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Guided learning journeys that build knowledge step by step.
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7816 Paths · page 498 / 782
This graduate-level path explores how ecological and environmental factors influence the transmission and dynamics of infectious diseases. It covers foundational concepts in disease ecology, pathogen transmission, vector ecology, landscape epidemiology, and disease modeling, with an emphasis on the interactions between ecology and microbiology.
This advanced graduate-level path equips students with the knowledge and skills to use fossil records—pollen, macrofossils, and stable isotopes—to reconstruct past ecological conditions. It covers the geological and ecological foundations, proxy interpretation, climate-ecology links, and long-term dynamics, culminating in a synthesis project.
This advanced graduate-level path explores the One Health framework, emphasizing the interconnections among human, animal, and environmental health. It covers foundational ecology and microbiology, zoonotic disease dynamics, ecosystem health, and the policy dimensions of One Health, culminating in an applied capstone project.
This learning path guides graduate students in biology and bioinformatics through the foundational molecular biology concepts and advanced omics technologies required to apply genomics, transcriptomics, proteomics, and metabolomics to environmental biology. It emphasizes the integration of multi-omics data to address ecological questions, preparing learners to design and interpret environmental omics studies.
This path equips graduate students in biology and engineering with the interdisciplinary knowledge needed to design and engineer ecological systems. It integrates genetics, ecology, and engineering principles to address challenges in synthetic biology, microbiome engineering, bioremediation, and biocontrol.
This learning path provides environmental engineers and biologists with a comprehensive understanding of biological waste treatment processes, including activated sludge, anaerobic digestion, composting, constructed wetlands, and bioremediation. It begins with the foundational microbiology and environmental factors, then explores each treatment technology, emphasizing their operational principles, design considerations, and practical applications. The path concludes with advanced topics in process optimization and emerging technologies for sustainable waste management.
This learning path equips agricultural and pest management professionals with the ecological knowledge needed to design effective, sustainable pest control strategies. It covers foundational ecology, population dynamics, and ecosystem services, then integrates these principles into Integrated Pest Management (IPM), including monitoring, biological control, cultural practices, and judicious chemical use.
An advanced graduate path for forestry and ecology students, covering the ecological foundations of forest ecosystems and their sustainable management. Learners will study forest structure, dynamics, silviculture, conservation, forest products, and sustainability, integrating ecological principles with practical management strategies.
This advanced graduate-level path equips students with the knowledge to understand fish population biology and apply quantitative methods for sustainable management. It covers essential fish biology, population dynamics, stock assessment, aquaculture, and fishery management, integrating ecological and statistical principles.
This learning path provides wildlife managers and biologists with a comprehensive understanding of the principles and practices of wildlife population management. It covers foundational ecology, population dynamics, estimation techniques, harvest management, endangered species conservation, and habitat management, emphasizing adaptive management and human dimensions.