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Artykuły w czasopismach na temat "Ecosystem engineer"

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Cintra, Allsay Kitsash Addifisyukha. "MENGENAL PEREKAYASA EKOSISTEM." OSEANA 44, no. 2 (2019): 49–53. http://dx.doi.org/10.14203/oseana.2019.vol.44no.2.49.

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UNDERSTANDING THE ECOSYSTEM ENGINEERS. Ecosystem engineers are organisms that can create, destroy or even maintain the sustainability of a particular habitat. The process of ecosystem engineering begins with structural changes in the environment and subsequently change the abiotic the biotic term or the existence of other organisms. Ecosystem engineers are divided into two, namely autogenic and allogenic engineers. Autogenic engineers change the habitat condition by shifting their body conditions, whereas allogenic engineers that can directly change habitat conditions. The impact of ecosystem
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Gable, Thomas D., Sean M. Johnson-Bice, Austin T. Homkes, Steve K. Windels, and Joseph K. Bump. "Outsized effect of predation: Wolves alter wetland creation and recolonization by killing ecosystem engineers." Science Advances 6, no. 46 (2020): eabc5439. http://dx.doi.org/10.1126/sciadv.abc5439.

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Gray wolves are a premier example of how predators can transform ecosystems through trophic cascades. However, whether wolves change ecosystems as drastically as previously suggested has been increasingly questioned. We demonstrate how wolves alter wetland creation and recolonization by killing dispersing beavers. Beavers are ecosystem engineers that generate most wetland creation throughout boreal ecosystems. By studying beaver pond creation and recolonization patterns coupled with wolf predation on beavers, we determined that 84% of newly created and recolonized beaver ponds remained occupie
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Ayanu, Yohannes, Anke Jentsch, Detlef Müller-Mahn, Simone Rettberg, Clemens Romankiewicz, and Thomas Koellner. "Ecosystem engineer unleashed: Prosopis juliflora threatening ecosystem services?" Regional Environmental Change 15, no. 1 (2014): 155–67. http://dx.doi.org/10.1007/s10113-014-0616-x.

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Stawski, Clare. "The little feathered ecosystem engineer." Journal of Experimental Biology 220, no. 11 (2017): 1934.1–1934. http://dx.doi.org/10.1242/jeb.147397.

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Wheelwright, Nathaniel T. "Eradication of an ecosystem engineer." Frontiers in Ecology and the Environment 14, no. 1 (2016): 53–54. http://dx.doi.org/10.1002/fee.1221.

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Mott, Cy L., Craig K. Bloomquist, and Clayton K. Nielsen. "Within-lodge interactions between two ecosystem engineers, beavers (Castor canadensis) and muskrats (Ondatra zibethicus)." Behaviour 150, no. 11 (2013): 1325–44. http://dx.doi.org/10.1163/1568539x-00003097.

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Ecosystem engineers are frequently observed to increase local biodiversity through their effects on resource flows. While promotion of successional processes and increased biodiversity may occur without direct interaction between ecosystem engineers and sympatric species, many cases exist where interactions are common. Under such conditions, it is unclear whether direct interactions serve to facilitate or inhibit coexistence of ecosystem engineers and the species attempting to use engineered habitats. We used remote videography within lodges of an ecosystem engineer, beavers (Castor canadensis
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Bruschetti, Martín. "Role of Reef-Building, Ecosystem Engineering Polychaetes in Shallow Water Ecosystems." Diversity 11, no. 9 (2019): 168. http://dx.doi.org/10.3390/d11090168.

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Although the effect of ecosystem engineers in structuring communities is common in several systems, it is seldom as evident as in shallow marine soft-bottoms. These systems lack abiotic three-dimensional structures but host biogenic structures that play critical roles in controlling abiotic conditions and resources. Here I review how reef-building polychaetes (RBP) engineer their environment and affect habitat quality, thus regulating community structure, ecosystem functioning, and the provision of ecosystem services in shallow waters. The analysis focuses on different engineering mechanisms,
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Fontanari, José. "The Collapse of Ecosystem Engineer Populations." Mathematics 6, no. 1 (2018): 9. http://dx.doi.org/10.3390/math6010009.

