4,446 research outputs found
Saturated hydrocarbon polymeric binder for advanced solid propellant and hybrid solid grains Quarterly report no. 3, 1 May - 31 Jul. 1966
Saturated hydrocarbon polymeric binder for advanced solid propellant and hybrid solid grain
Saturated hydrocarbon polymeric binder for advanced solid propellant and hybrid solid grains Quarterly report no. 2, 1 Feb. - 30 Apr. 1966
Synthesis and analysis of ethylene-neohexene copolymers with other non ketene-imine group free radicals for solid and hybrid grain propellant saturated hydrocarbon binder progra
Application of exchange Monte Carlo method to ordering dynamics
We apply the exchange Monte Carlo method to the ordering dynamics of the
three-state Potts model with the conserved order parameter. Even for the deeply
quenched case to low temperatures, we have observed a rapid domain growth; we
have proved the efficiency of the exchange Monte Carlo method for the ordering
process. The late-stage growth law has been found to be for
the case of conserved order parameter of three-component system.Comment: 7 pages including 5 eps figures, to appear in New J. Phys.
http://www.njp.or
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Quantifying the value of ecosystem services: a case study of honeybee pollination in the UK
There is concern that insect pollinators, such as honey bees, are currently declining in abundance, and are under serious threat from environmental changes such as habitat loss and climate change; the use of pesticides in intensive agriculture, and emerging diseases. This paper aims to evaluate how much public support there would be in preventing further decline to maintain the current number of bee colonies in the UK. The contingent valuation method (CVM) was used to obtain the willingness to pay (WTP) for a theoretical pollinator protection policy. Respondents were asked whether they would be WTP to support such a policy and how much would they pay? Results show that the mean WTP to support the bee protection policy was £1.37/week/household. Based on there being 24.9 million households in the UK, this is equivalent to £1.77 billion per year. This total value can show the importance of maintaining the overall pollination service to policy makers. We compare this total with estimates obtained using a simple market valuation of pollination for the UK
Performance-based inference of selection on stomatal length and specific leaf area varies with climate-of-origin of the forest tree, Eucalyptus ovata
Understanding how functional traits affect plant performance and fitness is a key step in unravelling the role of
natural selection in shaping the evolutionary trajectory of populations. We examined early-age selection acting
on leaf traits via their effects on growth performance and fitness, measured in Eucalyptus ovata trees planted in a
common-garden field trial embedded in a reforestation planting in Tasmania, Australia. We focused on two
important leaf traits - stomatal length and specific leaf area (SLA) - measured two years after planting, and
compared interplanted E. ovata groups originating from dry and wet home-site climates, with the trial site having
intermediate long-term mean annual rainfall. Two-year height growth was used as the performance attribute,
and the time-averaged tree survival over the subsequent six years as the fitness component. There was evidence
for performance-based selection on the leaf traits, with the strength and form of selection depending on the trait
and climate group being considered. In this sense, selection in the dry group operated mainly on stomatal length
where a combination of directional (favouring longer stomata) and stabilizing selection was detected, whereas
selection in the wet group acted only on SLA and was purely stabilizing. Estimates of performance-based
correlational selection were not statistically significant. For both climate groups, estimates of fitness-based selection
gradients provided evidence for significant directional (but not quadratic) selection on height performance,
favouring individuals with faster growth, but did not indicate statistical support for direct effects of the
leaf traits on tree survival, conditional on measured performance. These results validated qualitative inferences
of selection from the performance-based analysis, and suggested that selection on the leaf traits appeared to be
mediated by their effects on early-age height performance, which in turn directly influenced later-age survival.
We discuss the mechanisms by which the focal traits may have affected height performance, and likely factors
contributing to the different patterns of phenotypic selection observed in the two groups experiencing the same
environment. We also provide expressions of analytical derivatives that were developed for the estimation of
selection gradients based on a logistic regression model relating a binary fitness response to linear and nonlinear
covariate terms for the target regressor variables.info:eu-repo/semantics/publishedVersio
Critical Exponents of the Four-State Potts Model
The critical exponents of the four-state Potts model are directly derived
from the exact expressions for the latent heat, the spontaneous magnetization,
and the correlation length at the transition temperature of the model.Comment: LaTex, 7 page
Population divergence along a genetic line of least resistance in the tree species Eucalyptus globulus
The evolutionary response to selection depends on the distribution of genetic variation
in traits under selection within populations, as defined by the additive genetic variance-covariance
matrix (G). The structure and evolutionary stability of G will thus influence the course of phenotypic
evolution. However, there are few studies assessing the stability of G and its relationship with
population divergence within foundation tree species. We compared the G-matrices of Mainland and
Island population groups of the forest tree Eucalyptus globulus, and determined the extent to which
population divergence aligned with within-population genetic (co)variation. Four key wood property
traits exhibiting signals of divergent selection were studied—wood density, extractive content,
and lignin content and composition. The comparison of G-matrices of the mainland and island
populations indicated that the G-eigenstructure was relatively well preserved at an intra-specific level.
