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1  by 400 keV He(+) (simulating alpha-particle annealing).
2 tes for approximately 600 bp of DNA to be re-annealed.
3  state-of-the-art implementations of quantum annealing.
4 amorphous but can be readily crystallized by annealing.
5 ene conversion by synthesis-dependent strand annealing.
6 ed via metal-ligand coordination and thermal annealing.
7 usly takes an eccentric configuration during annealing.
8  optimizing an energy function via simulated annealing.
9 and electronic-structure disorder by thermal annealing.
10 ess potent than Ded1p in facilitating strand annealing.
11 t variably inhibit Taq polymerase and primer annealing.
12 on constant and the time constant of dynamic annealing.
13 d by dehydrogenation reactions using thermal annealing.
14 e of both TMD films that is recoverable with annealing.
15 ents corresponding to stepwise unwinding and annealing.
16 ed by a solvothermal reaction and subsequent annealing.
17 e edges through two pyrrole rings by thermal annealing.
18 ncreased granule organisation like following annealing.
19 ientation "ribbon" structure through thermal annealing.
20 hysical resource for optimization in quantum annealing.
21  basal plane, and cannot be removed by local annealing.
22  complicated processes of doping and thermal annealing.
23  important implications for post-irradiation annealing.
24 temperature (Tg) and ambient pressure sub-Tg annealing.
25 tions and, therefore, a platform for quantum annealing.
26 eterostructured nanoparticle through thermal annealing.
27 previously subjected to high-pressure sub-Tg annealing.
28 the basic Sm core residues necessary for RNA annealing.
29 es during subsequent ambient pressure sub-Tg annealing.
30  It is also found to be sensitive to thermal annealing, a result that we attribute to the influence o
31     The film demonstrated high resistance to annealing above 850 degrees C without degradation of its
32 rsionally constrained DNA to investigate the annealing action of HARP on a physiologically relevant s
33                    The results show that RNA annealing activity increases with the number of arginine
34  double-stranded RNA circle, and this strand-annealing activity is enhanced by TDRD3.
35                      The RNA binding and RNA annealing activity of Hfq from Escherichia coli, Pseudom
36 1 by suppressing the affinity, dynamics, and annealing activity of LAF-1, suggesting that ATP may pro
37 ing a fluorescence-quenching assay for ssDNA annealing activity of RAD52.
38 dynamic LAF-1-RNA interaction stimulates RNA annealing activity.
39 cases," their activities also include duplex annealing, adenosine triphosphate (ATP)-dependent RNA bi
40 condensates for the realisation of a quantum annealing algorithm in presently experimentally accessib
41                                Solvent vapor annealing allows deterministic growth of P3HT aggregates
42                                         Post-annealing alpha-Fe2O3 in a reducing atmosphere leads to
43 ction ( 95%) brookite thin films prepared by annealing amorphous titania precursor films deposited by
44 present the application of radiative thermal annealing, an easily scalable processing method for synt
45  apply toxic acids and high energy-consuming annealing, an interconnected silicon network is directly
46 ts large-scale numerical simulations of zone annealing and chemo-epitaxy processing of BCP films to a
47 er can be further improved by combining zone annealing and chemo-epitaxy techniques.
48                           We report multiple annealing and dC-tailing-based quantitative single-cell
49 e recognition and polar induction, and (iii) annealing and dehydration, followed by site-selective re
50  in air allows NaCl to form directly without annealing and displaces the corresponding metal and sulf
51                    In vitro, RAD52 has ssDNA annealing and DNA strand exchange activities.
52    This is achieved by optically sensing the annealing and melting of mirror-image l-DNA analogs of t
53  first G3T monomer is rate-limiting for both annealing and melting processes.
54 , and a suppression of non-homologous primer annealing and nonspecific amplification.
55 n contents and conditions that impact primer annealing and product melting and eliminates the require
56 ing conditions required for effective primer annealing and product melting during each cycle without
57 s during each cycle of amplification, primer annealing and product melting.
58 mation, and so are complicated by post-shock annealing and reverberations.
