Risultati della ricerca - temperature (decrease OR increase)~

  1. 561

    Seawater carbonate chemistry and coral calcifying fluid pH and calcification di Comeau, Steeve, Cornwall, Christopher Edward, McCulloch, Malcolm T

    Pubblicazione 2017
    Sommario: “... slightly with seawater pH, with the decrease being more pronounced in P. damicornis. The dissolved...”
    Testo
    Dataset Open Access
  2. 562

    Conflicting effects of predator cue and ocean acidification on the mussel Mytilus coruscus byssus production di Li, Lisha, Lu, Weiqun, Sui, Yanming, Wang, Youji, Gul, Yasmeen, Dupont, Sam

    Pubblicazione 2015
    Sommario: “..., 22% increase in frequency of shed byssus, and 30% longer byssus). Decreased pH but not temperature...”
    Testo
    Dataset Open Access
  3. 563

    Haemolymph inorganic ion composition, physiology and behaviour dependent on temperature and ambient... di Wittmann, Astrid C, Storch, Daniela, Anger, Klaus, Pörtner, Hans-Otto, Sartoris, Franz-Josef

    Pubblicazione 2011
    Sommario: “... with temperature but only insignificantly with increased magnesium concentration. Spontaneous velocities were low...”
    Testo
    Dataset Open Access
  4. 564

    Temperature and acidification variability reduce physiological performance in the intertidal zone porcelain crab Petrolisthes cinctipes di Paganini, Adam W, Miller, Nathan A, Stillman, Jonathon H

    Pubblicazione 2014
    Sommario: “...We show here that increased variability of temperature and pH synergistically negatively affects...”
    Testo
    Dataset Open Access
  5. 565

    Seawater carbonate chemistry and carbon sources of mussel shell carbonate di Lu, Yanan, Wang, Li, Wang, Liangshu, Cong, Y, Yang, Guojun, Zhao, Liqiang

    Pubblicazione 2018
    Sommario: “... slightly from 83.8% to 80.3% as temperature increases from 16 to 22 °C. Under acidified conditions...”
    Testo
    Dataset Open Access
  6. 566
  7. 567

    Seawater carbonate chemistry and calcification rate of reef-building coral Siderastrea siderea di Castillo, Karl D, Ries, Justin B, Bruno, John F, Westfield, Isaac T

    Pubblicazione 2014
    Sommario: “... surface ocean pH to decline by 0.1–0.3 pH units and sea surface temperature to increase by 1–4°C. We...”
    Testo
    Dataset Open Access
  8. 568
  9. 569

    Mineralogical response of the Mediterranean crustose coralline alga Lithophyllum cabiochae to near-future ocean acidification and warming di Nash, Merinda C, Martin, Sophie, Gattuso, Jean-Pierre

    Pubblicazione 2016
    Sommario: “... is proposed to change as CO2 and temperature continue to rise, there is currently very little information...”
    Testo
    Dataset Open Access
  10. 570

    Seawater carbonate chemistry, fertilization and early development of the coral eating crown-of-thorns starfish, Acanthaster planci in a laboratory experiment di Kamya, Pamela Z, Dworjanyn, Symon A, Hardy, Natasha, Mos, Benjamin, Uthicke, Sven, Byrne, Maria

    Pubblicazione 2014
    Sommario: “... of population outbreaks, we investigated the sensitivities of larval A. planci to increased temperature (2-4 °C...”
    Testo
    Dataset Open Access
  11. 571

    Effect of temperature on the expression of IFN-1 (α), STAT-1 and Mx-1 genes in Oncorhynchus mykiss... di Donald Arguedas Cortés

    Pubblicazione 2015
    Sommario: “... the viral titer began to decrease. Furthermore, as the viral titer increased, STAT-1 and Mx-1 (r=0.91...”
    Testo
    Artículo científico
  12. 572

    Seawater carbonate chemistry and calcification in the tropical urchin Echinometra viridis in a laboratory experiment di Courtney, T, Westfield, Isaac T, Ries, Justin B

    Pubblicazione 2013
    Sommario: “... the effects of an increase in atmospheric pCO2 from ca. 448 to 827 ppm on calcification rates of the tropical...”
    Testo
    Dataset Open Access
  13. 573

    Seawater carbonate chemistry and larval morphology, pigment cell response, larval density and Gastric pH of sea urchin di Stumpp, Meike, Petersen, Inga, Thoben, Femke, Yan, Jia-Jiun, Hu, Marian Y

    Pubblicazione 2020
    Sommario: “... decrease in proliferation rates by 50–60% between pH 8.5 and 9.5. Using the marine bacterium Vibrio...”
    Testo
    Dataset Open Access
  14. 574
  15. 575

    Seawater carbonate chemistry and shoaling performance and lateralization of novel tropical–temperate fish shoals di Mitchell, Angus, Booth, David J, Nagelkerken, Ivan

    Pubblicazione 2022
    Sommario: “... temperature levels, two pCO2 levels and two shoal type levels: mixed species or temperate only) for 38 days...”
    Testo
    Dataset Open Access
  16. 576

    Improving the mechanical properties and high‐temperature, high‐pressure corrosion resistance... di Tian Qiu, Libing Liu, Dong Xiang, Eileen Harkin‐Jones, Dandan Dong, Zhiyuan Liu, Jingxiong Ma, Yuanpeng Wu, Chunxia Zhao, Hui Li

    Pubblicazione 2025
    Sommario: “...Improving the mechanical properties and high‐temperature, high‐pressure corrosion resistance...”
    Testo
    Artículo Open Access
  17. 577

    Seawater carbonate chemistry and calcification during experiments with coral communities, 2002 di Leclercq, Nicolas, Gattuso, Jean-Pierre, Jaubert, Jean

    Pubblicazione 2002
    Sommario: “... the trend previously reported; it decreased as a function of increasing pCO2 and decreasing aragonite...”
    Testo
    Dataset Open Access
  18. 578

    Seawater carbonate chemistry and calcification during experiments with coral communities, 2000 di Leclercq, Nicolas, Gattuso, Jean-Pierre, Jaubert, Jean

    Pubblicazione 2000
    Sommario: “... and 5.4. Community calcification decreased as a function of increasing pCO2 and decreasing omega arag...”
    Testo
    Dataset Open Access
  19. 579
  20. 580

    Radiation behavior of Ruddlesden–Popper Sr n +1 Ti n O 3 n +1 ( n  = 1, 2, 3, and ∞): Effects of layered structure and temperature di Menghui Wang, Liangfu Zhou, Huashuai Hu, Fenghua Shen, Shijian Lin, Tongmin Zhang, Yuhong Li, Dongyan Yang

    Pubblicazione 2025
    Sommario: “... increases or the density of [SrO] layers decreases, the radiation resistance of Sr n +1 Ti n O 3 n +1...”
    Testo
    Artículo Open Access