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Exhibits

Cahners ComputerPlace

Computer, Communications, Robotics, Science, and Technology

Explore the robotics, computers, and communication systems that enhance our lives.

Activities provide an exciting, hands-on way for students to explore the STEM concepts behind robotics and computing through talking to a virtual museum guide, navigating an interactive sandscape, programming a robot using wooden blocks, and sending a Mars rover on a mission.

Format Exhibit
Grades Pre-K – 12
Location Blue Wing, Level 1 — Museum of Science, Boston
Website Enter the InterFaces Virtual Exhibit
Documents CCP Software List.pdf
Related Links Carnegie Mellon University's NanoRobotics Lab
Exponent's MARCbot: A Military Robot
iRobot Create: Programmable Robot
Magic of Magnetism
Personal Exploration Rover: Simulating a Mars Mission
PicoCricket: Electronic Invention Kit
Scratch: Programming Animations, Games and Music
Tern: Tangible Programming
Tinker: A Virtual Museum Guide

Support Provided By:


iRobot

Cahners ComputerPlace

+ View Detailed Standard Connections

Primary Connections:

MA Science and Technology/Engineering Framework (2006)
(Massachusetts)

  • Inquiry and Experimentation > Skills of Inquiry (Grade: 3 – 5)
  • Inquiry and Experimentation > Skills of Inquiry (Grade: 6 – 8)
  • Technology/Engineering > Communication Technologies (Grade: 6 – 8)
  • Technology/Engineering > Manufacturing Technologies (Grade: 6 – 8)
  • Technology/Engineering > Manufacturing Technologies (Grade: 9 – 10)
  • Technology/Engineering > Communication Technologies (Grade: 9 – 10)

Secondary Connections:

MA Science and Technology/Engineering Framework (2006)
(Massachusetts)

  • Technology/Engineering > Engineering Design (Grade: 9 – 10)
  • Technology/Engineering > Manufacturing Technologies (Grade: 9 – 10)

– View Concise Standard Connections

Primary Connections:

MA Science and Technology/Engineering Framework (2006)
(Massachusetts)

  • Inquiry and Experimentation > Skills of Inquiry (Grade: 3 – 5)
    Select and use appropriate tools and technology (e.g., calculators, computers, balances, scales, meter sticks, graduated cylinders) in order to extend observations.
  • Inquiry and Experimentation > Skills of Inquiry (Grade: 6 – 8)
    Select appropriate tools and technology (e.g., calculators, computers, thermometers, meter sticks, balances, graduated cylinders, and microscopes), and make quantitative observations.
  • Technology/Engineering > 3.2 Communication Technologies (Grade: 6 – 8)
    Identify and explain the appropriate tools, machines, and electronic devices (e.g., drawing tools, computer-aided design, and cameras) used to produce and/or reproduce design solutions (e.g., engineering drawings, prototypes, and reports).
  • Technology/Engineering > 4.2 Manufacturing Technologies (Grade: 6 – 8)
    Explain and give examples of the impacts of interchangeable parts, components of mass-produced products, and the use of automation, e.g., robotics.
  • Technology/Engineering > 7.3 Manufacturing Technologies (Grade: 9 – 10)
    Explain the process and the programming of robotic action utilizing three axes.
  • Technology/Engineering > 6.1 Communication Technologies (Grade: 9 – 10)
    Identify and explain the applications of light in communications, e.g., reflection, refraction, additive, and subtractive color theory.

Secondary Connections:

MA Science and Technology/Engineering Framework (2006)
(Massachusetts)

  • Technology/Engineering > 1.3 Engineering Design (Grade: 9 – 10)
    Demonstrate the use of drafting techniques with paper and pencil or computer-aided design (CAD) systems when available.
  • Technology/Engineering > 7.2 Manufacturing Technologies (Grade: 9 – 10)
    Differentiate the selection of tools and procedures used in the safe production of products in the manufacturing process, e.g., hand tools, power tools, computer-aided manufacturing, three-dimensional modeling.

Cahners ComputerPlace

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Cahners ComputerPlace

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