59 ated PGE utilizes synthesis-dependent strand annealing and single-stranded DNA incorporation pathways
60  in both extended synthesis-dependent strand annealing and slow crossover events of DSB repair during
61 east two consecutive rounds of microhomology annealing and synthesis across the break site.
62 is coarsening process is assisted by thermal annealing and the slow evaporation of 1,8-diiodooctane,
63 ct of compression is countered by subsequent annealing and vice versa.
64 l where gel-extracted RNA strands are slowly annealed, and a one-pot transcription and anneal procedu
65 glas, improved crystallinity of PZT by laser annealing, and optimum volume of crystalline PZT are fou
66 n hydrothermal modifications, but native and annealing (ANN) modified starches showed the most crysta
67 ing rate, P3HT molecular weight, and thermal annealing are investigated extensively, resulting in tre
68 ed a decrease in DNA binding, unwinding, and annealing, as expected for a functional RQC domain.
69 reaction couples structured with TFMG/TE are annealed at 673 K for 8-360 hours and analyzed by electr
70                                              Annealed at the high temperature, the fullerene molecule
71 heet colloidal solutions, followed by vacuum annealing at 200 degrees C.
72  at 0.9 VRHE) was reproducibly observed upon annealing at 300 degrees C.
73                                    Following annealing at 348 K, water molecules became highly ordere
74                                        After annealing at 350 degrees C, the crystalized TiO2 enhance
75    After multi-pass rolling and intermittent annealing at 550 degrees C for 300 s, the obtained UFG-1
76                                           On annealing at 600 degrees C for 300 s, the average size o
77 r nitrate and uric acid, followed by thermal annealing at 900 degrees C for 1h.
78 crystalline to crystalline structures during annealing at different temperatures.
79                                         Upon annealing at higher temperatures (>10 K), the triplet is
80                                      Thermal annealing at modest temperatures (e.g., 50-100 degrees C
81                                              Annealing at the glass transition temperature at ambient
82 .47As substrate by comparing the forming gas annealing (at atmospheric pressure with a H2 partial pre
83 how that the resulting quantum and classical annealing-based classifier systems perform comparably to
84   However, in contrast to these methods, the annealing-based classifiers are simple functions of dire
85                      Indeed, when allowed to anneal between phases of compression and extension, the
86 tages of fibril formation, while they mostly anneal block-wisely to form elongated fibrils.
87 repair, including synthesis-dependent strand annealing, break-induced replication, and meiotic recomb
88                                 We find that annealing, but not U6 RNA binding, is highly dependent o
89 approach their ambient condition values upon annealing, but the difference in relaxation time of dens
90                  DdrB promotes high-fidelity annealing by constraining specific bases from unauthoriz
91         At the time, the implications of DNA annealing by TWINKLE were unclear.
92 -ray scattering data in rigid-body simulated annealing calculations provides a powerful approach for
93 at the effects of hot compression and sub-Tg annealing can be combined to access a "forbidden glass"
94 emperature, depending on the low-temperature annealing condition.
95  by varying the BV dopant concentrations and annealing conditions.
96 on niche where potential benefits of quantum annealing could be objectively assessed.
97 ry of these films is markedly different from annealed crystalline Li2S, which is shown to be electroc
98 achlup action using the conformational space annealing (CSA) method.
99 talline states using very fast melt, quench, anneal cycles, although the resulting states are extreme
100 y of the pristine gap is achieved by thermal annealing, demonstrating that reversible band engineerin
101 ed the texture evolution in high-temperature annealed die-upset magnets, which had significant impact
102 polymorph phases, found in films produced by annealing directly after synthesis without any exposure
103 ise that could be misinterpreted as flow and annealing discontinuous vessel segments seem to be major
104 thesis, whilst filling DNA gaps or partially annealed DNA ends, which can give rise to unligatable in
105 age response B)] in complex with a partially annealed DNA intermediate to 2.2 A.
106 (FL) and Redbeta(177) to ssDNA substrate and annealed duplex product may be important for Redbeta to
107 n general, Redbeta(FL) binds more tightly to annealed duplex product than to ssDNA substrate, while R
108  to different lengths of ssDNA substrate and annealed duplex product.
