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An investigation of US participation in the transatlantic slave trade to the Americas, from the American Revolution to the Civil War While much of modern scholarship has focused on the American slave trade’s impact within the United States, considerably less has addressed its effects in other parts of the Americas. A rich analysis of a complex subject, this study draws on Portuguese, Brazilian, and Spanish primary documents—as well as English-language material—to shed new light on the changing behavior of slave traders and their networks, particularly in Brazil and Cuba. Slavery in these nations, as Marques shows, contributed to the mounting tensions that would ultimately lead to the U.S. Civil War. Taking a truly Atlantic perspective, Marques outlines the multiple forms of U.S. involvement in this traffic amid various legislation and shifting international relations, exploring the global processes that shaped the history of this participation.
The two-volume set LNAI 13073 and 13074 constitutes the proceedings of the 10th Brazilian Conference on Intelligent Systems, BRACIS 2021, held in São Paolo, Brazil, in November-December 2021. The total of 77 papers presented in these two volumes was carefully reviewed and selected from 192 submissions.The contributions are organized in the following topical sections: Part I: Agent and Multi-Agent Systems, Planning and Reinforcement Learning; Evolutionary Computation, Metaheuristics, Constrains and Search, Combinatorial and Numerical Optimization, Knowledge Representation, Logic and Fuzzy Systems; Machine Learning and Data Mining. Part II: Multidisciplinary Artificial and Computational Intelligence and Applications; Neural Networks, Deep Learning and Computer Vision; Text Mining and Natural Language Processing. Due to the COVID-2019 pandemic, BRACIS 2021 was held as a virtual event.
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To have unimaginably outstanding useful properties (physical, mechanical, electrical, optical, chemical, and magnetic) in a single material design is a highly challenging task in the material science community, which can be achieved through nanocomposites. These nanocomposites can be produced from all conventional materials, which include polymers, metals/alloys, and ceramics, by modifying their internal structures. Due to modification of the structures of all kinds of conventional materials, at either the nano or ultra-fine level, the materials exhibit superior performance, which is a boon for all fields of science. In general, nanocomposite materials can be manufactured by solid-state processing techniques, liquid metallurgy, ex-situ and in-situ powder metallurgy, and other basic science synthesis routes. Furthermore, the possibility of making environmentally friendly materials is also possible with nanotechnology. Therefore, to investigate and demonstrate developments in the field of nanocomposites, this book is targeted at all the scientific personnel working in this field.