Discover
Students will launch the Southeast Queens flooding project by examining local evidence, identifying who is affected, and framing a focused challenge as urban planners preparing to compare drainage designs with polynomial models in later phases.
Day 1
🌧️ Southeast Queens Flooding Launch
Launch 60m
Examine
Students will analyze Queens or Brooklyn flooding evidence, evaluate source credibility, identify root causes, and propose one drainage approach supported by local data, stakeholder needs, and early algebraic reasoning.
Day 2
🌧️ Flooding Evidence Sprint
Knowledge/Skill Building 15m
πŸ“š Source Evaluation Report
Deliverable 15m
🧭 Root Cause Analysis
Deliverable 15m
πŸ› οΈ Solution Proposal
Deliverable 15m
Engineer
Students will turn prior flood-data analysis into a draft neighborhood flood-risk decision tool by studying a strong model, making a testable prediction about two drainage designs, planning their build, and documenting first-round revisions based on peer feedback.
Day 3
🧭 Exemplar Exploration
Deliverable 15m
πŸ§ͺ Hypothesis
Deliverable 10m
πŸ—ΊοΈ Creation Plan
Deliverable 15m
πŸ” Solution Development Report
Deliverable 20m
Do
Students will test their neighborhood flood-risk decision tool using class simulation data and peer users, document evidence of how two drainage designs perform, and record implementation results that support a revised recommendation for an NYC community board.
Day 4
πŸ§ͺ Implementation and Data Collection Plan
Deliverable 20m
πŸ“Š Implementation Results
Deliverable 40m
Share
Students will present their neighborhood flood-risk decision tools to an authentic audience, document how feedback shaped their final recommendation, and reflect on how their mathematical modeling, civic reasoning, and collaboration developed across the project.
Day 4
🌊 Growth Reflection
Assessment 60m