109 m unauthorized association and only releases annealed duplex when bound strands are fully complementa
110  The covalently coupled product is formed by annealing each surface, leading to the removal of Ag ato
111 scades, results in a decrease in the dynamic annealing efficiency and an increase in both the amorphi
112 ad range of inherent states, suggesting that annealing embrittlement is controlled almost solely by a
113                                         This annealing embrittlement sensitivity is shown to vary sub
114 s were explored by comparing the behavior of annealed (equilibrium) and as-deposited (non-equilibrium
115 nfolding activity of RHAU leads to efficient annealing exclusively within the same DNA molecule.
116 late (PFMA) core via a fragmentation-thermal annealing (F-TA) process, resembling the "self-seeding"
117  addressed the contribution of single-strand annealing factors HR Rad52 and translesion DNA polymeras
118          Here, we use mechanical milling and annealing followed by compression in diamond anvil cell
119  cells by their bursting behavior (Simulated Annealing for Bursty Expression Clustering, SABEC) and a
120      Herein, we report that TWINKLE uses DNA annealing function to actively catalyze strand-exchange
121 /FTIR investigations suggested that balanced annealing generates an optimal degree of Pt surface enri
122 nduction (GLC), while after high-temperature annealing, GLC becomes insignificant and trap-limited co
123  the SDA by using a combination of simulated annealing (global optimization) and Rietveld refinement.
124 photoelastic coefficient P 12 profile in non-annealed H(+) implanted GaAs obtained from the analysis
125 l pressure of 0.04 bar) and H2 high-pressure annealing (H2-HPA at 30 bar) methods.
126 ated from films formed via radiative thermal annealing have equivalent efficiencies to those annealed
127 es via a mechanism we call Inter-Fork Strand Annealing (IFSA) that depends on the recombination prote
128               This paper explores the use of Annealed Importance Sampling (AIS) to address these rest
129                                        While annealing improves local chemical and electronic uniform
130                                        While annealing improves Neel-ordering temperature in BaFe2As2
131 stable semiconducting state (2H) when mildly annealed in a nitrogen atmosphere.
132 ere observed in LaBaCo2O5.5+delta thin films annealed in air and ethanol ambient, respectively.
133                                  After being annealed in N2 flow, the surface-bound surfactants are c
134 her the pressure is reduced or the sample is annealed in vacuum.
135 ovel pulsed-ion-beam method to study dynamic annealing in 4H-SiC ion-bombarded in the temperature ran
136 y optimization problems is quantum adiabatic annealing in a transverse magnetic field.
137 tion of N-decorated and surface defects when annealing in N2 atmosphere.
138 to a semiconducting state is accomplished by annealing in vacuum at 400 degrees C.
139       We investigated the mechanism of U4/U6 annealing in vitro using an assay that enables visualiza
140 ate glass at 1 GPa at Tg, followed by sub-Tg annealing in-situ at 1 GPa.
141 rfect crystals within deformed metals during annealing, in particular how and where volumes with near
142 ains and even 2D ribbons, and how doping and annealing influences formation of 2D order.
143 ervariable regions from eukaryotic microbes: anneal-inhibiting blocking primers and peptide-nucleic a
144 hemical data reveal a mechanism for accurate annealing involving DdrB-mediated proofreading of strand
145  reported that inverse planning by simulated annealing (IPSA) can improve the quality of brachytherap
146                                    Simulated annealing is a powerful stochastic search algorithm for
147 all mobility enhancement by high-temperature annealing is determined by TLC.
148          Although synthesis-dependent strand annealing is preferentially utilized, our work unequivoc
149 croplate field-effect transistors by thermal annealing is reported.
150 d the problems associated with inter-adaptor annealing/ligation.
151 magnesium alloy and can even increase during annealing motivates atomic-level study of dislocation st
152  new search algorithm called SANA (Simulated Annealing Network Aligner) and apply it to protein-prote
153 along threading dislocations in sequentially annealed nitride metal/semiconductor superlattices, and
154                 Thus, alpha-particle induced annealing occurs and must be considered in models of alp
155 oto-thermally heated by scanning laser spike annealing of an absorbing layer, then melted and cooled
156 stranded nucleic acid structures formed upon annealing of an RNA strand to one strand of duplex DNA.