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Lundgren, Erick J., Daniel Ramp, Juliet C. Stromberg, et al. "Equids engineer desert water availability." Science 372, no. 6541 (2021): 491–95. http://dx.doi.org/10.1126/science.abd6775.

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Megafauna play important roles in the biosphere, yet little is known about how they shape dryland ecosystems. We report on an overlooked form of ecosystem engineering by donkeys and horses. In the deserts of North America, digging of ≤2-meter wells to groundwater by feral equids increased the density of water features, reduced distances between waters, and, at times, provided the only water present. Vertebrate richness and activity were higher at equid wells than at adjacent dry sites, and, by mimicking flood disturbance, equid wells became nurseries for riparian trees. Our results suggest tha
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Tummon Flynn, Paula, Keegan McCarvill, K. Devon Lynn, and Pedro A. Quijón. "The positive effect of coexisting ecosystem engineers: a unique seaweed-mussel association provides refuge for native mud crabs against a non-indigenous predator." PeerJ 8 (December 21, 2020): e10540. http://dx.doi.org/10.7717/peerj.10540.

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In marine sedimentary bottoms, mussels and macroalgae have long been recognized as important autogenic engineers that create habitat and modify abiotic conditions. The structural complexity added by bivalves and macroalgae may also mediate intraguild predation amongst marine decapod crustaceans. While spatial distributions of these ecosystem engineers frequently overlap, there is limited understanding of compounded effects when more than one engineer is present. Here we demonstrate that the coexistence of two ecosystem engineers may create habitat valuable for the survival of a small native sp
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Rozprawy doktorskie na temat "Ecosystem engineer"

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Wodika, Ben. "EFFECTS OF TIME, SEED SOURCE, AND PLANT COMPOSITION ON MACROINVERTEBRATES IN RESTORED PRAIRIE." OpenSIUC, 2015. https://opensiuc.lib.siu.edu/dissertations/1088.

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Invertebrates influence primary productivity and nutrient cycling in ecosystems. They are also important links between producer and higher trophic levels. Despite their important role in terrestrial ecosystem function, invertebrates are frequently overlooked in ecological restorations. Thus, the objective of this research was to quantify how belowground macroinvertebrate ecosystem engineers and communities change over time following ecological restoration and examine whether the source of dominant plant species and the composition of non-dominant plant species influence aboveground macroinvert
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McCaffery, Magnus. "The influence of an ecosystem engineer on nutrient subsidies and fish invasions in Southwestern Montana." Diss., [Missoula, Mont.] : University of Montana, 2009. http://etd.lib.umt.edu/theses/available/etd-03102010-102211.

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Bush, Laura Elizabeth. "Stability and variability of the ecosystem engineer Sabellaria alveolata on differing temporal and spatial scales." Thesis, Bangor University, 2016. https://research.bangor.ac.uk/portal/en/theses/stability-and-variability-of-the-ecosystem-engineer-sabellaria-alveolata-on-differing-temporal-and-spatial-scales(1deae07d-a12b-4f61-9838-77e1a8bc9cca).html.

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Climate change is directly and indirectly impacting biota, A common prediction is that biogeographic ranges will extend poleward, with increases in abundance near the leading edge. Understanding how marine species will respond is hindered by a scarcity of long-term datasets. However, within the British Isles there is a long history of well-documented intertidal research. Historical data are stored in a variety of forms from grey-literature and national databases to published journals. Sabellaria alveolata is a conservationally important biogenic reef-forming species that reaches its northern r
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Hochhalter, Samuel J. "Patch-Scale Effects of an Invasive Ecosystem Engineer on the Structure and Function of a Eutrophic Stream." DigitalCommons@USU, 2009. https://digitalcommons.usu.edu/etd/307.

