Eisco® Tectonics Model – Earth’s Layers & Plate Boundaries with Labeled Geological Features – Classroom Geology & Earth Science Teaching Aid
Eisco® Tectonics Model – Earth’s Layers & Plate Boundaries with Labeled Geological Features – Classroom Geology & Earth Science Teaching Aid
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Comprehensive Geological Representation – Includes Earth’s layers, active/passive margins, oceanic ridges, rift valleys, trenches, Benioff plane, and continental shelves/slopes.
Classroom-Ready Dimensions – Model measures 16.5 x 14 x 4.75 inches, securely mounted on a sturdy 20 x 18 x 0.5-inch baseboard.
Labeled for Easy Learning – Clearly marked geological features for quick identification and better student understanding.
Expertly Hand-Painted – Vibrant, eco-friendly paint enhances visibility and engagement during classroom demonstrations.
Ideal for Teaching Earth Science – Perfect for introducing geology, plate tectonics, volcanism, and seismic activity in schools, labs, and educational programs.
Bring plate tectonics and Earth’s geological processes to life with the Eisco® Tectonics Model, a detailed 3D representation designed for classrooms, labs, and educational demonstrations. This expertly crafted teaching tool illustrates Earth’s layers, plate boundaries, active and passive margins, oceanic ridges, rift valleys, trenches, the Benioff plane, and continental shelves/slopes with precision and clarity.
Mounted on a durable 20 x 18-inch baseboard, the model is ideal for both display and hands-on demonstrations. Each geological feature is clearly labeled, making it easy for students to visualize and understand complex Earth science concepts.
Every unit is hand-painted with eco-friendly, non-toxic paints, highlighting key tectonic structures in vibrant detail for maximum engagement. Perfect for geology teachers, earth science educators, and classrooms exploring plate tectonics, volcanism, seismicity, and Earth’s structure.
This tectonics model is not only a visual learning aid but also a reliable tool to reinforce lessons on how Earth’s crustal movements shape our planet.