157 we show that oligoarginine peptides slow the annealing of complementary oligoribonucleotides by up to
158  ssDNAs >50-nucletides long and promotes the annealing of complementary ssDNA to generate highly bran
159                       Alt-EJ frequently uses annealing of microhomologous sequences to tether broken
160  microhomology-mediated end-joining requires annealing of single-strand DNA ends, we addressed the co
161                             High-temperature annealing of the films is shown to produce crystalline f
162                                          The annealing of the scaffold to form functional RNAs is int
163  e-beam evaporation of Ni and the subsequent annealing of the ZnO/Ni core/shell nanostructures.
164 ial system, we studied the effect of thermal annealing on a 15 nm thick NbO2 thin film sandwiched ins
165 act of H2 pressure during post-metallization annealing on the chemical composition of a HfO2/Al2O3 ga
166 acture of experimental prototypes of quantum annealing optimizers with sizes approaching the practica
167 omogeneous "half adaptor" (HA), generated by annealing P oligo (carrying a phosphate group at the 5'
168 ation reactions are finely controlled by the annealing parameters, which govern the onset of successi
169 nk writing with a focused laser that locally anneals printed metallic features "on-the-fly." To optim
170            Here we use quantum and classical annealing (probabilistic techniques for approximating th
171 ly annealed, and a one-pot transcription and anneal procedure.
172    We observed that technical details in the annealing procedures can induce non-negligible local cha
173            A high-speed incandescent tension annealing process (ITAP) is used to increase the modulus
174 eveal a major change in the dominant dynamic annealing process at a critical transition temperature o
175 ompletely removed from the film by a thermal annealing process at temperatures </=100 degrees C and t
176 e (4 inch in diameter) using a rapid thermal annealing process facilitated by a nickel, Ni thin film
177 ture of the quantum fluctuations driving the annealing process has a decisive effect on the final dis
178  functional thin films and layers and a post-annealing process in vacuum in order to remove the organ
179 tially form the heterotrimer, and a rational annealing process led to the desired oligomer.
180 e same features before and after the thermal annealing process, demonstrating that the charge transpo
181 rface of Li3V2(PO4)3 microspheres during the annealing process.
182 an ion implantation step and a two-step post-annealing process.
183  crystallization of Nd2Ir2O7 during the post-annealing process.
184  electrospinning and a subsequent controlled annealing process.
185                     The two dominant dynamic annealing processes have an order of magnitude different
186 lating stoquastic and non-stoquastic quantum annealing processes, and experimentally, using a prototy
187                         The dominant dynamic annealing processes, however, remain unknown even for cr
188  temperature is dominated by complex dynamic annealing processes, involving migration and interaction
189 ne solids often proceeds via complex dynamic annealing processes, involving migration and interaction
190 experimentally, using a prototypical quantum annealing processor, the ability of quantum annealers to
191 ort the crystal structure of a single-strand annealing protein [DdrB (DNA damage response B)] in comp
192                            DNA-single strand annealing proteins (SSAPs) are recombinases frequently e
193 is validated and optimized using a simulated annealing protocol to generate potential energy vs. RMSD
194 ess heating and increase fidelity of quantum annealing protocols in complex many-particle systems.
195 ciple allows one to realize arbitrarily fast annealing protocols or implement fast dissipationless dr
196 gation of an Nd2Ir2O7 film with a short post-annealing provides insight into the mechanism for crysta
197                                      Quantum annealing (QA) serves as a specialized optimizer that is
198 and interstitial diffusion, with the dynamic annealing rate limited by the migration and interaction
199                                  The dynamic annealing rate shows an Arrhenius dependence with two we
200 t stabilize the U6 'telestem' helix increase annealing rates by up to 15-fold, suggesting that telest
201 ge involves active coupling of unwinding and annealing reactions by the TWINKLE.
