IAP in Model Making – SDICI – SkillEdu IAP
School of Design, Innovation & Creative Intelligence

IAP in Model Making

A 12-year spiral journey from craft-based construction to engineering prototypes to research-grade innovation — the same design process revisited every year at increasing sophistication, so skills compound instead of resetting.

Program At a Glance
Grades 1–12Full spiral coverage
5 StagesFoundation → Research & Entrepreneurship
1 Process, 12 YearsAsk → Imagine → Plan → Create → Improve
Age-Gated ToolsSafety matrix from clay to laser cutters
Programme Vision
One Design Process, Twelve Years of Depth

IAP in Model Making takes students on a 12-year spiral journey — from craft-based construction to engineering prototypes to research-grade innovation projects. Each grade revisits the same design process at increasing sophistication, so skills compound year over year instead of resetting. The programme sits within SDICI's Model Making & Prototyping category and feeds directly into the school's Rapid Prototyping, Engineering Model Design, and Product Development Lifecycle courses at the senior level.

Design Process Framework
Used Every Grade, Every Project

Every project at every grade level — from a Grade 1 paper house to a Grade 12 disaster-response prototype — runs through the same five-step cycle. Only the depth, tools, and rigor expected at each step increase with grade level.

Ask

Imagine

Plan

Create

Improve

Stage Overview
Five Stages & SDICI Course Mapping
StageGradesFocusSDICI Course Mapping
Foundation1–2Observation & CreativityIAP in Model Making (Foundation)
Exploration3–5Science Around UsIAP in Model Making (Foundation) → IAP in Scientific Model Making
Discovery6–8Applied Science & EngineeringIAP in Engineering Model Design • IAP in Architectural Model Making
Innovation9–10STEM & Real-World SystemsIAP in Rapid Prototyping • IAP in Scientific Model Making
Research & Entrepreneurship11–12Advanced Models & Innovation ProjectsIAP in Product Development Lifecycle • IAP in Prototype Development
Grade-Wise Curriculum
What Students Build, Grade by Grade
1

My World

Fine motor skills · Imagination · Storytelling
My HouseFarm ModelZoo ModelTraffic SignalsShapes CitySeasons DioramaCommunity HelpersMy Neighbourhood Map
2

Nature & Environment

Observation · Cutting · Pasting · Storytelling
Water CyclePlant Life CycleHealthy Food PlateRainy Day SceneAnimal HabitatsTree ModelRecycling ModelDay & Night
3

Earth & Science

Basic measurement and labelling
VolcanoLandformsSimple Weather StationHuman Body BasicsLayers of EarthFloating & SinkingWindmillWater Conservation
4

Machines Around Us

Simple machines and real-world application
Pulley ModelLever ModelWheel & AxleIrrigation SystemBridge ModelRenewable Energy ParkWater FilterSmart Village
5

Science in Daily Life

Basic engineering thinking
Hydraulic LiftPeriscopeSolar CookerRainwater HarvestingDigestive SystemElectric Circuit HouseEco-Friendly HomeAgricultural Model
6

Engineering Explorers

Forces, structures, sustainability
Hydraulic BridgeWorking CraneWater Treatment PlantGreenhouse ModelWind Energy SystemEarthquake-Resistant HouseSmart Irrigation
7

Smart Systems

Introductory sensors and automation
Smart Traffic ManagementDam & Hydroelectric PlantRobotics BasicsFlood ManagementWeather Monitoring StationMetro RailWaste Management Plant
8

Design Thinking Projects

Problem identification and prototyping
Smart CityDrone ConceptSustainable School CampusEV ConceptAutomated ParkingDisaster ManagementVertical Farming
9

STEM Innovation

Integration of Science, Technology & Mathematics
Solar Tracking SystemSmart HomeWater Quality MonitoringIoT Farm ConceptAutomated Street LightingBiofuel PlantClimate Solutions
10

Real-World Engineering

Working and semi-working models
Waste-to-Energy PlantSmart Transportation NetworkRenewable Energy GridRainwater RechargeSustainable Urban DevelopmentPrecision Agriculture
11

Research & Product Design

Research methodology, documentation
Smart GreenhouseAutonomous Vehicle ConceptAI-based Smart CitySustainable Building DesignWater Purification TechRenewable Energy IntegrationAgricultural Automation
12

Innovation & Entrepreneurship

Deliverables: Prototype, Research Report, Cost Analysis, Business Model Canvas, Presentation & Viva
Low-cost Smart IrrigationSmart Waste SegregationFlood Alert SystemRural Healthcare DeliveryEnergy-Efficient HousingEV Charging InfrastructureDisaster Response TechSustainable Campus Design
Skills & Competency Ladder
A Measurable Skill Gain at Every Stage

A parallel capability track ensures each stage is tied to a measurable skill gain, not just a new topic.

