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  1. 38521
    “…Excellent agreement between theory and experiment is achieved for the entire applied frequency range and the wide bipolar bias regions using Debye-Fröhlich model (combined with the Zhang formula and parabolic barrier approximation) and spin-dependent drift-diffusion model. …”
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  2. 38522
    “…An algorithm for modelling the background for each Bragg reflection in a series of X-ray diffraction images containing Debye–Scherrer diffraction from ice in the sample is presented. …”
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  3. 38523
    “…The measured dissipation is enhanced by up to a factor of 5 at tip–sample separations of ≈ one Debye length compared to the expectations based on classical hydrodynamic Reynolds damping with bulk viscosity. …”
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  4. 38524
    “…As such, we bring out the variations in flow dynamics and their implications on the net throughput in the channel in terms of different parameters like power-law index (n), drag parameter (α), PEL thickness (d) and Debye length ratio (κ/κ(PEL)) are discussed. We show, in this analysis, a relative enhancement in the net throughput through a soft nanofluidic channel for both the shear-thinning and shear-thickening fluids, attributed to the stronger electrical body forces stemming from ionic interactions between polyelectrolyte layer and electrolyte layer. …”
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  5. 38525
    “…In small-angle scattering theory and data modeling, it is generally assumed that each scattered ray – photon or neutron – is only scattered once on its path through the sample. …”
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  6. 38526
    “…We have found excellent agreement between theory and experiment for the bipolar biasing regions using Debye-Fröhlich model combined with quartic barrier approximation and spin-dependent drift-diffusion model. …”
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  7. 38527
    “…The finding reveals new physics of thermal conduction, offers a unique platform to probe e‐ph interactions, and provides potential ways to control heat flow in materials with free charge carriers. …”
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  8. 38528
    “…An increasingly important issue in nanoscience and nanotechnology is the accurate determination of nanoparticle sizing. Wide angle X-ray total scattering (WAXTS) data are frequently used to retrieve the Particle Size Distributions (PSDs) of nanocrystals of highly technological relevance; however, the PSD shape typically relies on an a-priori assumption. …”
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  9. 38529
    “…In the current study, the film fabrication of polystyrene (PS) based polymer nanocomposites (NCs) with tuned refractive index and absorption edge was carried out using the solution cast method. X-ray diffraction (XRD) and ultraviolet-visible (UV-Vis) light characterization techniques were performed. …”
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  10. 38530
    “…The BioFET specificity was assessed by control experiments with proteins that may unspecifically bind at the EG surface, while 100pM p53(wt) concentration was established as limit of detection. This work paves the way for fast and highly sensitive tools for p53(wt) detection in physiological fluids, which deserve much interest in early cancer diagnosis and prognosis.…”
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  11. 38531
    “…These data are also combined with reported EXAFS measurements and a connection between the Raman intensities and the mean Debye–Waller factors [Formula: see text] is established. …”
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  12. 38532
    “…The mechanical properties, including elastic constants, elastic moduli, Vickers hardness, Poisson’s ratio anisotropy index, and Debye temperature, are reported with fundamental insights. …”
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  13. 38533
    “…Moreover, the quasi-harmonic Debye–Grüneisen approach was confirmed to be valid in describing the temperature-dependent thermodynamic properties of the Co(3)X and Co(7)X(6) compounds, including heat capacity, vibrational entropy, and Gibbs free energy. …”
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  14. 38534
    “…All electrolytes in this work obey the non-Debye behavior. The highest conductivity electrolyte exhibits the dominancy of ions, where the ionic transference number, t(ion) value of (0.976) is near to infinity with a voltage of breakdown of 2.11 V. …”
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  15. 38535
  16. 38536
    “…With increasing pressure up to the Fe(3+) spin crossover (~ 45 GPa), the Debye sound velocity (v(D)) increases. At higher pressures, the low spin δ-Fe13 is characterized by a pressure-invariant v(D). …”
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  17. 38537
  18. 38538
  19. 38539
  20. 38540
    “…The ionic distribution at the external surface of the electrodes is consistent with the Debye–Hückel electric potential equation and empirical trends observed for nonporous electrodes. …”
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