202 and break-induced synthesis-dependent strand annealing reactions.
203 ubstantially in comparison with those of the annealed reference magnets, which is distinct from the r
204 s transition from the thermal to the quantum annealing regime.
205 f molecules on each surface before and after annealing reveal that on Ag(111), structures rearrange b
206 ues of the native, heat-moisture treated and annealed rice starches ranged in 68.9-100, 61.2-88.9 and
207 s (FETs) is described, through rapid thermal annealing (RTA) under a controlled O2 environment (p-typ
208 tallic PGex contacts formed by rapid thermal annealing (RTA).
209  have a theoretical advantage over simulated annealing (SA) via quantum tunneling.
210 ained molecular dynamics (MD) with simulated annealing (SA).
211                   Synthesis-dependent strand annealing (SDSA) is the preferred mode of homologous rec
212 reak (DSB) by the synthesis-dependent strand-annealing (SDSA) pathway.
213 th conditions reveal signatures of simulated annealing searches.
214 a low-cost plasmonic LSPR biosensor based on annealed self-assembled spherical gold nanoparticles (Au
215                                    Even well-annealed single-grain metallic films contain dislocation
216                      We demonstrate that the annealed sites recapitulate the effects of polymerizatio
217 iation, but not preferential pausing, at the annealed sites.
218 pite the theoretical lack of single-stranded annealing sites.
219 ce state changes following demagnetizing and annealing, specific vertex motifs retain low-energy conf
220        However, the demonstration of quantum annealing speedups remains to this day an elusive albeit
221 propose that the Hfq CTD displaces sRNAs and annealed sRNAmRNA complexes from the Sm core, enabling H
222 pair toward highly deleterious single-strand annealing (SSA) and end-joining processes that led to th
223 ls and inhibit RAD52-dependent single-strand annealing (SSA) in human cells.
224                                Single-strand annealing (SSA) is a DNA double-strand break (DSB) repai
225 iophage lambda that promotes a single strand annealing (SSA) reaction to generate end-to-end concatem
226 ologous recombination (HR) and single strand annealing (SSA), and in conferring resistance to cisplat
227  interdiffusion" protocol is demonstrated by annealing stacked layers of aqueous solution deposited f
228 e and map the exact same gauge volume in the annealed state.
229 of only a single Ge growth step and a single anneal step.
230                           The addition of an annealing step close to the Ge-Sn eutectic temperature (
231                                        A key annealing step was necessary to perfect the isoalloxazin
232 ime, by combining bandgap tuning with an air-annealing step, a CBTSSe-based PV device with 5.2% PCE (
233 hat somehow integrates the end resection and annealing steps of the reaction.
234 vities of TWINKLE: strand-separation, strand-annealing, strand-exchange and branch migration suggest
235  on solids by a simple yet efficient thermal annealing strategy.
236 nt resistance measurements were performed on annealed strontium titanate (SrTiO3, or STO) single crys
237 hnology in Saccharomyces cerevisiae based on annealing synthetic oligonucleotides at the lagging stra
238  X-ray diffraction using a radiative thermal annealing system with device performances, we mapped the
239 ent a robust fundamental correlation between annealing temperature and catalytic activity, where a ap
240  heterojunctions, or alloys depending on the annealing temperature and composition.
241  found that, the growth rate scales with the annealing temperature and the graphene height is proport
242 his quantitatively shows that an increase in annealing temperature leads to a reduction in copper vac
243  the resulting GNRs can be controlled by the annealing temperature, providing GNR films with optical
244     More interestingly, with the increase of annealing temperature, the crystallinity of the Ni shell
245 he qPCR conditions, primer concentration and annealing temperature, were optimized.
246 erage length of the cylinders increases with annealing temperature, with a narrow length distribution
247 structure can be easily controlled by tuning annealing temperature.
248 erials, which was more prominent at elevated annealing temperature.
249  continuously decreased with the increase of annealing temperature.
250 lk of the sample in the deformed state, then anneal the sample and map the exact same gauge volume in
251  as needed to solve specific problems and to anneal the system at room temperature.
