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1 ge, TEWL, and AD phenotype (flexural vs. non-flexural).
3 nally, magnetized water notably enhances the flexural and compressive strength of the cement grout st
4 ecific surface area, water permeability, and flexural and compressive strengths, were also evaluated
8 gnificantly improved the 90-day compressive, flexural, and splitting tensile strengths of normal and
14 belt and suture zone, which rather indicate flexural bending of the southern margin of the Lhasa blo
17 M most likely are elevated by a non-thermal, flexural cantilever mechanism which is perhaps the most
18 a specific anharmonic connection between the flexural corrugation and longitudinal phonons whose fast
19 (PVDF)-based polymer ferroelectrics provide flexural, coupling-efficient, and multifunctional materi
21 anowires bent by localized loading to couple flexural deformation and transverse piezoelectric respon
24 etical model reveals that this unprecedented flexural deformation within the membrane is attributable
26 associated with specific phenotypes, such as flexural dermatitis (OR 8.4, 95% CI: 6.3-11.2), head and
27 however, the need for visual confirmation of flexural dermatitis by a trained investigator limits the
29 ' and investigator's observations of visible flexural dermatitis was high for all sites: kappa= 0.88-
30 mes (wheeze, urticaria, rhinitis and visible flexural dermatitis), and effect modification by Sm expo
33 elaxing bends, which are responsible for the flexural dynamics of DNA on a short time scale, t < or =
34 of asthma, bronchial hyperreactivity (BHR), flexural eczema (FE), allergic rhinitis, and sensitizati
38 and mould was significantly associated with flexural eczema in the previous year, with a stronger as
40 ns used the terminology 'childhood eczema', 'flexural eczema', 'infantile eczema', 'atopic neuroderma
41 the 60 vol.% Ap-SFRP remains ductile with 7% flexural elongation at lower temperatures (-50 degrees C
42 cooling rate and contraction mismatch on the flexural failure resistance of metal opaque-porcelain st
45 n that incorporates displacements due to the flexural isostatic response of the lithosphere to loadin
46 es the tuning parameter for selection of the flexural leakage frequency, without affecting the main b
47 se score (SCORAD), involvement of the limbs, flexural lesion distribution at the age of 3 years, alle
48 ced from the residual stress and the applied flexural load was also determined for these specimens.
52 0) failed at significantly lower (p < 0.05) flexural loads than did specimens with a positive therma
53 lks enhance the room-temperature tensile and flexural mechanical properties of the composite, whereas
55 ant cantilevers vibrating in an out-of-plane flexural mode has to date been limited by the considerab
56 of short-time scale ballistic motion in the flexural mode of a nanomembrane cantilever, driven by th
57 perties of the LN allow to activate multiple flexural mode of vibration with only top electrodes.
58 antilevers, thermally excited in an in-plane flexural mode, are investigated and applied as sensors f
59 thermomechanical vibrations, up to the ninth flexural mode, with displacement sensitivities of ~7-14
60 theorem and Maxwell-Boltzmann statistics for flexural modes and can be used in fast thermometry and m
62 ilational and shearing modes to out-of-plane flexural modes, a paradigm that we refer to as "omnimoda
63 interface and strong interface-scattering of flexural modes, which make a large contribution to kappa
64 was observed in the viscosity data at higher flexural modes, which vibrate at elevated frequencies.