Population divergence tended to occur along a major direction of genetic variation in G. The observed
conservatism of G, the moderate evolutionary timescale, and close relationship between genetic
architecture and population trajectories suggest that genetic constraints may have influenced the
evolution and diversification of the E. globulus populations for the traits studied. However, alternative
scenarios, including selection aligning genetic architecture and population divergence, are discussedinfo:eu-repo/semantics/publishedVersio
Linking leaf economic and hydraulic traits with early-age growth performance and survival of Eucalyptus pauciflora
Selection on plant functional traits may occur through their direct effects on
fitness (or a fitness component), or may be mediated by attributes of plant
performance which have a direct impact on fitness. Understanding this link is
particularly challenging for long-lived organisms, such as forest trees, where
lifetime fitness assessments are rarely achievable, and performance features
and fitness components are usually quantified from early-life history stages.
Accordingly, we studied a cohort of trees from multiple populations of
Eucalyptus pauciflora grown in a common-garden field trial established at
the hot and dry end of the species distribution on the island of Tasmania,
Australia. We related the within-population variation in leaf economic (leaf
thickness, leaf area and leaf density) and hydraulic (stomatal density, stomatal
length and vein density) traits, measured from two-year-old plants, to two-year
growth performance (height and stem diameter) and to a fitness component
(seven-year survival). When performance-trait relationships were modelled for
all traits simultaneously, statistical support for direct effects on growth
performance was only observed for leaf thickness and leaf density.
Performance-based estimators of directional selection indicated that
individuals with reduced leaf thickness and increased leaf density were
favoured. Survival-performance relationships were consistent with size-
dependent mortality, with fitness-based selection gradients estimated for
performance measures providing evidence for directional selection favouring
individuals with faster growth. There was no statistical support for an effect
associated with the fitness-based quadratic selection gradient estimated for
growth performance. Conditional on a performance measure, fitness-based
directional selection gradients estimated for the leaf traits did not provide
statistical support for direct effects of the focal traits on tree survival. This
suggested that, under the environmental conditions of the trial site and time
period covered in the current study, early-stage selection on the studied leaf
traits may be mediated by their effects on growth performance, which in turn has a positive direct influence on later-age survival. We discuss the potential
mechanistic basis of the direct effects of the focal leaf traits on tree growth, and
the relevance of a putative causal pathway of trait effects on fitness through
mediation by growth performance in the studied hot and dry environmentinfo:eu-repo/semantics/publishedVersio
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Elevated temperature drives a shift from selfing to outcrossing in the insect pollinated legume, faba bean (Vicia faba)
Climate change can threaten the reproductive success of plants, both directly, through physiological damage during increasingly extreme weather events, and indirectly, through disruption of plant–pollinator interactions. To explore how plant–pollinator interactions are modified by extreme weather, we exposed faba bean (Vicia faba) plants to elevated temperature for 5 d during flowering, simulating a heatwave. We then moved the plants to flight cages with either bumblebees or no pollinators, or to two field sites, where plants were enclosed in mesh bags or pollinated by wild insect communities. We used a morphological marker to quantify pollen movement between experimental plants. There was a substantial increase in the level of outcrossing by insect pollinators following heat stress. Proportion outcrossed seed increased from 17 % at control temperature to 33 % following heat stress in the flight cages, and from 31 % to 80 % at one field site, but not at the other (33 % to 32 %). Abiotic stress can dramatically shift the relative contributions of cross- and self-pollination to reproduction in an insect pollinated plant. The resulting increases in gene flow have broad implications for genetic diversity and functioning of ecosystems, and may increase resilience by accelerating the selection of more stress-tolerant genotypes
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