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Introduction to Mobiles

Introduction to Mobiles

Students hang their mobile design in the classroom

Introduction to Mobiles

Introduction to Mobiles

Student constructs her mobile

Introduction to Mobiles: Anchor Chart

Introduction to Mobiles: Anchor Chart

A classroom anchor chart of key vocabulary early in the course

Master Mobiles

Master Mobiles

Student constructing her mobile design

Master Mobiles

Master Mobiles

Student mobiles on display in the classroom via a clothesline

Master Mobiles

Master Mobiles

A student mobile hangs in the classroom

Mastering Mobiles

Mastering Mobiles

Students apply the principles of balance they explore in the course to build their own mobile.

Getting into Gear

Getting into Gear

Students experiments with drive and follower gears

Getting into Gear

Getting into Gear

Working together to experiment with gear forces

Getting into Gear

Getting into Gear

Working together to set up the different gears

Getting into Gear

Getting into Gear

Preparing to experiment with turning the gears

Getting into Gear

Getting into Gear

Drive and follower gears ready for experimentation

Getting into Gear

Getting into Gear

A student tests the effect of a drive gear on follower gears

Engineering Automata

Engineering Automata

Student constructs a “human” automata sculpture using gears

Engineering Automata

Engineering Automata

Designing a moving sculpture with gears

Engineering Automata

Engineering Automata

Students use cams and gears to build an automaton that represents a human or animal that moves as a result of their design

Marble Run: Design Planning

Marble Run: Design Planning

Sketch of a marble run design prior to building the marble run

Marble Run

Marble Run

Students work together to build their marble run

Setting Up the Marble Run

Setting Up the Marble Run

A group sets up an elaborate marble run across multiple student desks

Marble Run

Marble Run

Students work together with foam tubes to build a marble run

Marble Run

Marble Run

A student prepares to drop the marble into her marble run

Marble Run

Marble Run

Student prepares to drop his marble to test his marble run

Marble Run

Marble Run

Student prepares to drop the marble to test his marble run

Marble Run

Marble Run

A student connects foam tubes for her group’s marble run

Marble Run

Marble Run

Example of a marble run design attached to a classroom wall

Crushable Vehicle

Crushable Vehicle

Students design a vehicle sculpture that can be crushed!

Magnetic Material

Magnetic Material

Students explain how magnets attract and repel

Sculptures with Magnets

Sculptures with Magnets

Students work together with materials to build their magnetic sculpture, using a ferrofluid bottle

Sculptures with Magnets

Sculptures with Magnets

A student uses a magnet to test his magnetic sculpture design in a ferrofluid bottle

Sculptures with Magnets

Sculptures with Magnets

Student builds her magnetic sculpture design

Sculptures with Magnets

Sculptures with Magnets

A school bus that is controlled by a set of magnets.

Wind and Movement

Wind and Movement

Students investigate turbines

Wind and Movement

Wind and Movement

Learning about the blades of a windmill

Blowing in the Wind

Blowing in the Wind

Affixing blades to their sculpture design

Blowing in the Wind

Blowing in the Wind

Working together to connect the turbine to their blades

Blowing in the Wind

Blowing in the Wind

Students use scissors to cut foil and create blades for their windmill sculpture

Blowing in the Wind

Blowing in the Wind

Constructing blades out of aluminum foil

Blowing in the Wind

Blowing in the Wind

Working together to build their windmill design

Blowing in the Wind

Blowing in the Wind

Students construct their windmill using a turbine and aluminum foil

Final Criteria and Contraints

Final Criteria and Contraints

Student explanation for use of colors and materials in the sculpture design

Final Sculpture Design

Final Sculpture Design

Students build their final structure that includes a marble run with dominoes and cardboard

Final Sculpture Design

Final Sculpture Design

Marbles, dominoes, and a wooden rod on a student desk

Showcase Preparation

Showcase Preparation

Students prepare to demonstrate their sculpture for the final showcase

Showcase Preparation

Showcase Preparation

Inspecting a final marble run design involving gears, cups, foam tubes, boxes, and other materials

Showcase Preparation

Showcase Preparation

Dominoes and wooden rods set for preparation for the Showcase

Showcase

Showcase

Students demonstrate the effect of wind on the movement of their final sculpture

Showcase

Showcase

Students gather to view the movement of a final sculpture in the design of a windmill

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Intro to and Master Mobiles: Video Tutorial
Introduction to Mobiles
Introduction to Mobiles
Introduction to Mobiles: Anchor Chart
Find the Balance Point: Video Tutorial
Master Mobiles
Master Mobiles
Master Mobiles
Mastering Mobiles
Getting into Gear: Video Tutorial
Getting into Gear
Getting into Gear
Getting into Gear
Getting into Gear
Getting into Gear
Getting into Gear
Engineering Automata: Video Tutorial
Engineering Automata
Engineering Automata
Engineering Automata
 Marble Run: Video Tutorial
Marble Run: Student Testimonials
Marble Run: Design Planning
Marble Run
Setting Up the Marble Run
Marble Run
Marble Run
Marble Run
Marble Run
Marble Run
Marble Run
Marble Lift: Video Tutorial
Crushable Sculptures: Video Tutorial
Crushable Vehicle
Magnetic Material and Sculptures with Magnets: Video Tutorial
Magnetic Material
Sculptures with Magnets
Sculptures with Magnets
Sculptures with Magnets
Sculptures with Magnets
Wind and Movement
Wind and Movement
Blowing in the Wind: Video Tutorial
Blowing in the Wind
Blowing in the Wind
Blowing in the Wind
Blowing in the Wind
Blowing in the Wind
Blowing in the Wind
Final Criteria and Contraints
Final Sculpture Design
Final Sculpture Design
Showcase Preparation
Showcase Preparation
Showcase Preparation
Showcase
Showcase
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i2 Learning provides project-based STEM curriculum, professional development for teachers, and logistical support for educators to engage and inspire their students for a STEM-based world. i2 is a 501(c)3 organization which began in 2013 as a STEM summer program for 400 middle school children in Boston and New York and has since grown to reach almost 100,000 students in 48 states and 86 countries across the world.

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