
49 ormational control and molecular recognition phenomena.
50 materials, and are central to many important phenomena.
51 methodology is applicable to a wide range of phenomena across many energy technologies, emissions red
52 molecular and cellular levels, yet how these phenomena affect cortical circuit activity remains uncle
53 nd opacity decreasing are severe degradation phenomena affecting oil paints with zinc oxide, one of t
54 that our model can reproduce human cognitive phenomena and achieve comparable memory performance in b
55 exploring many exotic transport and optical phenomena and applications predicted for topological cry
56 overing previously unknown relationships and phenomena and as a powerful way of understanding the imm
57 ongbird as a model system for studying these phenomena and contribute to our understanding of statist
58 sing platform for exploring condensed matter phenomena and developing technological applications.
59 es reveal the compensatory character of some phenomena and explain the highly diverse and unpredictab
60 alaria to improve our understanding of these phenomena and facilitate the design of mitigation strate
63 ed to design and understand nanoscale chiral phenomena and highlight important recent advances releva
64 science due to the prevalence of oscillatory phenomena and highly multivariate experimental recording
65 nanostructures to study coherent electronic phenomena and improve the operation of nanoelectronic de
66 ely studied as templates for unique physical phenomena and in the design of reconfigurable electronic
67 is known about the kinetics of such assembly phenomena and it remains a key challenge to elucidate ho
68 sted functional role in numerous biophysical phenomena and its importance as a general mechanism of h
70 ditional route to realize conceptual quantum phenomena and novel device functionalities, such as real
71 s but it could also lead to insight into new phenomena and novel routes to synthesize new phases.
75 simulations designed to unravel GB migration phenomena and set it in a GB migration context that acco
76 test the model by simulating 10 experimental phenomena and show that it can provide an adequate accou
77 ceptual predictions by controlling transport phenomena and spatial distribution of diffusible signals
80 mechanisms and DMH representation of the two phenomena and thus to understand how the same lesion cou
81 , making it possible to explore new physical phenomena and to foresee novel applications in the field
82 solids has been reported, resulting in novel phenomena and unique control of the emission, absent in
83 polymer nanoparticles optical properties and phenomena, and discuss the current understanding of exci
86 ire on subjective quality of vision, optical phenomena, and spectacle independence was performed.
87 ork," a model that explains diverse cortical phenomena, and suggest that a decreasing E/I ratio with
88 ate chemical and diffusional proton exchange phenomena, and to improve the interpretation of results
89 s enabled by defects, size effects, critical phenomena, anharmonicity, and the spin degree of freedom
90 sed to realize conditions for the discovered phenomena are applicable to quite different multicompone
98 rmined which of these abnormal neurocellular phenomena are primary events and sufficiently contributo
99 cal and biological systems suggests that the phenomena are robust and can survive in the face of diso
104 ental tests, we found that these memory-like phenomena arise from a confluence of rapid, short-lived
106 e disks, and identified a range of different phenomena arising from competing energy contributions.
107 tribute to the understanding of such diverse phenomena as atmospheric structure, mass transfer, magne
109 areas of physics, underpinning such diverse phenomena as ferromagnetism, superconductivity, superflu
110 dying shock waves and other high-strain-rate phenomena, as well as a broad range of processes induced
114 etermine and quantitatively evaluate kinetic phenomena associated with supramolecular assemblies, in
115 level reveals novel nanoscale crystal-growth phenomena associated with the lateral size and surface c
116 mplex in that chemical, electronic, and spin phenomena at atomic scales can manifest in their collect
117 izing the current understanding of plasmonic phenomena at extremely short length scales, we discuss t
118 ennial-scale events are common hydroclimatic phenomena at least in the East Asian monsoon system.
123 e for researchers interested in studying any phenomena based on intermolecular interactions with liga
124 parameters to replicate specific behavioral phenomena, because we were interested in the emergent co
127 ave propagation and light-matter interaction phenomena beyond the conventional diffusive regime.
