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1 om the surrounding solution and dominated by interfacial tension.
2 astomeric film for sensing the effect of the interfacial tension.
3 subtle balance between polymer viscosity and interfacial tension.
4 dsorb on interfaces and lower the surface or interfacial tension.
5 e particles are forced into close contact by interfacial tension.
6  of structure evolution is the aggregate-gel interfacial tension.
7 icity change is likely driven by a change in interfacial tension.
8 ellular stress in terms of bulk pressure and interfacial tension, allowing these parameters to vary f
9 how that molecular chirality can control the interfacial tension, an important property of multi-comp
10 scopy, and an automated drop tensiometer for interfacial tension and elastic modulus determination wi
11 roteins and peptides that reduce surface and interfacial tension and mediate growth and development a
12                         The physicochemical, interfacial tension and surface characteristics of CPI a
13                                              Interfacial tension and surface pressure of these partic
14  shown to originate in the interplay between interfacial tension and the elasticity of the droplet's
15 s and inform a new approach to the nature of interfacial tension and the impact this has on concepts
16  of the droplets, we systematically vary the interfacial tension and viscosity of the ATPS fluids and
17 ation timescales, consistent with a variable interfacial tension and viscosity.
18 y of the two dimensional cell array to infer interfacial tensions and intracellular pressures.
19 yosin II) activity, which modulates cellular interfacial tensions and is regulated by Rock proteins,
20 e (I) produces an interface with mechanical (interfacial tension) and charge transport properties qua
21 h solvent viscosity, a weak correlation with interfacial tension, and a strong correlation with 13C N
22 x moves in response to forces due to growth, interfacial tension, and pressure within each cell.
23 rned by a delicate balance of ion hydration, interfacial tension, and restriction of capillary fluctu
24 to lower Pc relative to predictions based on interfacial tension, and therefore deviated from capilla
25  this study, the intracellular viscosity and interfacial tension are found to directly affect the rol
26 merical simulations, we conclude that tissue interfacial tensions are sufficient to explain cell sort
27        Our experiments show a suppression of interfacial tension as a function of organic content tha
28  and emulsification behaviour in relation to interfacial tension as modelled using phase-field method
29 ilic nature, which allows them to reduce the interfacial tension at the oil-water interface.
30 luidic technique is the first that forms low interfacial tension ATPS droplets without applying exter
31 lts suggest that the curvature dependence of interfacial tension becomes significant for particles wi
32  the amphiphilic replicator, by lowering the interfacial tension between droplets of the reaction mix
33                               At equilibrium interfacial tension both peptides desorb from the interf
34 e a direct method for measuring solid-liquid interfacial tension by using the curved surface of a sol
35 s from the interplay between fluidic forces, interfacial tension, channel geometry, and the final sta
36                        However, the ultralow interfacial tensions characteristic of all-aqueous inter
37 e, k, water viscosity, mu, and the water/oil interfacial tension coefficient, sigma.
38                        The mapping of global interfacial tension coupled with free energy dissipation
39                                          The interfacial tension decreased from approximately 66.5 mN
40 ifferent supporting electrolytes, changes in interfacial tension (dgamma), the charge on the electrod
41                                  The dynamic interfacial tension (DIFT) at oil-water interface, diffu
42       As with surfactants, chiral control of interfacial tension drives the formation of many polymor
43 implication of the adsorption on the dynamic interfacial tension (DST) and emulsion stability.
