Launch
Launch
Students will launch the egg-drop engineering challenge by experiencing a fast first design-test cycle, connecting the problem to crash safety physics, and setting clear expectations for evidence-based design work in later phases.
Days 1 - 2
Research & Plan
Research & Plan
Students will define measurable criteria and constraints for the egg-drop challenge, investigate how Newtonβs Laws, impulse-momentum, and energy conservation inform safer designs, study car safety and packaging examples, draft multiple container concepts, and produce a team design brief with a data-collection plan for later sensor-based testing.
Days 3 - 8
Decide & Build
Decide & Build
Students will compare multiple egg-container concepts, justify a team design with a weighted decision matrix, learn just-in-time construction moves that increase stopping time, and build a first prototype ready for sensor-based drop testing.
Days 9 - 13
Test & Showcase
Test & Showcase
Students will collect comparable drop-test data, analyze failure points with physics reasoning, revise their egg-protection designs based on evidence, and assemble the slides, graphs, video clips, and engineering story needed for the Crash Lab Showcase.
Days 14 - 18
Showcase
Showcase
Students will present and defend their final egg-protection designs to an authentic audience, using slides, videos, prototype evidence, and physics reasoning to explain how testing and revision improved performance. They will complete the project by demonstrating design outcomes, answering audience questions with quantitative evidence, and documenting their final engineering thinking in the portfolio.
Days 19 - 20
Launch
Days 1–2
Day 1
π Newtonβs Rescue Mission Drop
Launch
45m
Day 2
π Criteria, Constraints, and Crash Notes
Knowledge/Skill Building
45m
Research & Plan
Days 3–8
Day 3
π Criteria and Constraints Brief
Knowledge/Skill Building
45m
Day 4
π Crash Safety Physics Notes
Knowledge/Skill Building
45m
Day 5
π Packaging and Sensor Research Jigsaw
Research
45m
Day 6
βοΈ Three Egg Container Concepts
Deliverable
45m
Day 7
π¬ Sketch Critique and Revision
Project Work
45m
Day 8
π§ͺ Design Brief and Test Plan Checkpoint
Assessment
45m
Decide & Build
Days 9–13
Day 9
π§ Impulse Design Moves
Knowledge/Skill Building
40m
Day 10
βοΈ Three Egg Container Concepts
Deliverable
45m
Day 11
π¬ Decision Matrix Critique
Project Work
45m
Day 12
π οΈ Stopping-Time Build Workshop
Knowledge/Skill Building
50m
Day 13
π Prototype Readiness Check
Assessment
40m
Test & Showcase
Days 14–18
Day 14
π Sensor Test Protocol Tune-Up
Knowledge/Skill Building
35m
Day 15
π§ͺ Mentor Drop Trial Round
Community Experience
45m
Day 16
π Failure Analysis and Revision Board
Deliverable
45m
Day 17
π§ Retest and Improve Build
Project Work
45m
Day 18
π₯οΈ Crash Lab Slide Deck Checkpoint
Assessment
45m
Showcase
Days 19–20
Day 19
π₯οΈ Crash Lab Showcase Run
Community Experience
45m
Day 20
π Final Design Portfolio Defense
Assessment
45m
September 2026
Mon
Tue
Wed
Thu
Fri
28
Day 1
Launch
π Newtonβs Rescue Mission Drop
29
Day 2
π Criteria, Constraints, and Crash Notes
30
Day 3
Research & Plan
π Criteria and Constraints Brief
1
Day 4
π Crash Safety Physics Notes
2
Day 5
π Packaging and Sensor Research Jigsaw
October 2026
Mon
Tue
Wed
Thu
Fri
5
Day 6
βοΈ Three Egg Container Concepts
6
Day 7
π¬ Sketch Critique and Revision
7
Day 8
π§ͺ Design Brief and Test Plan Checkpoint
8
Day 9
Decide & Build
π§ Impulse Design Moves
9
Day 10
βοΈ Three Egg Container Concepts
12
Day 11
π¬ Decision Matrix Critique
13
Day 12
π οΈ Stopping-Time Build Workshop
14
Day 13
π Prototype Readiness Check
15
Day 14
Test & Showcase
π Sensor Test Protocol Tune-Up
16
Day 15
π§ͺ Mentor Drop Trial Round
19
Day 16
π Failure Analysis and Revision Board
20
Day 17
π§ Retest and Improve Build
21
Day 18
π₯οΈ Crash Lab Slide Deck Checkpoint
22
Day 19
Showcase
π₯οΈ Crash Lab Showcase Run
23
Day 20
π Final Design Portfolio Defense