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Recent theoretical and technological advances in ecosystem science have dramatically expanded the ways in which scientists can pursue and explore ecological questions. For my thesis research, I integrated the recent theoretical concept of organisms as ecosystem engineers with the relatively recent development of stable isotope tracer tests to ask the question: how does the invasive common carp affect stream ecosystem structure and function? To investigate the structuring role of carp, I measured autotroph seasonal distribution and abundance and macroinvertebrate seasonal abundance and diver
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Vitelli, Frederico. "Herbivory by Parma mccullochi (Pomacentridae) : its role as an ecosystem engineer in temperate algal-dominated reefs." Thesis, Edith Cowan University, Research Online, Perth, Western Australia, 2013. https://ro.ecu.edu.au/theses/583.

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Pomacentridae is one of the most representative families of herbivorous fishes inhabiting both tropical and temperate reefs, yet the vast majority of studies examining feeding within this family have been undertaken in tropical rather than temperate regions. Despite the high abundances of the pomacentrid Parma mccullochi in temperate waters of Western Australia, and their likely importance in removing algae from reefs in the region, there is a lack of information on their diet and their impact on the reef algal community. This study aims to determine the role of Parma mccullochi as an ecosyste
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James, Alexandra Iona Biological Earth &amp Environmental Sciences Faculty of Science UNSW. "Development of resource-rich patches by soil-disturbing animals in arid environments." Awarded by:University of New South Wales. Biological, Earth & Environmental Sciences, 2009. http://handle.unsw.edu.au/1959.4/44353.

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In arid landscapes limited resources are concentrated into fertile patches that allow greater productivity than would otherwise be expected. Fertile patches are created and maintained by processes that modify soil topography and interrupt the flow of resources across the landscape. These processes may be abiotic or biotic in origin. Species that modify, maintain or create habitat have been termed ecosystem engineers. One group of soil disturbing ecosystem engineers creates fertile patches by modifying soil microtopography through foraging for food and creating habitat. This thesis examines the
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Martin, Stephanie Ann, and Marietjie Landman. "The Aardvark as an ecological engineer in the Eastern Karoo: dig patterns and emergent processes." Thesis, Nelson Mandela Metropolitan University, 2017. http://hdl.handle.net/10948/11952.

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Species which play particularly important roles in ecosystem patterns and processes are recognised as keystone species or ecosystem engineers. The conservation of these species is critical for the maintenance of the ecological role they play in ecosystem function. The aardvark, Orycteropus afer, is known to play a role in biopedturbation through digging for refuges and for prey, and as a consequence of these digging activities is expected to serve the role of an ecosystem engineer and keystone species. This study aimed to describe and quantify the ecological patterns and processes driven by th
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Posthumus, Erin Elizabeth. "Do Red Squirrel Middens Promote Vertebrate Species Diversity?" Thesis, The University of Arizona, 2013. http://hdl.handle.net/10150/294022.

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The modifications animals make to their environments can be critical to species diversity. Red squirrels (Tamiasciurus hudsonicus) create large piles of conifer cone debris (middens) and are hypothesized to function as a keystone species due to positive associations between middens and other vertebrate species. We assessed vegetation and landscape structure at middens with a resident red squirrel for varying consistencies over the prior 5 years and surveyed mammals and birds at the community and population level. After accounting for vegetation and landscape characteristics, red squirrel-creat
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Njozela, Cuma. "The role of the sandprawn, Callichirus kraussi, as an ecosystem engineer in a temporarily open/closed Eastern Cape estuary, South Africa." Thesis, Rhodes University, 2013. http://hdl.handle.net/10962/d1001539.

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The role of the sandprawn, Callichirus (=Callianassa) kraussi (Stebbing), as an ecosystem engineer was assessed in the lower reach of the temporarily open/closed Kasouga Estuary situated along the Eastern Cape coastline of southern Africa over the period April 2010 to June 2011. The study comprised two distinct components, a field study and a caging experiment. The field study assessed the correlation between sand prawn densities and selected physico-chemical (organic content of the sediment and bioturbation) and biological (microphytobenthic algal concentrations and macrobenthic abundance and
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Sancomb, Elizabeth J. "Direct and indirect effects of white-tailed deer (Odocoileus virginianus) herbivory on beetle and spider assemblages in Northern Wisconsin." Wright State University / OhioLINK, 2014. http://rave.ohiolink.edu/etdc/view?acc_num=wright1408363956.

