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  1. 2401
    “…OBJECTIVE: To establish a supraorbital nerve sensory conduction recording method and assess its usefulness. …”
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  2. 2402
    por Liu, Liwei, Zhou, Zheng, Tian, He, Li, Jixue
    Publicado 2016
    “…Moreover, electrical impedance analyses show that adding Bi(2)O(3) enhances the conductivity of zirconia, improving its capability as a solid electrolyte for intermediate or even lower temperatures.…”
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  3. 2403
    “…We attribute the quantized conductance to the existence of a 1-D electron waveguide along the conductive path. …”
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  4. 2404
    “…Here we report a printing technique to manufacture ultrafine conductive patterns utilizing the exclusive chemisorption phenomenon of weakly encapsulated silver nanoparticles on a photoactivated surface. …”
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  5. 2405
    por Slifka, A. J., Filla, B. J.
    Publicado 2003
    “…An industrial ceramic thermal-barrier coating designated PWA 266, processed by electron-beam physical-vapor deposition, was measured using a steady-state thermal conductivity technique. The thermal conductivity of the mass fraction 7 % yttria-stabilized zirconia coating was measured from 100 °C to 900 °C. …”
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  6. 2406
    por Slifka, A. J.
    Publicado 2000
    “…This steady-state, comparative measurement method uses the known thermal conductivity of the substrate material as the reference material for heat-flow measurement. …”
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  7. 2407
    “…The electrical conductivity (EC) of soil is generally measured after soil extraction, so this method cannot represent the in situ EC of soil (e.g., EC of soils with different moisture contents) and therefore lacks comparability in some cases. …”
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  8. 2408
    “…The thermal conductivity of polycrystalline magnesium oxide has been measured over the temperature range from 400 K to 1300 K using a modified guarded-hot-plate design. …”
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  9. 2409
    “…This demonstrates a technological potential for harnessing a.c. conduction for oxide electronics and other materials with poor d.c. conduction, particularly at the nanoscale.…”
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  10. 2410
    “…METHODS: A cross-sectional descriptive study was conducted among 147 inmates of a Borstal Institution in Abeokuta, South Western Nigeria. …”
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  11. 2411
    “…Hydraulic conductivities of sands with different gradation and grain shape were estimated experimentally at a relative density (D(r)) of about 40 % and a 22 ± 2 °C of constant temperature. …”
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  12. 2412
    “…Laboratory-based measurements of the electrical conductivity of hydrous phases and aqueous fluids are significantly lower and cannot readily explain the geophysically observed anomalously high electrical conductivity. …”
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  13. 2413
  14. 2414
    “…Similar research on thicker polycrystalline oxide layers can bridge the results to the prior literature on varistors and may uncover novel ionic/electronic features originating from the conduction mechanisms involving grain boundaries. Here, we investigate electronic conduction in Ti/poly-TiO(2−x)/Ti structures with different oxygen vacancy distributions and describe the observed features based on the motion and rearrangement of the ionized oxygen vacancies (IOVs) on the grain facets rather than the grain interiors. …”
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  15. 2415
    “…The current study identified groups of at risk adolescents showing stable (i.e., high on both conduct disorder and callous–unemotional symptoms, high only on either callous–unemotional or conduct disorder symptoms) or increasing conduct disorder and callous–unemotional symptoms. …”
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  16. 2416
  17. 2417
  18. 2418
  19. 2419
    “…Highly textured thin films with small grain boundary regions can be used as model systems to directly measure the bulk conductivity of oxygen ion conducting oxides. Ionic conducting thin films and epitaxial heterostructures are also widely used to probe the effect of strain on the oxygen ion migration in oxide materials. …”
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  20. 2420
    “…The influence of nanopore shapes on the electronic thermal conductivity (ETC) was studied in this paper. It turns out that with same porosity, the ETC will be quite different for different nanopore shapes, caused by the different channel width for different nanopore shapes. …”
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