128 map errors impact our understanding of these phenomena, but quantifying these impacts is difficult be
129 velocity, results reveal that high-injection phenomena can already take place in the far field and be
132 g magnetic field, charged particle, and wave phenomena context for Juno's passage over the poles and
133 Better mechanistic understanding of these phenomena could provide targets for therapies that modul
135 tivity, as well as proteolytic and lipolytic phenomena, decisive steps in such a ripening process, co
137 althy outbred rats could indicate that these phenomena do not always model heritable absence epilepsy
139 artificial honeycomb lattice-exhibits novel phenomena due to the tunable interplay between topology
142 rch effort, much remains unknown about these phenomena, especially the causative agents of many coral
144 o quantum-mechanical signals, however, these phenomena face fundamental challenges that arise from th
145 and computational solutions to exploit these phenomena for cancer therapy and biomarker discovery.
147 mation and self-organization are fascinating phenomena found widely in nature and in laboratory envir
160 gnitude evaluation to a wide variety of core phenomena in decision making and challenge the idea that
161 offer a unifying explanation for contextual phenomena in fields ranging from visual psychophysics to
162 lution under selective pressure are inherent phenomena in life, and but few artificial systems exhibi
163 ientifically and technologically significant phenomena in LPBF, including melt pool dynamics, powder
166 in insights into one of the most fundamental phenomena in nature: biodiversity that seems to be exclu
170 We provide a detailed analysis of tipping phenomena in periodically forced systems and show that,
173 T) remains among the most thoroughly studied phenomena in solid state physics, but the complexity of
177 We argue that the model can account for more phenomena in the chosen set than these other similar in
179 not achieved parity with other global change phenomena in the level of concern and interest it receiv
181 t, instead of supersolidity, revealed exotic phenomena including quantum plasticity and mass supertra
182 oyed to investigate a number of experimental phenomena including substituent effects on reactivity, c
183 role in our understanding of a wide range of phenomena, including genomic imprinting, X-chromosome in
184 iquid, reflects a complex set of cooperative phenomena, including H/D exchange across the solid-liqui
185 l is crucial in the study of a wide range of phenomena, including planetary formation and asteroid im
186 ibrium systems can display a rich variety of phenomena, including self-organized synchronization and
188 ey fingerprints of several important climate phenomena, including the evolution of the Arctic sea ice
190 Understanding how these cellular and network phenomena interact is vital to decipher the roles of emo
192 criticality of understanding the biochemical phenomena involved with cytoskeleton/membrane attachment
196 s, one of the most understated developmental phenomena is that of straightness - a root will grow dow
197 emarkably little is known about the physical phenomena leading to nucleation of new perfect crystals
198 e excellent systems for studying fundamental phenomena linked to the operation of technical catalysts
200 hasising the important role this cooperative phenomena may play in the RecA-facilitated homology sear
202 cer metastasis, and many other multicellular phenomena, motile cells group into a collective and migr
204 nonlinear softening, hardening, and veering phenomena (near crossing), where the frequencies of two
206 roteins is central to a number of biological phenomena, notably the gating of stretch activated ion c
207 ead attention due to both the novelty of the phenomena observed and the ability to reliably pattern t
210 a model is inadequate and that many physical phenomena occur during grain boundary migration for whic
211 tural laws and principles that determine the phenomena occurring during the olive oil oxidation.
213 wing how structural priming drives real-life phenomena of bilingual language use beyond the priming o
214 which were characterized by the contrasting phenomena of cortical network fragmentation and global s
216 e color palette open to image other cellular phenomena of interest, as demonstrated by our simultaneo
217 al studies can reveal population and network phenomena of relevance for understanding mechanisms of c
219 method provides a way of exploring many-body phenomena on a programmable quantum simulator and could
221 s and chemistry behind these novel transport phenomena on the nanoscale have been explored in depth o
222 sses is essential to understand many natural phenomena, particularly in biology, including the cell-f
224 , the results of which suggest that cultural phenomena pervade the lives of these apes, with potentia
226 nsition metal oxides host a wealth of exotic phenomena ranging from charge, orbital and magnetic orde
228 id to highlight possible artifacts, and side phenomena related to the absorption and relaxation prese
229 robiome to better recapitulate physiological phenomena relevant in the natural world outside the labo
230 The proposed model explains a wide range of phenomena reported in rivalry, including the three hallm
231 However, "swing effect" or "gate opening" phenomena resulting in an enlargement of the windows hav
233 ain type shows extremely weak superstructure phenomena revealed by atomic-resolution scanning TEM (ST
234 tails of the circuit mechanisms behind these phenomena, revealing new roles for inhibition in control
237 properties, causing a variety of nontrivial phenomena such as circular dichiroism for chiral molecul
238 egrees of freedom, giving rise to remarkable phenomena such as colossal magnetoresistance and metal-i
239 Dipole-dipole interactions, which govern phenomena such as cooperative Lamb shifts, superradiant
241 ms also provide opportunities to study novel phenomena such as magnetism which broadens the range of
242 optical media for state-of-the-art photonic phenomena such as multi-photon absorption, triplet-tripl
243 has inspired a number of intriguing optical phenomena such as one-way transport and Weyl points.