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Książki na temat "Ecosystem engineer"

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Johnston, Carol A. Beavers: Boreal Ecosystem Engineers. Springer International Publishing, 2017. http://dx.doi.org/10.1007/978-3-319-61533-2.

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Kim, Cuddington, ed. Ecosystem engineers: Plants to protists. Elsevier, 2007.

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Bergamin, Giovanni, Mauro Guerrini, and Carlotta Alpigiano, eds. Bibliographic Control in the Digital Ecosystem. Firenze University Press, 2022. http://dx.doi.org/10.36253/978-88-5518-544-8.

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With the contributions of international experts, the book aims to explore the new boundaries of universal bibliographic control. Bibliographic control is radically changing because the bibliographic universe is radically changing: resources, agents, technologies, standards and practices. Among the main topics addressed: library cooperation networks; legal deposit; national bibliographies; new tools and standards (IFLA LRM, RDA, BIBFRAME); authority control and new alliances (Wikidata, Wikibase, Identifiers); new ways of indexing resources (artificial intelligence); institutional repositories;
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SAVEL'EVA, Ekaterina, Anna Fedchenko, and Ol'ga Gegechkori. Fundamentals of labor organization in digital ecosystems. INFRA-M Academic Publishing LLC., 2022. http://dx.doi.org/10.12737/1063619.

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The textbook comprehensively presents the regularities of the formation of the theory and practice of labor organization in digital ecosystems. The key issues of digital labor organization are considered: development and implementation of project-network forms of division and cooperation of labor; design of optimal labor processes based on modern information and communication technologies; formation of rational labor mobility and labor flows; development and implementation of sound norms and rules in the field of digital labor; training of labor agents to work in the digital space; creation of
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Singh, Pardeep, Rishikesh Singh, Pramit Verma, Rahul Bhadouria, Ajay Kumar, and Mahima Kaushik, eds. Plant-Microbes-Engineered Nano-particles (PM-ENPs) Nexus in Agro-Ecosystems. Springer International Publishing, 2021. http://dx.doi.org/10.1007/978-3-030-66956-0.

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Jane, Sexton, Titre John, Yozzo David, U.S. Army Engineer Waterways Experiment Station, and Institute for Water Resources (U.S.), eds. Planning and evaluating restoration of aquatic habitats from an ecological perspective. The Institute, 1996.

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Symposium, on Ecology of Large Bioturbators in Tidal Flats and Shallow Sublittoral Sediments (2003 Nagasaki Japan). Proceedings of the Symposium on Ecology of Large Bioturbators in Tidal Flats and Shallow Sublittoral Sediments--from individual behavior to their role as ecosystem engineers: 1-2 November, 2003, Nagasaki University, Nagasaki, Japan. Marine Research Institute, Nagasaki University, 2004.

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Symposium, on Ecology of Large Bioturbators in Tidal Flats and Shallow Sublittoral Sediments (2003 Nagasaki Japan). Proceedings of the Symposium on Ecology of Large Bioturbators in Tidal Flats and Shallow Sublittoral Sediments--from individual behavior to their role as ecosystem engineers: 1-2 November, 2003, Nagasaki University, Nagasaki, Japan. Marine Research Institute, Nagasaki University, 2004.

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(Editor), Kim Cuddington, James E. Byers (Editor), William G. Wilson (Editor), and Alan Hastings (Editor), eds. Ecosystem Engineers (Theoretical Ecology). Academic Press, 2007.

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(Editor), Kim Cuddington, James E. Byers (Editor), William G. Wilson (Editor), and Alan Hastings (Editor), eds. Ecosystem Engineers (Theoretical Ecology). Academic Press, 2007.

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Części książek na temat "Ecosystem engineer"

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Chatterjee, Antra, Shbbir R. Khan, and Huma Vaseem. "Exploring the Role of Mycorrhizae as Soil Ecosystem Engineer." In Mycorrhizosphere and Pedogenesis. Springer Singapore, 2019. http://dx.doi.org/10.1007/978-981-13-6480-8_5.

