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666,044 result(s) for "Rebecca"
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Unfathomable city : a New Orleans atlas
A reinvention of the traditional atlas, one that provides a vivid, complex look at the multi-faceted nature of New Orleans, a city replete with contradictions.
Catchment prioritization for freshwater mussel conservation in the Northeastern United States based on distribution modelling
Freshwater mussels are critical to the health of freshwater systems, but their populations are declining dramatically throughout the world. The limited resources available for freshwater mussel conservation necessitates the geographic prioritization of conservation-related actions. However, lack of knowledge about freshwater mussel spatial distributions hinders decision making in this context. In this study, we assessed the distribution of twelve native freshwater mussel species across six Northeastern states (Connecticut, Rhode Island, Massachusetts, Vermont, New Hampshire, and Maine) in the United States using data collected from lentic and lotic environments by eight state agencies. We first modeled individual distributions using a maximum entropy (MaxEnt) model and then compiled distribution models to assess the distribution of freshwater mussel species richness. We also determined geographic prioritization for three conservation-related actions: species surveys, land protection, and population restoration of species of high conservation concern. We found that the percent of catchments predicted to have species occurrence (based on a probability threshold) varied across species, with Elliptio complanata (Eastern elliptio) predicted to occur in the greatest percent of available catchments (33.92%) and Alasmidonta heterodon (Dwarf wedgemussel) expected in the smallest percent (5.30%). The predicted overall species richness within our modeled catchments ranged from zero to all twelve species, with an average of two species per catchment. Although conservation priorities vary depending on the conservation action of interest, we found some areas of consistent importance including much of Maine and the southern reaches of the Connecticut River. An improved understanding of freshwater mussel distribution in a landscape framework will enable managers to implement more precise and efficient conservation interventions for these essential aquatic species.
The queen's resistance
\"Brienna is a mistress of knowledge and is beginning to settle into her role as the daughter of the once disgraced lord, Davin MacQuinn. Though she'd just survived a revolution that will return a queen to the throne, she faces yet another challenge: acceptance by the MacQuinns. But as Queen Isolde Kavanagh's closest confidant, she'll have to balance serving her father's House as well as her country. Then there's Aodhan Morgan, formerly known as Cartier âEvariste, who is adjusting to the stark contrast between his pre-rebellion life in Valenia and his current one as lord of a fallen House. As he attempts to restore the Morgane name, he let his mind wander--what if he doesn't have to raise his House alone? What if Brienna could stand by his side? But Brienna and Cartier must put their feelings aside, as there are more vital tasks at hand--the Lannons' trial, forging alliances, and ensuring that no one halts the queen's coronation. Resistance is rumbling among the old regime's supporters, who are desperate to find a weakness in the rebels' forces. And what makes one more vulnerable than love?\"--Publisher's description.
Designing Critical Literacy Education through Critical Discourse Analysis
Uniquely bringing together discourse analysis, critical literacy, and teacher research, this book invites teacher educators, literacy researchers, and discourse analysts to consider how discourse analysis can be used to foster critical literacy education. It is both a guide for conducting critical discourse analysis and a look at how the authors, alongside their teacher education students, used the tools of discourse analysis to inquire into, critique, and design critical literacy practices. Through an intimate look at the workings of a university teacher education course and the discourse analysis tools that teacher-researchers use to understand their classrooms, the book provides examples of both pre-service teachers and teacher educators becoming critically literate. The context-rich examples highlight the ways in which discourse analysis aids teachers' decision making in the moment and reflections on their practice over time. Readers learn to conduct discourse analysis as they read about critical literacy practices at the university level. Designed to be interactive, each chapter features step-by-step procedures for conducting each kind of discourse analysis (narrative, critically oriented, multimodal), sample analyses, and additional readings and resources. By attending to the micro-interactions as well as processes that unfold across time, the book illustrates the power and potential of discourse analysis as a pedagogical and research tool.
