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Guided learning journeys that build knowledge step by step.
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7816 Paths · page 491 / 782
This advanced learning path explores the complex interactions among soil organisms, integrating soil biology, microbial ecology, and food web dynamics. It builds from foundational concepts in soil science and biology to advanced topics in functional diversity and ecosystem processes, providing a systematic understanding for university students in soil biology.
A comprehensive learning path for university students in soil chemistry to understand the detailed chemical reactions in soil, covering surface chemistry, speciation, redox, kinetics, and organic matter chemistry, built on foundational chemistry and soil science concepts.
This advanced learning path guides university students in soil physics from foundational calculus and soil physics principles through detailed exploration of soil water potential, hydraulic conductivity, solute transport, and modeling. It emphasizes genuine conceptual dependencies and culminates in practical modeling applications.
This learning path introduces university students in urban/environmental science to the unique properties, challenges, and management of urban soils. It covers soil science fundamentals, urban-specific issues like contamination and compaction, hydrological impacts, and management strategies including green infrastructure.
This learning path equips soil science students with the skills to conduct and interpret soil surveys. It covers soil classification, mapping techniques, GIS applications, and the use of digital soil databases and tools like Web Soil Survey. The path progresses from foundational concepts to practical applications, culminating in the ability to produce and interpret soil survey reports for land use decisions.
This learning path provides an intermediate-level understanding of how soil properties influence plant growth and production. It covers essential soil fertility concepts, nutrient cycling and availability, root growth and function, and plant nutrition, emphasizing the dynamic interactions between soil and plants. Designed for university students in agriculture or plant science, this path builds from basic soil and plant concepts to integrated management applications.
This learning path explores the critical role of soil in the climate system, from fundamental soil science and climate basics to advanced topics in soil carbon dynamics, greenhouse gas emissions, and management strategies. It emphasizes the feedbacks between soil processes and climate change, providing a systematic understanding for students in climate and soil science.
This learning path provides environmental science students with a foundational understanding of how soil processes affect water quality. It covers essential soil hydrology and chemistry concepts, pathways of contamination (runoff and leaching), and the regulatory context of water quality standards. The path progresses from basic soil properties to advanced concepts of contaminant transport and management, preparing learners for careers in environmental science.
This learning path introduces high school environmental science students to soil pollution, covering essential soil chemistry, major pollutant classes (heavy metals, pesticides, organic pollutants), and basic remediation techniques. It builds a systematic understanding of how contaminants behave in soil and how they can be managed.
This learning path introduces high school environmental science students to the fundamentals of soil erosion, including its causes, mechanisms, impacts, and prevention strategies. Starting with soil basics, it progresses through water and wind erosion processes, factors influencing erosion, and conservation practices, culminating in an introduction to erosion modeling.