Students explore the relationship between mass and gravity by calculating their weight on different celestial bodies and creating a visual representation of the data.
A high-impact 7th-grade STEM unit exploring biomechanics, the human skeletal-muscular leverage system, and pioneering prosthetic innovations. Students design and build physical mechanical limb models to solve real-world accessibility challenges.
A highly engaging board-game based lesson where students master the 11 major human body organ systems through competitive and collaborative gameplay. Includes a full 50-tile board and companion reference guide.
A printable student recording sheet and reflection guide to accompany the 40-tile Monopoly-style Anatomy Quest board game. Includes 16 designated answer slots, health point trackers, and deep-dive organ system reflection questions.
An immersive 3-day scientific inquiry studio where students investigate the impact of music and sound on human performance, using the scientific method to collect real-world data.
An interactive, dice-rolling biology game where students simulate organ failure to analyze its cascading effects on body system homeostasis. Includes printable foldable dice, gameplay matrices, group rotation cards, and structured student scorecards.
A complete printable Monopoly-style board game kit for mastering the 11 human body systems. Includes a beautifully designed 40-tile board game with questions, a comprehensive system reference sheet, an answer key, and a student scorecard.
A comprehensive three-part vocabulary sequence focused on the fundamentals of matter, states of matter, and chemical reactions. Aligned with the Savvas Science curriculum, it supports vocabulary acquisition through matching, word banks, and visual tasks.
A hands-on scientific method investigation where students design, mix, and test different papier-mâché recipes to engineer the ultimate strong piñata paste using mass-loading tests.
A comprehensive teacher facilitation guide. Features materials checklist, classroom setup advice, 50-minute lesson pacing roadmap, analytical rubric, and four high-quality student exemplar answers for grading clinical case files.
A game design and mathematics sequence where students deconstruct and build idle game mechanics, loop design, and exponential growth formulas.
A structured journey through cell biology, comparing prokaryotic and eukaryotic structures, detailing plant and animal cell differences, and mapping organelle functions using a highly relatable cell city analogy.
A 2-page station bundle. Page 1 contains 4 printable task cards to guide self-paced lab group rotations (Diagnostic Lab, Emergency Room, Research Wing, and Therapy Center). Page 2 provides a Comprehensive Systems Reference Manual summarizing all six systems' baseline feedback mechanisms to support student arguments.