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Visser, Sanne, Elisa Thébault, and Peter C. Ruiter. "Ecosystem species diversity Species Diversity Ecosystems Engineers Ecosystem Engineers , Keystone Species." In Encyclopedia of Sustainability Science and Technology. Springer New York, 2012. http://dx.doi.org/10.1007/978-1-4419-0851-3_569.

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Augustine, David J., Jennifer E. Smith, Ana D. Davidson, and Paul Stapp. "Burrowing Rodents." In Rangeland Wildlife Ecology and Conservation. Springer International Publishing, 2023. http://dx.doi.org/10.1007/978-3-031-34037-6_15.

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AbstractBurrowing rodents have unusually disproportionate effects on rangeland ecosystems because they (1) engineer their environment through burrow construction and modification of vegetation structure, (2) influence ecosystem processes including aboveground plant production, nutrient cycling rates, and water infiltration patterns, (3) alter plant community composition, and (4) provide a prey base for a diverse array of predators. In some cases, engineering effects create habitat for certain faunal species that inhabit burrows or colonies of these rodents. We review the ecology and management
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de Souza, Henrique Jesus, and Jacques Hubert Charles Delabie. "Ecosystem Engineers." In Encyclopedia of Social Insects. Springer International Publishing, 2020. http://dx.doi.org/10.1007/978-3-319-90306-4_186-1.

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Lawton, John H., and Clive G. Jones. "Linking Species and Ecosystems: Organisms as Ecosystem Engineers." In Linking Species & Ecosystems. Springer US, 1995. http://dx.doi.org/10.1007/978-1-4615-1773-3_14.

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Jones, Clive G., John H. Lawton, and Moshe Shachak. "Organisms as Ecosystem Engineers." In Ecosystem Management. Springer New York, 1994. http://dx.doi.org/10.1007/978-1-4612-4018-1_14.

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Johnston, Carol A. "Ecosystem Engineers: Beaver Ponds." In Beavers: Boreal Ecosystem Engineers. Springer International Publishing, 2017. http://dx.doi.org/10.1007/978-3-319-61533-2_2.

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Lavelle, Patrick. "Earthworms as Ecosystem Engineers." In Encyclopedia of Agrophysics. Springer Netherlands, 2011. http://dx.doi.org/10.1007/978-90-481-3585-1_45.

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de Visser, Sanne, Elisa Thébault, and Peter C. de Ruiter. "Ecosystem Engineers, Keystone Species." In Ecological Systems. Springer New York, 2012. http://dx.doi.org/10.1007/978-1-4614-5755-8_4.

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Quetzalli, Alejandra. "Search Engine Optimization." In Docs-as-Ecosystem. Apress, 2023. http://dx.doi.org/10.1007/978-1-4842-9328-7_3.

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Streszczenia konferencji na temat "Ecosystem engineer"

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Janakiraman, Arulselvan, Bhumika Shah, Venkata Reddy Thummala, Naresh Kumar, Vijayanand Balasubramaniam, and Om Goel. "Building AI-Powered Recommendation Engines Within Salesforce Ecosystems." In 2025 First International Conference on Advances in Computer Science, Electrical, Electronics, and Communication Technologies (CE2CT). IEEE, 2025. https://doi.org/10.1109/ce2ct64011.2025.10939805.

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Moukomla, Sitthisak, Kridsakron Auynirundronkool, Phurith Meeprom, and Supaporn Manajitprasert. "Evaluating Models for Urban LULC Classification by Integrating Earth Engine and Python Ecosystem." In 2024 Geoinformatics for Spatial-Infrastructure Development in Earth and Allied Sciences (GIS-IDEAS). IEEE, 2024. https://doi.org/10.1109/gis-ideas63212.2024.10991040.

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Chang, Ying, and Qinghua Zhu. "Optimized Resource Scheduling for Open Source Mobile Network Heterogeneous Computing Engines: A Comparative Study of DRF and H-DRF Algorithms." In 2024 International Conference on Information Technology, Communication Ecosystem and Management (ITCEM). IEEE, 2024. https://doi.org/10.1109/itcem65710.2024.00060.

