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  • Architecture and Design
Urban Design Seminar, Spring 2005
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This course is a requirement for completion of the Urban Design Certificate Program. It investigates the complex nature of 'successful' urban design, and attempts to identify and evaluate examples of urban design that are at the leading edge of practice, anticipating the future. The seminar will deal with two parallel questions: What are the key trends that will shape the future form and function of cities? and how will these changes affect the role of the urban designer? The first part of the seminar focuses on the present, and the second part of the semester will consider the future. After the course surveys the landscape of contemporary urban design practice, the challenge it will pose to students will be to identify the trajectory of cities and city design from both physical and social perspectives.

Author:
Frenchman, Dennis M.
Urban Design Skills: Observing, Interpreting, and Representing the City, Fall 2004
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An introduction to the methods of recording, evaluating, and communicating about the urban environment. Through visual observation, field analysis, measurements, interviews, and other means, students learn to draw on their senses and develop their ability to deduce, conclude, question, and test conclusions about how the environment is used and valued. Through the use of representational tools such as drawing, photographing, computer modeling and desktop publishing, students communicate what is observed as well as their impressions and ideas. Intended as a foundation for future studio work in urban design.

Author:
Ben-Joseph, Eran
Urban Design Studio: Providence, Spring 2005
Conditional Remix & Share Permitted
CC BY-NC-SA
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The design of urban environments. Strategies for change in large areas of cities, to be developed over time, involving different actors. Fitting forms into natural, man-made, historical, and cultural contexts; enabling desirable activity patterns; conceptualizing built form; providing infrastructure and service systems; guiding the sensory character of development. Involves architecture and planning students in joint work; requires individual designs or design and planning guidelines.

Subject:
Applied Science
Architecture and Design
Arts and Humanities
Business and Communication
Finance
Material Type:
Full Course
Textbook
Author:
Dennis, Michael
Morrow, Greg
Date Added:
01/01/2005
Urban Housing: Paris, London, New York, Fall 2004
Conditional Remix & Share Permitted
CC BY-NC-SA
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This class presents an analysis of the development of housing models and their urban implications in Paris, London, and New York City from the seventeenth century to the present. The focus will be on three models: the French hotel, the London row house, and the New York City tenement and apartment building. Other topics covered will include twentieth-century housing reform movements and work by the London County Council, CIAM, and American public housing agencies.

Subject:
Applied Science
Architecture and Design
Material Type:
Full Course
Textbook
Author:
Dennis, Michael
Date Added:
01/01/2004
Use of Joint Fact Finding in Science Intensive Policy Disputes, Part II, Spring 2004
Conditional Remix & Share Permitted
CC BY-NC-SA
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This course makes up the second half of a year-long seminar on Joint Fact Finding in Science-Intensive Disputes. In 11.941, the first half of the seminar, students analyzed and discussed cases that involved or that should have involved Joint Fact Finding of various kinds. In this portion, students concentrate on gathering information to assist in resolving the Cape Wind project, the dispute concerning the placement of wind farms in waters adjacent to Nantucket. Students will lay the groundwork for a collaborative project that includes Federal and State agencies, academic institutions and non-profits.

Subject:
Applied Science
Architecture and Design
Material Type:
Full Course
Textbook
Author:
Susskind, Lawrence
Date Added:
01/01/2004
Use of Underground Space
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Students obtain basic knowledge of the multidisciplinary aspects of the use of undergrounds space. Based on knowledge about the characteristics of several construction technologies they are able to asses their applicability in different situations. This may be different geological or physical conditions. They are able to analyze and structure the complex decision making process that is related to the use of underground space and define an integral approach

Author:
J.W. Bosch
What Is Engineering? What Is Design?
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Students are presented with an overview of engineering and design. Various engineering disciplines are discussed in some detail using slides and an online video and website. The concept of design is introduced by presenting the basic steps of the engineering design process. Students learn that design is not necessarily restricted to engineering, but a general concept applicable to all walks of life. To strengthen their understanding, students are challenged to design a picnic for their friends by considering its various components as they go through the design process steps. This prepares them for subsequent design challenges such as those in the associated activities of this unit. A PowerPoint® presentation, pre/post quizzes and worksheet are provided.

Author:
Sachin Nair, Pranit Samarth, Satish S. Nair
GK-12 Program, Computational Neurobiology Center,
Wheeling It In!
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In this open-ended design activity, students use everyday materials milk cartons, water bottles, pencils, straws, candy to build small-scale transportation devices. They incorporate the use two simple machines a wheel and axle, and a lever into their designs. Student pairs choose their materials and engineer solutions suitable to convey pyramid-building materials (small blocks of clay). They race their carts/trucks, measuring distance, time and weight; and then calculate speed.

Author:
Malinda Schaefer Zarske
Integrated Teaching and Learning Program,
Denise W. Carlson
Luz Quiñónez
Jacquelyn Sullivan
Glen Sirakavit, with conceptual input from the students in the spring 2005 K-12 Engineering Outreach Corps course.
Lawrence E. Carlson
Which Roof Is Tops?
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When you walk or drive around your neighborhood, what do the roofs look like? What if you lived in an area with a different climate, how might that affect the style of roofs that you see? Through this introductory engineering activity, students explore the advantages of different roof shapes for different climates or situations. They observe and discuss what happens in a teacher demo when a "snow load" (sifted cups of flour) is placed on three model roof shapes.

Author:
Center for Engineering Educational Outreach,
Wimpy Radar Antenna
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Students reinforce an antenna tower made from foam insulation so that it can withstand a 480 N-cm bending moment (torque) and a 280 N-cm twisting moment (torque) with minimal deflection. During one class period, students discuss the problem, run the initial bending and torsion tests and graph the results. During the following class periods, students design, construct and test sturdier towers, and graph the results.

Author:
Brad George, Hale Middle School and Nashoba Regional High School
Center for Engineering Educational Outreach,
Douglas Prime, Tufts University
Working Together to Live Together
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Students experience civil and environmental engineering by planning a housing development in an existing biome, while also protecting the native species that live there. They conduct research, draw plans, make brochures and give presentations, with each team having a member serving as a project manager, civil engineer, environmental engineer and graphic designer. The best designs creatively balance the needs and resources necessary to support both the native species and human infrastructure.

Author:
Myla Van Duyn, (Davis High School, Houston ISD)
Marissa H. Forbes
National Science Foundation GK-12 and Research Experience for Teachers (RET) Programs,
Zero-Energy Housing
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Students investigate passive solar building design with a focus solely on heating. They learn how insulation, window placement, thermal mass, surface colors, and site orientation play important roles in passive solar heating. They use this information to design and build their own model houses, and test them for thermal gains and losses during a simulated day and night. Teams compare designs and make suggestions for improvements.

Author:
Jonathan MacNeil
Malinda Schaefer Zarske
Integrated Teaching and Learning Program,
Denise W. Carlson