952 resultados para Japayuki lady


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von Georgina Fullerton. - Aus dem Engl. von H. Brinckmann

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Samuel Cooper

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Musik von L. Emil Bach. [Text] von Augustus Harris und F. E. Weatherly. Dt. Version von Julius Lichtenstein

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Signatur des Originals: S 36/F02195

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Signatur des Originals: S 36/F02221

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Signatur des Originals: S 36/F05818

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Signatur des Originals: S 36/F09465

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Signatur des Originals: S 36/F11764

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Signatur des Originals: S 36/F11765

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Signatur des Originals: S 36/F11766

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Signatur des Originals: S 36/F11829

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El presente ensayo fue establecido en el Alto Valle del Río Negro, Argentina (38°55´ Sur), sobre durazneros cv. Elegant Lady conducidos en vaso, de 5 m de altura, con un distanciamiento de 4 m entre plantas y 4,8 m entre filas. Se realizaron tres tratamientos en un diseño totalmente aleatorizado, simulando diferentes intensidades de luz: restricción lumínica con mallas de sombreo del 80%, poda en verde y un control sin intervención. En cada una de las plantas se diferenciaron 4 sectores orientados hacia los 4 puntos cardinales y 3 alturas distintas de la copa del árbol. La radiación fotosintéticamente activa (RFA) fue medida en cada sector 25, 15 y 6 días antes de la cosecha. La RFA interceptada estuvo influenciada por la restricción lumínica y por la altura. Las variables vegetativas y de producción se relacionaron entre sí linealmente, y ambas dependieron principalmente de la RFA interceptada. Los modelos que explican el comportamiento entre la RFA y las variables de calidad son de tipo asintóticos. A partir de los 25 días anteriores a la cosecha, la RFA necesaria para alcanzar frutos con un peso y color adecuados para su comercialización debe ser del 30%. En el rango de 0 a 15% de RFA interceptada, pequeñas variaciones de RFA dan como resultado grandes cambios en las variables de peso, color de cobertura e intensidad de color del fruto.

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Ocean acidification leads to changes in marine carbonate chemistry that are predicted to cause a decline in future coral reef calcification. Several laboratory and mesocosm experiments have described calcification responses of species and communities to increasing CO2. The few in situ studies on natural coral reefs that have been carried out to date have shown a direct relationship between aragonite saturation state (Omega arag) and net community calcification (Gnet). However, these studies have been performed over a limited range of Omega arag values, where extrapolation outside the observational range is required to predict future changes in coral reef calcification. We measured extreme diurnal variability in carbonate chemistry within a reef flat in the southern Great Barrier Reef, Australia. Omega arag varied between 1.1 and 6.5, thus exceeding the magnitude of change expected this century in open ocean subtropical/tropical waters. The observed variability comes about through biological activity on the reef, where changes to the carbonate chemistry are enhanced at low tide when reef flat waters are isolated from open ocean water. We define a relationship between net community calcification and Omega arag, using our in situ measurements. We find net community calcification to be linearly related to Omega arag, while temperature and nutrients had no significant effect on Gnet. Using our relationship between Gnet and Omega arag, we predict that net community calcification will decline by 55% of its preindustrial value by the end of the century. It is not known at this stage whether exposure to large variability in carbonate chemistry will make reef flat organisms more or less vulnerable to the non-calcifying physiological effects of increasing ocean CO2 and future laboratory studies will need to incorporate this natural variability to address this question.