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Zarychta, Maksymilian. "APPLICATION OF THE PROTON-EXCHANGE MEMBRANE HYDROGEN FUEL CELL AS A MOBILE POWER UNIT FOR THE HYDRIVE 1 VEHICLE." In 24th SGEM International Multidisciplinary Scientific GeoConference 24. STEF92 Technology, 2024. https://doi.org/10.5593/sgem2024/4.1/s17.04.

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This paper extensively explores the technology of Proton Exchange Membrane (PEM) hydrogen fuel cells, delving into its theoretical foundations, operational intricacies, and its specific application in the HYDRIVE 1 bolide. The PEM fuel cell plays a crucial role in the vehicle's power ecosystem by converting hydrogen and oxygen into electricity, which is then utilized to energize the electrical system, telemetry, and engine. The drive system's specifications are meticulously presented, encompassing considerations of efficiency and safety. Choosing a hydrogen cell as the propulsive force for an
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Ochoa, Valery A., Henry Osorto, and Ada S. Rodriguez. "Teaching Entrepreneurship in Civil Engineering and Architecture: Self-Diagnosis of Competencies in University Professors." In I Conferencia Internacional de Ciencia, Tecnología e Innovación. Trans Tech Publications Ltd, 2024. http://dx.doi.org/10.4028/p-ou0ute.

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The present study reflected on the role of teachers of architects and civil engineers in the promotion of entrepreneurship as an institutional axis of higher education centers with the aim of identifying the entrepreneurial competencies they possess through a self-diagnosis based on a mixed approach through a survey questionnaire established after a literature review of the subject and considering the opinion of experts. resulting in the profiles of teachers, their knowledge, skills, social roles, character traits, values and motivations that they possess in their classrooms, as well as the le
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Mashegov, Petr N. "Engineer Supply of University Research Infrastructure and Ecosystem of Small Innovative Enterprises." In International Conference «Responsible Research and Innovation. Cognitive-crcs, 2017. http://dx.doi.org/10.15405/epsbs.2017.07.02.80.

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Sunny Li Sun, Victor Z. Chen, Sanwar A. Sunny, and Jie Chen. "Venture capital as an ecosystem engineer for regional innovation in an emerging market." In 2017 IEEE Technology & Engineering Management Conference (TEMSCON). IEEE, 2017. http://dx.doi.org/10.1109/temscon.2017.7998347.

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Watson, Bryan C., Sanaya Kriplani, Marc J. Weissburg, and Bert Bras. "Use of a Trophic Structure Test Bed to Validate a New Systems-of-Systems Resilience Metric." In ASME 2020 International Mechanical Engineering Congress and Exposition. American Society of Mechanical Engineers, 2020. http://dx.doi.org/10.1115/imece2020-23932.

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Abstract Systems of Systems (SoS) combine complex systems such as financial, transportation, energy, and healthcare systems to provide greater functionality. A failure in a constituent system, however, can render the entire SoS ineffective by causing cascading faults. One method to prevent constituent faults from compromising SoS performance is to increase the SoS’s “resilience,” a measure of the SoS’s ability to cope with these faults and efficiently recover. Attempts to engineer improved resilience require a metric to measure resilience across different SoS architectures (network arrangement
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Surprenant, Rachel L., James G. Gehling, and Mary L. Droser. "AN UNLIKELY ECOSYSTEM ENGINEER: EXPLORING THE ROLE OF FUNISIA DOROTHEA AS A CONTROL ON DIVERSITY IN ONE OF EARTH’S EARLIEST COMPLEX ECOSYSTEMS, THE EDIACARA MEMBER, SOUTH AUSTRALIA." In GSA 2020 Connects Online. Geological Society of America, 2020. http://dx.doi.org/10.1130/abs/2020am-355070.

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Đuretanović, Simona R., Marija M. Jakovljević, Aleksandra M. Milošković, et al. "Applied machine learning in exploring key features of crayfish populations." In 2nd International Conference on Chemo and Bioinformatics. Institute for Information Technologies, University of Kragujevac, 2023. http://dx.doi.org/10.46793/iccbi23.184dj.

