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Guided learning journeys that build knowledge step by step.
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7817 Paths · page 524 / 782
A professional learning path covering the physical processes of groundwater recharge, methods for estimating recharge, sustainable management practices including managed aquifer recharge, and the impacts of climate change on groundwater storage. Designed for groundwater management professionals seeking to deepen their understanding and apply this knowledge in their work.
This learning path guides graduate students in ecohydrology through the core concepts and skills needed to model interactions between ecosystems and water. It covers water balance, vegetation dynamics, coupling mechanisms, environmental flows, and practical model applications, emphasizing the use of programming for model implementation.
This learning path equips graduate hydrology students with the knowledge and skills to apply stable and radioactive isotopes in hydrological investigations. It covers the fundamental principles of isotope fractionation, the systematics of key water isotopes, and their applications in tracing water origins, recharge studies, and age dating. The path progresses from foundational chemistry and hydrology to advanced data interpretation and case studies.
This graduate-level path equips learners to analyze the two-way interactions between water resources and climate, covering climate variability and change, hydrological processes, extremes, feedbacks, and adaptation. It builds from foundational climate and hydrology science through advanced modeling and management applications.
This learning path equips water professionals with the knowledge and skills to apply IWRM principles in practice. It covers the foundational concepts, governance frameworks, technical tools, and collaborative processes necessary for sustainable and adaptive water management.
This learning path equips water planning professionals with the knowledge to effectively plan and manage water resources. It covers foundational hydrology, demand and supply analysis, planning frameworks, policy, decision support, conflict resolution, and stakeholder engagement, culminating in an integrated capstone project.
This learning path provides professionals in agriculture with a comprehensive understanding of the hydrological principles underlying irrigation systems. It covers water requirements, scheduling, efficiency, drainage, salinity, and sustainable water management, integrating practical applications with advanced concepts.
This learning path equips urban planning professionals with the knowledge and skills to design effective stormwater management systems. It covers the fundamentals of urban hydrology, stormwater quality, and the principles of low-impact development and green infrastructure, culminating in the design of detention facilities and integrated drainage systems.
This learning path equips civil engineering professionals with the knowledge and skills to apply hydrological and engineering principles to river management. It covers streamflow analysis, sediment transport, channel design, flood protection, river restoration, hydraulic structures, and floodplain management, emphasizing integrated, sustainable approaches.
This advanced professional learning path equips environmental consultants with the knowledge and skills to assess, monitor, and remediate groundwater contamination. Learners will progress from fundamental hydrogeology and chemistry through contaminant transport, site investigation, and regulatory compliance, culminating in the design of effective remediation strategies.