68 ctrolytes (0.13%) and a much larger ultimate flexural modulus (7.8 GPa) than pure polymer electrolyte
72 ibit significantly higher flexural strength, flexural modulus, and hardness and lower volumetric shri
73 resins exhibit the higher flexural strength, flexural modulus, hardness, and hydrophobicity and lower
74 A model for the sequence-dependent internal flexural motion of duplex DNA, which casts the mean squa
75 the coupling effects of the longitudinal and flexural motion of these resonators, we create narrow tr
79 ls, this work suggests that tunable electron-flexural phonon couping can provide a handle to control
83 practices of neglecting the contributions of flexural phonons to transport in two-dimensional materia
84 projected mass density increase endowing the flexural phonons, as they move with their group velocity
85 stic electron coupling with an odd number of flexural phonons, contributing to the increase of the Lo
86 cantilever, driven by thermal fluctuation of flexural phonons, including measurements of ballistic ve
87 shows that the phoretic force is due to the flexural phonons, whose flow is known to be ballistic an
92 ity, curing kinetics, surface microhardness, flexural properties, and dimensional accuracy were evalu
99 , we create narrow transmission bands at the flexural resonances of the beams inside the wide frequen
100 heir in-plane rather than their out-of-plane flexural resonant mode have been fabricated and shown to
102 diamond nanomembranes with thinning-reduced flexural rigidities can be shaped into various 3D mesost
103 rtebrate and yeast cofilactin scale with the flexural rigidities determined from analysis of shape fl
104 of the axoneme depends on both the intrinsic flexural rigidity (EI) and the elastic resistance to int
105 nized myosin-driven contraction by providing flexural rigidity and enhanced connectivity to actin net
107 nvestigated two major mechanical parameters, flexural rigidity and interdoublet shear stiffness, of t
109 ent-specific persistence length, an index of flexural rigidity directly proportional to Young's modul
115 onstrate that DAP substitution increases the flexural rigidity of dsDNA yet also facilitates conforma
116 hs suggest that for [MgATP] >/= 0.25 mM, the flexural rigidity of heavy meromyosin (HMM)-propelled ac
117 vature and moment equation, we find that the flexural rigidity of microtubules depends on their lengt
119 eoretical modeling suggests a 30-40% lowered flexural rigidity of the actin filaments at [MgATP] </=
121 ent models, we demonstrate that the apparent flexural rigidity of the axoneme depends on both the int
122 n the myosin II class may be to modulate the flexural rigidity of the light chain binding domain to m
123 ovement demonstrates that the differences in flexural rigidity of the two myosin lever arms is suffic
124 These values in conjunction with the large flexural rigidity of tubulin protofilaments obtained (18
125 in experiment, which instead measures either flexural rigidity or response to radial deformation.
126 rotubules, their diamagnetic anisotropy, and flexural rigidity predict the required field strength fo
128 like structures comprising the matrix have a flexural rigidity, EI, that is sufficiently stiff to ser
129 a anglica showed an increase in diameter and flexural rigidity, while Young's bending modulus and bre
134 angle normal faults, plutonic intrusions and flexural rotation of initially high-angle normal faults.
136 atric eczema develops quickly after birth at flexural sites subjected to continuous mechanical constr
138 rbon fibre content, the quasi-static tensile/flexural stiffness and strength increases following the
142 nvelope mechanics have assumed values of the flexural stiffness of the envelope based on simple scali
144 f the envelope to bending, quantified by the flexural stiffness, helps determine the microtubule-depe
147 ith the coated nanoparticles showed improved flexural strength (10% to 30% higher) and work of fractu
148 Large particles at 2 wt% yielded the highest flexural strength (134.03 +/- 4.65 MPa) and Vickers hard
152 a-analysis aimed to evaluate and compare the flexural strength (FS), surface hardness, fracture tough
154 illed denture bases demonstrated the highest flexural strength (MD = -1.11, 95% CI [-1.29, -0.93], p
155 ite with a filler mass fraction of 55% had a flexural strength (mean +/- SD; n = 6) of 196+/-10 MPa,
157 re characterized by evaluating their 3-point flexural strength (n = 6), modulus of elasticity (n = 6)
159 g with enhanced fracture toughness (KIC) and flexural strength (sigmaf) of the composites by ~75% (5.
160 amic content, leading to a trade-off between flexural strength (varying from 89 to 800 MPa) and fract
161 day water-aging, NACP+QADM nanocomposite had flexural strength and elastic modulus matching those of
162 (2)-decorated densified bamboo exhibits high flexural strength and elastic stiffness, with both prope
163 than ChNC resulted in the greatest improved flexural strength and fracture energy by 24% and 28%.
164 bon nanotubes (CNTs) (3DP GC) with both high flexural strength and hierarchical porous structure is r
166 es were tested for CHX release and recharge, flexural strength and modulus (at 24 hr and 1 mo), surfa
167 y scanning electron microscopy, ISO standard flexural strength and modulus measurements, contact angl
169 e stabilization of cubic leucite reduced the flexural strength and the number of crack deflections in
171 compromised, although a slight reduction in flexural strength associated with the nanogel-modified i
172 ne conditions, and increased compressive and flexural strength at 28 and 56 days compared to the cont
173 atrix increased the compressive strength and flexural strength by 65%, and 74%, respectively, after 2
174 critical role of the 1D CNTs in the enhanced flexural strength by increasing the friction and adhesio
175 s exhibited a significantly lower (p < 0.05) flexural strength compared with rapidly cooled specimens
178 ive strength from 46.36 MPa to 49.81 MPa and flexural strength from 10.5 MPa to 11.47 MPa, indicating
180 hisker composite with 70% filler level had a flexural strength in MPa (mean +/- SD; n = 6) of 248 +/-
181 hermally reduced Gr-rGO-reinforced GFRPs the flexural strength increased by 15.7% and 14.4%, tensile
183 e validation experiments yielded the maximum flexural strength of 78.52 MPa, the maximum ultimate ten
184 crostructure, crack deflection patterns, and flexural strength of a leucite-reinforced porcelain.