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Uniform Manifold Approximation and Projection (UMAP) is a nonlinear dimension reduction technique based on manifold learning. It is specifically designed to achieve a balance between the global and local structure when embedding data points. We applied this method to morphometric features in populations of the noble crayfish, a freshwater species recognized as both a keystone species and an ecosystem engineer, as well as an indicator of good water quality, with unquestionable cultural and economic value to humans. Our results show that the CLL parameter most contributed to the differences and
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Raporty organizacyjne na temat "Ecosystem engineer"

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Salter, R., Quyen Dong, Cody Coleman, et al. Data Lake Ecosystem Workflow. Engineer Research and Development Center (U.S.), 2021. http://dx.doi.org/10.21079/11681/40203.

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The Engineer Research and Development Center, Information Technology Laboratory’s (ERDC-ITL’s) Big Data Analytics team specializes in the analysis of large-scale datasets with capabilities across four research areas that require vast amounts of data to inform and drive analysis: large-scale data governance, deep learning and machine learning, natural language processing, and automated data labeling. Unfortunately, data transfer between government organizations is a complex and time-consuming process requiring coordination of multiple parties across multiple offices and organizations. Past succ
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Schad, Aaron, Daniel Allen, Lynde Dodd, et al. Aquatic ecosystem restoration in the Texas Western Gulf Coast Plain / Lower Rio Grande alluvial floodplain ecoregion : Resaca Boulevard Resaca Section 206—vegetation community adaptive management. Engineer Research and Development Center (U.S.), 2023. http://dx.doi.org/10.21079/11681/47559.

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As part of the US Army Corps of Engineers (USACE) Continuing Authorities Program (CAP), Section 206 projects focus on restoring aquatic habitats for the benefit of fish and other wildlife. From 2017–2021, USACE Engineer Research and Development Center–Environmental Laboratory researchers in the Aquatic Ecology and Invasive Species Branch (ERDC-EL EEA) at the Lewisville Aquatic Ecosystem Research Facility (LAERF) collaborated with USACE Galveston District, The Nature Conservancy, US Fish and Wildlife Service, National Park Service, and local nonfederal sponsors—Brownsville (Texas) Public Utilit
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Taylor, Jimmy D., Greg K. Yarrow, and James E. Miller. Beavers. U.S. Department of Agriculture, Animal and Plant Health Inspection Service, 2017. http://dx.doi.org/10.32747/2017.7207729.ws.

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The American beaver (Castor canadensis) is known as an “ecosystem engineer” because of the benefits their dams provide to biological diversity and ecosystem function. It also is considered a “keystone species” because of its ability to transform its environment, creating new habitats upon which other species depend. Despite the many positive benefits beavers provide through foraging and dam building, beavers also create conflict with people when their activities cause damage. The focus of this publication is to provide basic information on beaver ecology, damage, and management.
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Russ, Emily, Amy Yarnall, Matthew Balazik, J. Blanche, Austin Draper, and Safra Altman. Beneficial use of dredged material for submerged aquatic vegetation habitats : overcoming challenges and seeking new opportunities. Engineer Research and Development Center (U.S.), 2025. https://doi.org/10.21079/11681/49567.

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There is a critical need to maintain and create conditions that are conducive for longterm survival of submerged aquatic vegetation (SAV) habitats, which provide multiple ecosystem services, using dredged material. This technical note (TN) was developed by the US Army Engineer Research and Development Center (ERDC)–Environmental Laboratory (EL) to address the specific challenges US Army Corps of Engineers (USACE) practitioners at the district and division level face that impede the development of beneficial use of dredged material (BUDM) projects to restore, conserve, and expand SAV habitats.
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Russ, Emily, Amy Yarnall, and Safra Altman. Dredged material can benefit submerged aquatic vegetation (SAV) habitats. Engineer Research and Development Center (U.S.), 2023. http://dx.doi.org/10.21079/11681/47423.

