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Powers MD Pregitzer KS Palik BJ 《Journal of the American Society for Mass Spectrometry》2008,19(9):1330-1335
Stable isotope ratios of carbon (delta(13)C) and oxygen (delta(18)O) are increasingly used to investigate environmental influences on plant physiology. Cellulose is often isolated for isotopic studies, but some authors have questioned the value of this process. We studied trends in delta(13)C and delta(18)O of whole foliage and holocellulose from seedlings of three Pinus species across three overstory environments to evaluate the benefits of holocellulose extraction in the context of a traditional ecological experiment. Both tissue types showed increasing delta(13)C from closed-canopy controls to thinned plots to 0.3 ha canopy gaps, and no change in delta(18)O between overstory environments. delta(13)C of P. resinosa and P. strobus was greater than delta(13)C of P. banksiana in whole foliage and holocellulose samples, and there were no differences in delta(18)O associated with species in either tissue type. Our results suggest whole foliage and holocellulose provide similar information about isotopic trends across broad environmental gradients and between species, but holocellulose may be better suited for studying differences in stable isotope composition between multiple species across several treatments. 相似文献
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The infrared internal-reflection spectra of CaF2 trapezoids in air indicate the presence of an adsorbed water film. This adsorption has been studied in a vacuum system in which the trapezoids were cleaned by baking and then exposed to water vapor. Study of the absorptance and the ratio of s- to p-polarized absorptance in the 3400 cm?1 spectral region indicates that the index of refraction of the film and the product of the extinction coefficient and the film thickness can be obtained. Analysis suggests that the index of refraction and extinction coefficient of the film on polished CaF2 surfaces are somewhat less than that of bulk water. The simplest implication is that the film has an expanded or open structure. 相似文献
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The point of departure for this analysis is Bjørndal and Lindroos [2012], who developed an empirical bioeconomic model to analyze cooperative and noncooperative management of Northeast Atlantic cod. In their analysis, only constant strategies were analyzed for noncooperative games. In this paper, nonconstant strategies are considered. Moreover, the fishery in question is characterized by cooperative management. What may happen in the real world is that one nation breaks the cooperative agreement by fishing in excess of its quota. Often, it takes time for the other agent to detect this and respond. In this paper, we allow this kind of delayed response into a two‐agent noncooperative game so that, if country 2 exceeds its quota, there will be a time lag before this is detected by country 1; moreover, there may also be a delay until country 1 is able to respond. Results show that the outcome critically depends on the length of these two lags as well as initial conditions. 相似文献