Mostrando 601 - 620 Resultados de 8,308 Para Buscar '"Sand!"', tiempo de consulta: 0.16s Limitar resultados
  1. 601
  2. 602
    por Pan, Chonggen, Li, Xu, Mao, Jianghong
    Publicado 2020
    “…Concrete made with sea sand and seawater is rich in chlorine ions which are the main factors that induce corrosion of the reinforcement. …”
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  3. 603
    “…A new type of water treatment system for a RAS was designed, including a passive woodchip denitrification followed by a sand filtration introduced into a side-loop of an experimental RAS, rearing rainbow trout (Oncorhynchus mykiss). …”
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  4. 604
    “…BACKGROUND: During blood feeding, sand flies inoculate salivary proteins that interact with the host haemostatic system. …”
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  5. 605
    “…OBJECTIVES: This study evaluated the implications of clinically acquired miltefosine resistance (MIL-R) by assessing virulence in mice and sand flies to reveal the potential of MIL-R strains to circulate. …”
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  6. 606
    “…This study aimed to describe the sand fly fauna and detect trypanosomatids in these insects from Casa Branca, state of Minas Gerais, Brazil, an endemic area of both visceral (VL) and tegumentary leishmaniasis (TL). …”
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  7. 607
    por Shi, Y, Shi, ZM
    Publicado 2020
    “…The specimens with curing ages of 1-day, 3-days, 7-days, and 28-days were adopted. The wind blown sand erosion test was carried out in a wind-blown sand erosion test system, which simulated a wind blown sand environment of a wind speed of 30 m/s and a sand feed rate of 30 g/min. …”
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  8. 608
  9. 609
    “…While spatially-driven relationships between contaminant sources and biota body burdens of a single chemical are commonly modelled, there has been little effort on modelling chemical mixtures across multiple wildlife species in the Canadian Oil Sands region. In this study, we used spatial principal components analysis (sPCA) to assess spatial patterns of the body burdens of 22 metals and Potentially Toxic Elements (PTEs) in 492 individual wildlife, including fur-bearing mammals, colonial waterbirds, and amphibians collected from the Canadian Oil Sands region in Canada. …”
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  10. 610
    “…This study assesses the strength of sand–silt mixtures with various silt fractions (SFs) subjected to cyclic freezing-thawing-repetitive loading. …”
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  11. 611
  12. 612
    “…BACKGROUND: Ethiopia is affected by human leishmaniasis caused by several Leishmania species and transmitted by a variety of sand fly vectors of the genus Phlebotomus. The sand fly fauna in Ethiopia is highly diverse and some species are closely related and similar in morphology, resulting in difficulties with species identification that requires deployment of molecular techniques. …”
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  13. 613
    “…BACKGROUND: Cutaneous leishmaniasis is a neglected parasitic dermal disease transmitted to humans through the bite of an infected female sand fly. Morocco hopes to eliminate all forms of leishmaniasis by 2030. …”
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  14. 614
    “…In this study, we demonstrated for the first time to our knowledge a specific binding between PpSP32 and Dsg1 and Dsg3, which might underlie the triggering of anti-Dsg antibodies in patients exposed to sand fly bites. We also confirmed the development of specific anti-Dsg1 and -Dsg3 antibodies in vivo after PpSP32 immunization in mice. …”
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  15. 615
    “…Caragana microphylla is a sand-fixing leguminous shrub with strong resistance to drought, cold, and low soil fertility. …”
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  16. 616
    “…The rise of collaborative robots urges the consideration of them for different industrial tasks such as sanding. In this context, the purpose of this article is to demonstrate the feasibility of using collaborative robots in processing operations, such as orbital sanding. …”
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  17. 617
    “…Compared to biocemented sand (BS), the water absorption of these three fiber-reinforced biocemented sands were, respectively, decreased by 11.60%, 21.18%, and 7.29%. …”
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  18. 618
    “…The bioecology of phlebotomine sand flies is intimately linked to the utilization of environmental resources including plant feeding. …”
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  19. 619
    “…Calcined zeolite and natural zeolite sand replaced the standard sand at 15% and 30%, respectively. …”
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  20. 620
    “…The depletion of natural sand resources occurs due to excessive consumption of aggregate for concrete production. …”
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