44                  This dramatic change in the interfacial tension enables a variety of electrohydrodyn
45                                 The apparent interfacial tension extracted from the slope agrees with
46 e impact this has on concepts used to define interfacial tension for a two phase system with material
47 t is typically determined by minimization of interfacial tension (for example, during phase separatio
48 ame of the moving rod, it was found that the interfacial tension force scales approximately as SR(2)g
49 ntration gradient, which in turn produces an interfacial tension force that balances the drag force a
50 en added into the aqueous phase, lowered the interfacial tension (gamma) of A/W and DD/W in a concent
51 hase surrounding a triolein drop lowered the interfacial tension (gamma) of TO/W in a concentration-
52 cally alters the potential dependence of the interfacial tension, gamma, the interfacial excess popul
53 t other mechanisms, such as those related to interfacial tension gradients, play at best a minor role
54 eveloping hindgut, based on the differential interfacial tension hypothesis (DITH) linking intercellu
55 G did not cause an appreciable change in the interfacial tension (IFT) of SSO, indicating that it was
56                                              Interfacial tension (IFT) studies have shown a decrease
57 lationship between composition and tar-water interfacial tension (IFT), a property of primary importa
58                                  Tar-aqueous interfacial tensions (IFTs) and contact angles were meas
59  number of related issues by calculating the interfacial tension in protein-free lipid droplets, and
60 c device that facilitates the measurement of interfacial tension in two-phase droplet flows, particle
61 thematical modeling indicated that different interfacial tensions in anterior and posterior KV cells
62                                     Further, interfacial tensions in the used HDL and LDL models are
63 nts in a single device, the coupling between interfacial tension, interfacial retardation, and surfac
64 l pitch, the twist elastic constant, and the interfacial tensions, is derived.
65 el, because of wetting-induced alteration in interfacial tension, its thin wall deflects considerably
66 hat the estimated values of the solid-liquid interfacial tension matches with the corresponding solid
67 ith respect to micellisation as derived from interfacial tension measurements and subsequent data fit
68                                              Interfacial tension measurements are used to calculate s
69                                              Interfacial tension measurements showed that the AR-BSA
70                                   From these interfacial tension measurements, the morphology of aged
71  reflectivity and the macroscopic scale with interfacial tension measurements.
72           We present a method to control the interfacial tension of a liquid alloy of gallium via ele
73 or bilayers; show that alcohols decrease the interfacial tension of bilayer-water interfaces less eff
74                              First, the high interfacial tension of droplets facilitates trans cadher
75 core lipids in the surface monolayer and the interfacial tension of droplets resembling HDL particles
76 lts point out that CE molecules decrease the interfacial tension of HDL-like lipid droplets whereas T
77 rse-grained models in the calculation of the interfacial tension of liquid-liquid surfaces and the me
78 iphasic microscale flows are used to measure interfacial tension of reacting methylglyoxal, formaldeh
79  the challenging problems of reproducing the interfacial tension of salt solutions as a function of t
80              MAG significantly decreased the interfacial tension of SSO, due to its strong surface ac
81  The maximum pressures are determined by the interfacial tension of the aqueous solution and organic
82 SA complex presented surface activity, since interfacial tension of the water-air interface decreased
83                 Solubilized apoB lowered the interfacial tension of TO/W in a concentration-dependent
84                                     Finally, interfacial tensions of lipoproteins are higher than in
85             Comparison with the liquid-vapor interfacial tensions of the model liquids studied here i
86 from the demixing point of the liquids, with interfacial tensions on the order of 20 mN m(-1).
87 also reveal an unexpected time dependence of interfacial tension over a period of 48 h for ternary so
88 en evolution rate, gamma is the liquid-vapor interfacial tension, R is the rod radius, mu is the visc
89 increases, results in chain-length-dependent interfacial tension reduction with concomitant chain-len
90 ressibility modulus follows Traube's rule of interfacial tension reduction, i.e., for each additional
91 canning nanocalorimetry, and measurements of interfacial tension, size, and zeta potential.
92                                      Because interfacial tension suppresses short-wavelength fluctuat
93 ormers, AMPs share a common ability to lower interfacial tensions that promote membrane transformatio
94 membrane potential as a result of changes in interfacial tension, the Lippman effect.
95 ated and Janus configurations by varying the interfacial tensions using hydrocarbon and fluorinated s
96 Roasting process significantly decreased the interfacial tension values of samples down to 1.9 mN/m d
97 e convert our area compressibility data into interfacial tension values to: confirm that Traube's rul
98 ing voltage to the liquid metal controls the interfacial tension via a combination of electrochemistr
99                                 The density, interfacial tension, viscosity, and refractive index of
100 Lewis base parameter values (gamma-) and low interfacial tension with water (gammaSL) are more effect

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