Collecting & Organizing Data
Decide which notebook notes count as usable data, then organize the measurements into a clear, readable table.
Science lessons
Sixteen browser-based science lessons are ready to use, including the complete five-lesson data-analysis series. Pick a topic or grade band to narrow the shelf.
Decide which notebook notes count as usable data, then organize the measurements into a clear, readable table.
Identify the relationship in a dataset, choose the graph with the right visual job, and build and defend your choice.
Read patterns carefully, repair misleading graph choices, and write conclusions that stay grounded in the data.
Use patterns and measured evidence to write a careful conclusion that answers the investigation question.
Bring the data-analysis toolkit together to make a decision, support it with evidence, and explain what should happen next.
Decide what even counts as matter, then use physical properties — solubility, crystal shape, and density — to tell four look-alike white powders apart and identify a mislabeled jar.
Investigate a greenhouse mystery, separate observations from inferences, and revise explanations as new evidence appears.
Identify variables, control conditions, and design a fair pea-plant growth experiment.
Use claim, evidence, and reasoning to build a science explanation from real bean seed sprouting data.
Write and improve an experimental procedure so another scientist could repeat a bean-seedling fertilizer test the same way.
Prepare a lab bench, choose protective equipment, make safe decisions, and practice emergency response in an animated lab-safety simulation.
Join a shared classroom fishery, choose your catches, and compare the results across rounds.
Investigate an urchin barren, map the food web, and test trophic cascades in a kelp forest simulator.
Trace one carbon atom into plant matter through models, maps, and a photosynthesis builder.
Build nucleotides, use base-pairing rules, and model how DNA copies itself.
Follow DNA instructions into RNA and proteins to see how cells build what they need.
Investigate why two purple-flowered parents can have a white-flowered offspring — through sorting, allele modeling, and a Punnett square build.
Choose parent genotypes, predict inherited traits, flip the allele coins, and hatch a dragon whose phenotype matches the evidence.
Try a different topic or grade band.
Five of these lessons form a beginning-of-year sequence that teaches how science works before bigger content units.
See the intro-to-science sequenceTeacher packs include student pages, answer keys, and notes to help you use the lessons in class.
Visit the teacher storeStudents can use the activities without logins, names, analytics, or cloud storage.
Read privacy notesThe full series runs from collecting and organizing data through graph choice, graph reading, careful conclusions, and evidence-based decisions.
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