A project-based unit where 6th-grade students design, test, and evaluate water filtration systems, applying concepts of mixtures and separation techniques.
A high school biology sequence focused on the neuroscience of addiction, specifically analyzing how chemical structure and speed of delivery influence the brain's reward system. Students explore the biological mechanisms of tolerance, dependence, and the blood-brain barrier through graphing and comparative analysis.
A specialized AP Biology unit exploring the intersection of neuroscience and psychology, focusing on the biological mechanisms of mental health disorders and the pharmacology of their treatments.
A series of lessons exploring genetics and protein synthesis through the lens of spider silk production for medical use. Adapted for 3rd-grade reading levels while maintaining 6th-grade science concepts.
A comprehensive 5-week sequence exploring the physical properties of water, the engineering of water filtration, and the complex systems of Virginia's watersheds. Students move from hands-on engineering to chemical properties and finally to large-scale environmental systems.
Une séquence de 6ème pour découvrir la cellule à travers des observations microscopiques, passant des végétaux aux animaux puis aux unicellulaires.
A unit exploring the microscopic machines that keep living things running, from building cells to breaking down food.
A comprehensive one-week unit covering the foundations of cell theory, the technical mastery of microscopes, and the fascinating structures of unicellular organisms (Amoeba, Paramecium, Euglena, and Volvox).
Une séquence approfondie sur les phases claires de la photosynthèse, destinée aux étudiants de première année de licence. Elle couvre la capture de l'énergie lumineuse, les pigments photosynthétiques et la chaîne de transfert d'électrons.
Une séquence exhaustive sur le métabolisme pour les classes préparatoires BCPST, couvrant l'hétérotrophie, l'autotrophie au carbone et à l'azote, ainsi que la chimiolithotrophie. La séquence met l'accent sur les bilans énergétiques, les flux de protons et l'intégration des voies métaboliques.
A comprehensive unit exploring the fundamentals of electricity, magnetism, and how they combine in circuits, focusing on energy transformations and hands-on visuals.
A comprehensive unit where students become environmental detectives to investigate biodiversity, interdependencies, and human impact within their local ecosystems through inquiry-based field studies.
A unit exploring the biological origins of humanity, focusing on evolutionary biology, phylogeny, and the development of complex traits like bipedalism and collective learning.
A lesson sequence focused on the scientific method, using a mystery box activity to practice observation, hypothesis formation, and experimentation. Students explore the historical roots of the method and apply it to solve physical puzzles.
A unit exploring the fundamental concepts of business, economics, and entrepreneurship for middle school students.
A specialized high school chemistry/biology integrated lesson exploring the biochemical differences between Archaea and Bacteria. Students analyze how ether bonds and lipid monolayers provide structural stability for survival in extreme thermal environments through modeling and chemical analysis.
A comprehensive lesson sequence on human body systems, starting with the fundamentals of cellular organization and homeostasis.
A deep dive into marine biology and animal physiology, focusing on the unique adaptations that allow aquatic life to thrive in diverse environments.
A Kindergarten and 1st Grade science unit exploring our neighbor planet, Mars. Students compare Earth and Mars using visual aids, a hands-on sorting activity, and creative drawing to understand planetary similarities and differences.
A series of lessons exploring the intersection of technology, geology, and environmental science, focusing on how the products we use every day are connected to the Earth's resources and the global environment.
A hands-on exploration of physics and forces, focusing on gravity, motion, and air resistance through engineering challenges.
A lesson sequence focusing on the differences between renewable and non-renewable energy sources, culminating in a town council role-play debate. Students explore energy transformations and evaluate the environmental and economic impacts of different power sources.
A lesson focused on Galileo's gravitational experiments and the mathematical resolution of the 'gravity paradox,' where mass cancels out in the calculation of acceleration. Students conduct a hands-on lab using bottles of different masses to test empirical results against theoretical models.
An exploration of the dynamic processes that shape our planet's surface, focusing on tectonic activity, volcanic formations, and the movement of the Earth's crust.
A comprehensive science lesson for 4th-6th graders exploring the six types of volcanoes and the relationship between lava viscosity and volcano shape. The sequence includes a hands-on 'Ketchup Race' demonstration, video analysis, and a sculpting activity.
A series of lessons focused on human-induced climate change, exploring the causes, effects, and potential solutions through data analysis and scientific inquiry.
A comprehensive lesson sequence exploring the three modes of heat transfer (conduction, convection, and radiation) and the concept of thermal equilibrium using real-world scenarios and particle-level explanations.
This middle school science sequence focuses on the intersection of scientific data, environmental policy, and local air quality. Students will explore the historical context of the Clean Air Act, analyze modern Air Quality Index (AQI) data, and investigate pollution sources in their own communities to understand how science informs law and public health.
A series focused on local environmental action and urban air quality solutions, guiding students from observation to advocacy.
A short unit focused on the Kingdom Fungi, specifically investigating the growth and structure of molds through hands-on experimentation and video analysis.