G1–2

Ask → Imagine. Can describe an idea and build a recognisable representation using paper/clay with adult guidance.

G3–5

Imagine → Plan. Can take basic measurements (±5mm), label a diagram, and explain one scientific principle behind a model.

G6–8

Plan → Create. Can use hand tools safely, explain force/structure/energy concepts, and identify a real-world problem to prototype.

G9–10

Create → Improve. Can size a component to a real load, read a basic datasheet, and build a working/semi-working model.

G11–12

Full Cycle, Independently. Can conduct research, document methodology, cost a prototype, and pitch a business model.

Tools & Safety Matrix
Fabrication Access Is Gated by Age & Supervision
Grade BandPermitted ToolsSupervision Level
1–3Round-tip scissors, glue stick, clay, cardboardDirect supervision, 1:6 ratio
4–5Craft knives (teacher-handled), basic hand drills, wood glueDirect supervision
6–8Glue guns, hand saws, low-voltage circuits (< 12V)Direct supervision, trained aide
9–10Soldering irons, power tools, Arduino/sensor kitsTrained facilitator, lab protocol
11–123D printers, laser cutters, live electronics, workshop machineryCertified lab access only
Infrastructure Roadmap
Stage Capital Investment, Not a Day-One Lab

Schools adopting this programme should plan capital investment against this staged roadmap rather than building a full fabrication lab on day one.

Grades 1–5 · Low

Craft / Activity Room

Paper, clay, basic supplies — classroom-based, no dedicated capital spend.

Grades 6–8 · Medium

Basic Maker Lab

Hand tools, glue guns, simple circuit kits — one shared maker lab per campus.

Grades 9–10 · Medium–High

Electronics / Robotics Lab

Arduino/IoT kits, soldering stations — dedicated lab plus trained facilitator.

Grades 11–12 · High

Fabrication Lab

3D printer, laser cutter, workshop bench — capital investment, shared across senior grades.

Assessment
One Rubric, Reused Every Year — Only the Weighting Shifts
StageConcept ClarityCraftsmanship / FunctionPresentationResearch & Documentation
Foundation (1–2)40%35%25%
Exploration (3–5)30%35%25%10%
Discovery (6–8)25%35%20%20%
Innovation (9–10)20%30%20%30%
Research & Entrepreneurship (11–12)15%25%20%40%
Documentation & e-Portfolio Scaffold
A Habit Built From Grade 3, Not a Grade 12 First Attempt
Grade BandDocumentation Expected
1–2One photo of finished model + one-line caption (teacher-assisted)
3–5Photo + 3–4 sentence description of what the model shows and how it was built
6–8One-page write-up: problem, materials, process, one improvement made
9–10Structured lab-style report: hypothesis/goal, build process, testing notes, results
11–12Full research report + cost analysis + Business Model Canvas + viva presentation
Team vs. Individual Work
From Solo Craft to Collaborative Innovation

Grades 1–5 emphasise individual or paired work to build core fine-motor and conceptual skills. From Grade 6 onward, projects shift to team-based work to build collaboration, division of labour, and peer review — reflected in the Term 3 "Innovate" team-project window each year.

Annual IAP Cycle
Four Terms, One Rhythm Every Year
Term 1 — Learn

Concept Introduction

Demonstrations, mini model activity.

Term 2 — Build

Skill Building

Individual model making, skill workshops.

Term 3 — Innovate

Application

Team projects, design-thinking challenge.

Term 4 — Showcase

Presentation

Model exhibition, STEM fair, community presentation.

Cross-Curricular Themes
Ten Themes, Recurring at Increasing Complexity

These themes link Model Making to the school's science, sustainability, and technology curricula across every grade band.

Sustainability & SDGs Smart Cities Agriculture & Food Security Space Science Renewable Energy Robotics & Automation Health & Biotechnology Transportation & Infrastructure Water Conservation AI & Future Technologies
External Linkages & Partnerships
Beyond the Classroom
Outcome
A 12-Year Portfolio, Not a Collection of Crafts

From Paper House to Patent-Ready Prototype

By Grade 12, a student completing this programme carries a 12-year documented portfolio spanning craft, science, engineering, and research-grade prototypes — positioning them directly for SDICI's Patent Thinking and Innovation Entrepreneurship tracks, or for allied SkillEdu schools in AI, Engineering, Agriculture, and Sustainability.

Give Your Students a 12-Year Making Portfolio.

IAP in Model Making is offered under School 19 · SDICI, part of the SkillEdu IAP 150+™ ecosystem.

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