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This technical note (TN) was developed by the US Army Engineer Research and Development Center–Environmental Laboratory (ERDC-EL) to provide an overview of the ecosystem services delivered by submerged aquatic vegetation (SAV) to estuarine and coastal ecosystems and to describe potential methods for the beneficial use of dredged material (BUDM) to aid in SAV restoration. Although dredging tends to have a negative association with SAV habitats, BUDM may provide an opportunity to expand suitable SAV habitat to areas where depth is the primary limiting factor. Recent in situ observations have sho
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Harlow, Megann, Nathan Harms, Aaron Schad, Danny Allen, William LeVan, and Ashton DeRossette. Initial rearing, release, and establishment of biological control agent Pseudophilothrips ichini to control Brazilian peppertree (Schinus terebinthifolia) in South Texas ecosystem restoration projects. Engineer Research and Development Center (U.S.), 2024. http://dx.doi.org/10.21079/11681/48690.

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Control of the invasive Brazilian peppertree (Schinus terebinthifolia) is a major cost component of US Army Corps of Engineers (USACE) ecosystem restoration (ER) projects in South Texas, specifically the USACE Galveston district (SWG) Resacas at Brownsville, Texas, ER Project. Biological control has been developed as a sustainable tool to lower long-term weed management costs. Although a biological control program for S. terebinthifolia has been in operation in Florida since 2019, no similar program existed in Texas until initiated by the Engineer Research and Development Center (ERDC) in 2020
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Killgore, K. Jack, Nicky M. Faucheux, Audrey B. Harrison, et al. Lower Mississippi River Resource Assessment: Library of Aquatic Habitat Models. U.S. Army Engineer Research and Development Center, 2025. https://doi.org/10.21079/11681/4985.

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Six ecosystem models were developed to evaluate restoration measures for the Lower Mississippi River Resource Assessment that considered connectivity between river and floodplain, substrate quality in riverine habitats, and targeted species of special interest including Paddlefish and wetland fish assemblages. A total of 85 restoration measures in the Hatchie to Loosahatchie reach were identified by the Project Delivery Team that had different modeling requirements. Field data collected by the Engineer Research and Development Center–Environmental Laboratory in the Lower Mississippi River and
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Killgore, K. Jack. Lower Mississippi River Resource Assessment: Library of Aquatic Habitat Models. U.S. Army Engineer Research and Development Center, 2025. https://doi.org/10.21079/11681/49825.

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Six ecosystem models were developed to evaluate restoration measures for the Lower Mississippi River Resource Assessment that considered connectivity between river and floodplain, substrate quality in riverine habitats, and targeted species of special interest including Paddlefish and wetland fish assemblages. A total of 85 restoration measures in the Hatchie to Loosahatchie reach were identified by the Project Delivery Team that had different modeling requirements. Field data collected by the Engineer Research and Development Center–Environmental Laboratory in the Lower Mississippi River and
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Anderson, Sarah M., Emily R. Russ, and Lynde L. Dodd. Submerged Aquatic Vegetation Monitoring for Process-Based Model Development. U.S. Army Engineer Research and Development Center, 2025. https://doi.org/10.21079/11681/49826.

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Submerged aquatic vegetation (SAV) habitat conservation and restoration are necessary actions to counteract the loss of these critical habitats and their associated ecosystem services, such as habitat provisioning and water quality improvements. Process-based numerical models are essential for planning effective and enduring SAV management strategies but require robust datasets to realistically represent processes at high spatial and temporal resolutions. This technical note (TN), developed by the US Army Engineer Research and Development Center–Environmental Laboratory (ERDC-EL), describes an
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Kennedy, Alan, Andrew McQueen, Mark Ballentine, et al. Sustainable harmful algal bloom mitigation by 3D printed photocatalytic oxidation devices (3D-PODs). Engineer Research and Development Center (U.S.), 2022. http://dx.doi.org/10.21079/11681/43980.

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The impacts of Harmful Algal Blooms (HAB), often caused by cyanobacteria (Figure 1), on water resources are increasing. Innovative solutions for treatment of HABs and their associated toxins are needed to mitigate these impacts and decrease risks without introducing persistent legacy contaminants that cause collateral ecosystem impacts. This technical note (TN) identifies novel opportunities enabled by Additive Manufacturing (AM), or 3D printing, to produce high surface area advanced material composites to rapidly prototype sustainable environmental solutions for aquatic nuisance species contr
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