Mostrando 2,341 - 2,360 Resultados de 4,286 Para Buscar '"In Flames"', tiempo de consulta: 0.26s Limitar resultados
  1. 2341
    “…The SnSe nanoplates and the microfiber are fabricated using the liquid-phase exfoliation method and the heat-flame taper-drawing method, respectively. Due to the strong absorption and enhanced light–matter interaction of the SnSe nanoplates, the largest transmitted power tunability is approximately 0.29 dB/mW with the response time of less than 2 ms. …”
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  2. 2342
    “…This work unveils the correlation between melt viscosity and their fire performance and offers a practical guidance for creating flame retardant PLA to extend its applications.…”
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  3. 2343
    por Cecil, Kim M.
    Publicado 2022
    “…Heavy metals, including lead and manganese, air pollution, pesticides, environmental tobacco smoke, and flame retardants are among the known and suspected environmental neurotoxicant exposures examined with magnetic resonance imaging (MRI)-based studies of pediatric populations. …”
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  4. 2344
    “…In short, the high-quality carbon layer of TPU/ZIF-67@MXene composites acts as a physical barrier to the transfer of heat and toxic gases, greatly improving the flame retardant properties of the TPU polymer.…”
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  5. 2345
    “…The purpose of this study was to demonstrate the preparation of spherical submicron YAG:Ce particles with controllable particle outer diameters and crystallite sizes and their photoluminescence (PL) properties, which were produced using a flame-assisted spray-pyrolysis method followed by the annealing process. …”
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  6. 2346
    “…It possesses an excellent adsorption capacity (92.12 mg g(−1)) for the flame retardant tetrabromobisphenol A (TBBPA). The composite was characterized by transmission and scanning electron microscopy, FTIR and X-ray diffractometry. …”
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  7. 2347
    “…Beryllium concentration was determined by flame atomic absorption spectrometry (FAAS). The detection limit was as low as 0.07 ng mL(−1) and the quantification limit is 0.2 ng mL(−1). …”
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  8. 2348
    “…Au concentration in the hydrogels was determined by the flame atomic absorption spectrophotometry. Colloidal chitosan–Au solutions were used for the modification of fabrics. …”
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  9. 2349
    “…The sensor is based on single mode fibers and was fabricated into a U-shaped optical fiber sensor through flame heating. This study applied electrospinning to coat PVA, a polymer, onto the sensor layer to reduce its sensitivity to humidity. …”
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  10. 2350
    “…The livers, spleens, and kidneys were examined for mineral contents using the flame atomic absorption spectroscopy method. The bioavailability of Ca, Mg, Fe, Mn, Zn, and Cu was evaluated. …”
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  11. 2351
    “…In the present study, hydrogen sulfide (H(2)S) was found to be the most abundant sulfur volatile in whey protein solutions (whey protein isolate [WPI], a whey model system and single whey proteins) by gas chromatography-flame photometric detector (GC-FPD) analysis after heat treatments (60–90 °C for 10 min, 90 °C for 120 min and UHT-like treatment). …”
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  12. 2352
    por Peng, Cun, Yang, Hua, Tang, Wufei
    Publicado 2022
    “…SA-LDH was introduced into polyamide 11 (PA11) by melt blending and to enhance the flame retardancy and mechanical properties. The scanning electron microscope (SEM) and XRD data showed that the lamellar structure of SA-LDH was partly disrupted. …”
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  13. 2353
    “…Lastly, optimal features were selected using moth flame optimization (MFO) to overcome the curse of dimensionality. …”
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  14. 2354
    “…In addition, borosiloxanes are used to produce flame-retardant ceramics. An analysis of the literature sources shows that no review has yet been completed on the topic of borosiloxanes. …”
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  15. 2355
    “…This review focuses on the use of polyhydroxyalkanoates beyond the most common uses, aiming to inform about the potential uses of the biopolymer as a biosensor, cosmetics, drug delivery, flame retardancy, and electrospinning, among other interesting uses. …”
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  16. 2356
  17. 2357
  18. 2358
    “…The most common etiology was cooking-related (14%), with scald and flame burns collectively making up 80%. Flame burns were significantly larger when compared to scald, electrical and chemical mechanisms (p< 0.05). …”
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  19. 2359
    “…Rates of scald, chemical, electrical, and blast burns were similar across years with greater variations in rates of flame (35%; 40%; 37%), contact (5.0%; 8.0%; 3.8%), and friction (0.0%; 0.6%; 1.3%) burns. …”
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  20. 2360
    “…We built the Memorial brand around the flame of individual passion ignited by the four intelligences: spiritual, emotional, intellectual, and physical. …”
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