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Guided learning journeys that build knowledge step by step.
category · Learning · slug · learning · 7817 Paths
7817 Paths · page 513 / 782
This learning path guides high school students through the systematic identification of common rock-forming minerals using physical and chemical properties. Starting with foundational concepts like crystal systems and physical properties, learners progress through hands-on identification techniques and practice with common minerals. The path emphasizes a logical sequence from basic properties to practical application, culminating in the confident identification of minerals using a basic identification kit.
This learning path guides high school students through the processes that form sedimentary rocks, from weathering and erosion to deposition and lithification. It also introduces key depositional environments and sedimentary structures, providing a systematic understanding of sedimentology.
A beginner-friendly learning path covering the layered structure of Earth and the theory of plate tectonics. It builds from basic geography and Earth's internal layers to the mechanisms driving plate motion and the features of plate boundaries.
This learning path provides a systematic introduction to marine geochemistry, covering the composition of seawater, key biogeochemical cycles, carbonate chemistry, trace metal behavior, sedimentation processes, and their applications in paleoceanography. Designed for oceanography students, it builds from foundational chemistry and oceanographic principles to advanced topics.
This learning path equips graduate geochemistry students with the statistical skills necessary to analyze and interpret geochemical data. It covers essential concepts from data handling and univariate statistics to multivariate methods, regression, and visualization, with practical applications using geochemical databases and programming.
A graduate-level learning path covering the theory, numerical methods, and application of advanced electromagnetic (EM) methods in geophysics, including magnetotellurics, controlled-source EM, time-domain EM, airborne EM, inversion, and interpretation for exploration.
This advanced professional path equips exploration geophysicists with the skills to interpret gravity and magnetic data for subsurface characterization. It covers foundational potential field theory, data processing, anomaly separation, forward modeling, inversion, and advanced interpretation techniques like Euler deconvolution and 3D modeling, culminating in integrated geological interpretation for exploration targets.
This learning path introduces the fundamentals of solar radiation and its role in driving atmospheric processes. Starting with basic physics concepts, it progresses through radiation balance, the greenhouse effect, albedo, seasons, and insolation, culminating in an understanding of atmospheric circulation.
This learning path equips public health professionals with the knowledge to understand and address the health impacts of atmospheric conditions. It covers key atmospheric phenomena, their direct and indirect health effects, and strategies for adaptation and early warning.
This learning path equips agricultural professionals with the knowledge to understand and manage the impacts of weather on crops. It covers core meteorological concepts, crop-weather relationships, key stress events (drought, heat, frost), and practical applications such as forecasting and irrigation scheduling, culminating in a capstone project.