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The City, Spring 2003
Conditional Remix & Share Permitted
CC BY-NC-SA
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Examines the evolving structure of cities, the dynamic processes that shape them, and the significance of a city's history for its future development. Develops the ability to read urban form as an interplay of natural processes and human purposes over time. Field assignments in Boston provide the opportunity to use, develop, and refine these concepts.

Subject:
Applied Science
Architecture and Design
Material Type:
Full Course
Textbook
Author:
Spirn, Anne Whiston
Date Added:
01/01/2003
Exploring the Electromagnetic Spectrum
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Students learn the basics of the electromagnetic spectrum and how various types of electromagnetic waves are related in terms of wavelength and energy. In addition, they are introduced to the various types of waves that make up the electromagnetic spectrum including, radio waves, ultraviolet waves, visible light and infrared waves. These topics help inform students before they turn to designing solutions to an overarching engineering challenge question.

Author:
Research Experience for Teachers (RET) Program, Center of Advancement of Engineering Fibers and Films,
Ellen Zielinski, Courtney Faber
The Grand Challenge: Simulating Human Vision
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Students are introduced to the Robotics Peripheral Vision Grand Challenge question. They are asked to write journal responses to the question and brainstorm what information they require to answer the question. Their ideas are shared with the class and recorded. Then, students share their ideas with each other and brainstorm any additional ideas. Next, students draw a basis for the average peripheral vision of humans and then compare that range to the range of two different focal lengths in a camera. Through the associated activity provides, students see the differences between human and computer vision.

Author:
Anna Goncharova
Mark Gonyea
TeachEngineering.org
VU Bioengineering RET Program,
Rachelle Klinger
Light Properties
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Students learn about the basic properties of light and how light interacts with objects. They are introduced to the additive and subtractive color systems, and the phenomena of refraction. Students further explore the differences between the additive and subtractive color systems via predictions, observations and analysis during three demonstrations. These topics help students gain a better understanding of how light is connected to color, bringing them closer to answering an overarching engineering challenge question.

Author:
Research Experience for Teachers (RET) Program, Center of Advancement of Engineering Fibers and Films,
Ellen Zielinski, Courtney Faber, Marissa H. Forbes
Panoptes and the Bionic Eye
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Vision is the primary sense of many animals and much is known about how vision is processed in the mammalian nervous system. One distinct property of the primary visual cortex is a highly organized pattern of sensitivity to location and orientation of objects in the visual field. But how did we learn this? An important tool is the ability to design experiments to map out the structure and response of a system such as vision. In this activity, students learn about the visual system and then conduct a model experiment to map the visual field response of a Panoptes robot. (In Greek mythology, Argus Panoptes was the "all-seeing" watchman giant with 100 eyes.) A simple activity modification enables a true black box experiment, in which students do not directly observe how the visual system is configured, and must match the input to the output in order to reconstruct the unseen system inside the box.

Author:
Michael Trumpis, Shingi Middelmann, Gisselle Cunningham
AMPS GK-12 Program, Polytechnic Institute of New York University,
Waves and Wave Properties
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Students learn about the types of waves and how they change direction, as well as basic wave properties such as wavelength, frequency, amplitude and speed. During the presentation of lecture information on wave characteristics and properties, students take notes using a handout. Then they label wave parts on a worksheet diagram and draw their own waves with specified properties (crest, trough and wavelength). They also make observations about the waves they drew to determine which has the highest and the lowest frequency. With this knowledge, students better understand waves and are a step closer to understanding how humans see color.

Author:
Research Experience for Teachers (RET) Program, Center of Advancement of Engineering Fibers and Films,
Ellen Zielinski, Courtney Faber, Marissa H. Forbes