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Path Category
Guided learning journeys that build knowledge step by step.
category · Learning · slug · learning · 7817 Paths
7817 Paths · page 553 / 782
A structured learning path for high school students beginning fieldwork preparation. Covers map scales, contours, gradients, symbols, cross-sections, and aerial photo interpretation, culminating in an integrated geological map reading project.
This path introduces the principles and methods used to decipher Earth's 4.6-billion-year history, from relative dating to the geologic time scale. It covers major events such as mass extinctions, the evolution of life, and changes in paleogeography, providing a systematic framework for understanding Earth's past.
A beginner-friendly path introducing the core concepts of physical geology, including Earth's structure, plate tectonics, the rock cycle, minerals, geological time, and surface processes. Designed for high school students beginning earth sciences.
This learning path introduces high school students to the fundamental concepts of cell biology, covering the cell theory, the differences between prokaryotic and eukaryotic cells, the diversity of cell size and shape, and the basics of microscopy used to study cells. It is designed for systematic learning with clear prerequisites and a logical sequence.
This advanced graduate-level path equips microbiome researchers with the skills to analyze microbial communities from environmental samples using bioinformatics. It covers 16S rRNA amplicon analysis (OTU clustering, taxonomic assignment) and shotgun metagenomics (functional profiling), with foundational bioinformatics prerequisites. The path emphasizes reproducible workflows and correct interpretation of results.
This learning path equips microbiome researchers with the skills to analyze metagenomic data, covering both 16S rRNA amplicon and shotgun sequencing approaches. It progresses from foundational bioinformatics and microbiology concepts to advanced taxonomic and functional profiling, culminating in hands-on software applications and integrative analysis.
A graduate-level learning path that builds the essential methodological skills for independent ecological research, from hypothesis-driven experimental design through data analysis, modeling, and scientific communication. It emphasizes reproducibility, ethics, and practical fieldwork, preparing learners to conduct rigorous and credible investigations.
This advanced graduate-level path equips ecology and geology students with the knowledge and skills to reconstruct past ecosystems and understand environmental change. It covers fundamental ecological principles, Earth's history, dating methods, and key paleoecological proxies such as fossils, pollen, and geochemical indicators, culminating in the synthesis of paleoenvironmental reconstructions and their application to contemporary issues.
This learning path explores the philosophical and ethical foundations of ecology, covering key concepts from basic ecology to deep ecology, intrinsic value, environmental justice, and stewardship. Designed for ecology and philosophy students, it integrates ecological understanding with ethical reasoning to address contemporary environmental challenges.
This advanced graduate-level path equips environmental economics students with the conceptual foundations and analytical tools of ecological economics, emphasizing sustainability, natural capital, and policy applications. It bridges basic economics with ecological principles to address pressing environmental challenges.