245 to be involved in a wide range of biological phenomena such as protein half-life regulation, protein-
246 pectra in a single ion (CaH(+)) and coherent phenomena such as Rabi flopping and Ramsey fringes.
247 for understanding a range of time dependent phenomena such as response times, long and medium term p
249 Likewise, 2D materials exhibiting correlated phenomena such as superconductivity, magnetism, and ferr
250 interaction (SOI) can induce unique quantum phenomena such as topological insulators, the Rashba eff
251 the regulation of several addiction-related phenomena, such as drug intake, withdrawal, and relapse.
252 o exhibit interesting and potentially useful phenomena, such as highly efficient energy transfer, ano
253 point to central mechanisms underlying this phenomena, such as increased activation of NMDA receptor
254 are likely to evolve in response to cultural phenomena, such as language and tool-making, which are a
255 ts has been shown to lead to many intriguing phenomena, such as loss-induced transparency, unidirecti
260 uely set to study complex out-of-equilibrium phenomena thanks to the simplicity of the underlying Sto
261 ocyanin-production system reveals a range of phenomena that accompanies anthocyanin biosynthesis in t
262 vity and ferromagnetism are two antagonistic phenomena that combined can lead to a rich phenomenology
263 ch model naturally occurring transcriptional phenomena that control social defeat stress behavior.
264 to focus on the characterization of graphene phenomena that drives innovation rather than a lengthy d
267 of topological phase transitions and related phenomena that range from criticality of quantum metal-
268 er increasingly complex questions concerning phenomena that range from the genetic, molecular, and ce
269 in origin from the various exchange coupling phenomena that underlie conventional spin electronics (s
270 systematic review and analysis of different phenomena that violate a basic principle, Kasha's rule,
271 This allows the merging of state-of-the-art phenomena that was hitherto attainable in media that dem
273 able of interpreting relevant electrokinetic phenomena, the results gathered also provide necessary i
274 italizes on two established physical organic phenomena; the alpha-effect and the Thorpe-Ingold effect
276 ic quantifiable behavioral and physiological phenomena, therefore, serve as extremely useful tools fo
277 els are beneficial for understanding complex phenomena; therefore, we trialed the application of late
278 coalescence, recent work has combined these phenomena through a reconciliation structure, the labele
279 o open a route for exploring exotic physical phenomena through phonon properties in Weyl semimetals.
280 We study the phase diagram and the pseudogap phenomena throughout the entire BCS-BEC crossover, using
281 nce from experimental, acute, and persistent phenomena to demonstrate the advantages of adopting a st
282 otechnology that would allow molecular-level phenomena to drive such movements in artificial systems
283 istical learning and the origin of human ERP phenomena to unexpected stimuli.SIGNIFICANCE STATEMENT T
287 ologies allow characterization of functional phenomena using a large number of related phenotype meas
292 nsformation optics applied to thermoelectric phenomena, where thermal and electric flows are coupled
293 e3, we realize emergent interfacial magnetic phenomena which can be tailored through artificial struc
294 of polarization have been limited to surface phenomena, which has restricted the probing of the dynam
295 been repeatedly misinterpreted as epigenetic phenomena, which has resulted in inaccurate conclusions
297 lid state physics, but the complexity of the phenomena, which usually involves cooperation of many de
298 xploited to produce switching and transition phenomena whose kinetics are governed by the same Allen-
299 e presence of the coiled-coil replaced those phenomena with CL-dependent binding and localization.
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