185 ved carbon nanomaterial, the compressive and flexural strength of cement samples are enhanced by 24%
186 gs of 0.02 to 0.06 wt.%, the compressive and flexural strength of concrete composites increases by 28
188 ent distribution, apatite/collagen ratio and flexural strength of mineralized dentin treated with GA
189 PEI) binder for silica sand that doubled the flexural strength of parts to 6.28 MPa compared with tha
190 ughness, DeltaE, surface micro-hardness, and flexural strength of the 3D printed dentures were measur
193 with the control ones, the reduction of the flexural strength of the heat-treated, impregnation/heat
196 2.4% of increase in compressive strength and flexural strength respectively, due to fiber-paste inter
198 after 7 days and 61.90% after 56 days, while flexural strength showed a 66.17% increase after 7 days
199 es a simple and effective method to evaluate flexural strength sigma(F) and fracture toughness K(C).
200 d at 1150 degrees C exhibited a mean biaxial flexural strength significantly higher than that of all
202 al symmetric unit cells showed 13-35% higher flexural strength than octet cell cored counterpart.
203 istinct advantages: i) an intrinsically high flexural strength that enables their large-scale applica
206 such as Young's modulus, shear modulus, and flexural strength were calculated for selected complexes
207 litting tensile strength, bond strength, and flexural strength with a maximum increase of 34.5%, 35%,
208 asured shear stress concentration factor and flexural strength with the fracture toughness of concret
209 undred resin), with enhancements of 13.4% in flexural strength, 25% in tensile strength, and 21.5% in
210 strength (50.1 MPa tensile strength, 6.7 MPa flexural strength, and 26.7 MPa compressive strength), h
211 dental porcelain, evaluate its effect on the flexural strength, and characterize its microstructure.
212 ed mineralized trabecular bone volume, lower flexural strength, and histologic evidence of osteomalac
214 ties of PCC, including compressive strength, flexural strength, and splitting tensile strength, play
215 WPA) on the flow time, compressive strength, flexural strength, and thermal conductivity of mortars.
217 splays a three-fold elevation in tensile and flexural strength, as compared to pure epoxy resin, with
219 ased composites exhibit significantly higher flexural strength, flexural modulus, and hardness and lo
220 The NPUA-based resins exhibit the higher flexural strength, flexural modulus, hardness, and hydro
221 0.3% GO-MMt demonstrated superior values of flexural strength, followed by RBC + 0.5% GO-MMt (p < 0.
222 nocomposites, including water-aging effects, flexural strength, fracture toughness, and three-body we
224 particulate-filled compounds (p < 0.001) for flexural strength, modulus, work of fracture, strain at
225 lts showed that at 0.50% JF and 10% CCA, the flexural strength, splitting tensile strength and compre
226 ctate and powder:liquid ratio (p < 0.001) on flexural strength, strain-at-peak-load, work-of-fracture
227 hane to the commercial cement led to similar flexural strength, toughness, and conversion at 72h comp
230 owever, lower correlations were observed for flexural strength-toughness and flexural toughness-MOR w
236 e toughness of common glasses, while keeping flexural strengths comparable to transparent polymers, s
244 atous skin lesions sparing warm regions (eg, flexural surfaces and skinfolds) were identified in 4 pa
245 cterized by multiple skin webs affecting the flexural surfaces often accompanied by craniofacial anom
249 veyor belt's elasticity into the aerodynamic flexural-torsional flutter treatment of the belt, with t
250 vior with 1% and 1.5% fiber content, and the flexural toughness increases remarkably from 2.2 to 47.1
253 sults suggest that long-term and late-summer flexural uplift of the Coast Ranges reduce the effective
254 e drums, we demonstrate that the macroscopic flexural vibrations of graphene induce dynamical optical
256 antage of the unique capabilities of SLL for flexural wave focusing and collimation, we develop a str
257 operly, both the quality and quantity of the flexural wave measurement data can be significantly incr
259 han two orders of magnitude amplification of flexural wave signals to overcome the detection limit.
260 lation of amplitude and frequency spectra of flexural wave temporal refraction and reflection through
261 emonstration of refraction and reflection of flexural waves across a temporal boundary in a continuum
263 e numerically investigate the propagation of flexural waves in a thin reticulated plate augmented wit
264 transmission and reflection coefficients of flexural waves in both amplitude and phase and nonrecipr
266 g time, mechanical strength (compressive and flexural), workability, water absorption and microstruct