People have shaped most of terrestrial nature for at least 12,000 years
Archaeological and paleoecological evidence shows that by 10,000 BCE, all human societies employed varying degrees of ecologically transformative land use practices, including burning, hunting, species propagation, domestication, cultivation, and others that have left long-term legacies across the terrestrial biosphere. Yet, a lingering paradigm among natural scientists, conservationists, and policymakers is that human transformation of terrestrial nature is mostly recent and inherently destructive. Here, we use the most up-to-date, spatially explicit global reconstruction of historical human populations and land use to show that this paradigm is likely wrong. Even 12,000 y ago, nearly three quarters of Earth’s landwas inhabited and therefore shaped by human societies, including more than 95% of temperate and 90% of tropical woodlands. Lands now characterized as “natural,” “intact,” and “wild” generally exhibit long histories of use, as do protected areas and Indigenous lands, and current global patterns of vertebrate species richness and key biodiversity areas are more strongly associated with past patterns of land use than with present ones in regional landscapes now characterized as natural. The current biodiversity crisis can seldom be explained by the loss of uninhabited wildlands, resulting instead from the appropriation, colonization, and intensifying use of the biodiverse cultural landscapes long shaped and sustained by prior societies. Recognizing this deep cultural connection with biodiversity will therefore be essential to resolve the crisis.
The determinants and welfare implications of US workers' diverging location choices by skill
From 1980 to 2000, the rise in the US college/high school graduate wage gap coincided with increased geographic sorting as college graduates concentrated in high wage, high rent cities. This paper estimates a structural spatial equilibrium model to determine causes and welfare consequences of this increased skill sorting. While local labor demand changes fundamentally caused the increased skill sorting, it was further fueled by endogenous increases in amenities within higher skill cities. Changes in cities' wages, rents, and endogenous amenities increased inequality between high school and college graduates by more than suggested by the increase in the college wage gap alone.
Our moon : how Earth's celestial companion transformed the planet, guided evolution, and made us who we are
\"Far from being a lifeless ornament in the sky, the Moon holds the answers to some of science's central questions. Silent, dry, and barren, Earth's 4.34-billion-year-old companion is essential to life on earth. Its gravity stabilized the Earth's orbit, and, as it once guided evolution, its tide stirring up nutrients that fostered complex life, it now influences everything from animal migrations and reproduction to the movements of plants' leaves. More than 30,000 years before humans invented writing, they used the Moon's waxing and waning to track the passage of time, and, in a tectonic shift for human consciousness, used it to plan for the future. Unsurprisingly, the Moon was a primary feature of the first religions, written language, and philosophy. But our relationship to the Moon became more concrete when Apollo landed on it in 1969 in a moment of scientific and political triumph. And both engineering and politics promise to shape our relationship with it in the near future. Scientists advocate for a return to the moon to do research; governments and billionaires want to return to turn a profit from its mineral resources. Who gets to decide how we use a celestial body that, Boyle argues, belongs to everyone and no one? How can we learn to protect this beautiful, spectral thing that we all share?\"-- Provided by publisher.
Cell Fate Decision as High-Dimensional Critical State Transition
Cell fate choice and commitment of multipotent progenitor cells to a differentiated lineage requires broad changes of their gene expression profile. But how progenitor cells overcome the stability of their gene expression configuration (attractor) to exit the attractor in one direction remains elusive. Here we show that commitment of blood progenitor cells to the erythroid or myeloid lineage is preceded by the destabilization of their high-dimensional attractor state, such that differentiating cells undergo a critical state transition. Single-cell resolution analysis of gene expression in populations of differentiating cells affords a new quantitative index for predicting critical transitions in a high-dimensional state space based on decrease of correlation between cells and concomitant increase of correlation between genes as cells approach a tipping point. The detection of \"rebellious cells\" that enter the fate opposite to the one intended corroborates the model of preceding destabilization of a progenitor attractor. Thus, early warning signals associated with critical transitions can be detected in statistical ensembles of high-dimensional systems, offering a formal theory-based approach for analyzing single-cell molecular profiles that goes beyond current computational pattern recognition, does not require knowledge of specific pathways, and could be used to predict impending major shifts in development and disease.