252 ntentionally introduced, where after thermal annealing the vacancies can annihilate through a number
253 ment or grinding homogeneously in air before annealing, the barrier to product formation, and therefo
254                                  Finally, on annealing, the formal C-X insertion product of DPC is ob
255 o-like conversion process during the thermal annealing, the hole-injection-assisted reactions happen
256                                Unlike strand-annealing, the strand-exchange reaction requires nucleot
257           Besides high folding yield on slow annealing, this design also folds rapidly on temperature
258                The data indicate that DNA re-anneals through the removal of RPA, which is observed as
259   Whereas the onset Tc is insensitive to the anneal time, the superconductive volume fraction evolves
260 ance space suggests the commonly used FAPbI3 annealing time, 10 min at 170 degrees C, can be signific
261 obtained from films with variable thickness, annealing time, and morphology (cylindrical blocks vs sp
262 d the graphene height is proportional to the annealing time.
263 ructures in a single sample, even after long annealing times (3 months), validate the occurrence of t
264 al plane adsorption is only relevant at long annealing times and at small undercooling.
265 he 3' end to a telomeric duplex sequence and annealed to a complementary strand.
266  the ligation of probe oligonucleotides when annealed to a complementary target sequence.
267 cifically, SrTiO3 (001) substrates have been annealed to achieve alternating chemical terminations an
268 gle-stranded DNA (ssDNA) and facilitates its annealing to duplex DNA.
269  overcome this challenge, we used end-to-end annealing to generate defects that are directly observab
270 noncoding RNAs (sRNAs) and facilitates their annealing to mRNA targets involved in stress tolerance a
271 ), utilizing solution-processing and thermal annealing to produce a thin film that achieves a figure
272 pon water adsorption at 105 K and subsequent annealing to room temperature.
273 us can be harnessed during crystal growth or annealing to suppress defect populations.
274 ture treatment (HMT) and to 19.5-26.9% after annealing treatment (ANN).
275 9 MPa after a super high temperature thermal annealing treatment at 2800 degrees C.
276 S QD ink without requiring a post-deposition annealing treatment for solvent removal.
277 er deposition (ALD) of TiO2 followed by post-annealing treatment on spinel LiNi0.5 Mn1.5 O4 (LNMO) ca
278 mework as the precursor for high-temperature annealing treatment.
279 rothermal reaction method combined with post-annealing treatment.
280 shell via Ostwald ripening during the oxygen annealing treatment.
281                                      Various annealing treatments are used to produce different oxyge
282                        The heat-moisture and annealing treatments significantly reduced glycemic inde
283 a on RNA metabolism, we designed an assay by annealing two single-stranded RNA circles with complemen
284 riedel-Crafts ring closure which effectively anneals two extra cycles with distinct electronic featur
285 le-light nanocatalysts using both doping and annealing under anoxic ambient.
286 ls achieve accurate, protein-assisted strand annealing under biological conditions that would otherwi
287 -H activation occurs on Au(111) upon thermal annealing under ultrahigh vacuum (UHV) conditions.
288 ealing have equivalent efficiencies to those annealed using a conventional hotplate.
289 es of eta-helices were obtained by simulated annealing using NOE-derived distance restraints, and the
290              Charge carriers of MoTe2 flakes annealed via RTA at various vacuum levels are tuned betw
291 cedure involving seed layers, layer-by-layer annealing was adopted to reduce the substrate-induced st
292 ction of the triplet with water molecules by annealing water-doped matrices at 25 K.
293                          When the nanorod is annealed, we observe with atomic-scale resolution the tr
294                                       During annealing, we observe the formation of a stable ternary
295                   How cells achieve accurate annealing when large regions of single-strand DNA are un
296 n of Ag atoms into larger clusters following annealing which hinders diffusion of Ti and O ions for a
297 energy barrier height after high-temperature annealing, which is considered to be the cause of the si
298 re a characteristic time constant of dynamic annealing, which rapidly decreases from 8 to 0.3 ms wit
299                               We use thermal annealing with and without 'learning' to explore typical
300 nificant ongoing effort in realizing quantum annealing with different physical platforms.

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