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  • Architecture and Design
Architecture Studio: Building in Landscapes, Fall 2005
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CC BY-NC-SA
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This subject introduces skills needed to build within a landscape establishing continuities between the built and natural world. Students learn to build appropriately through analysis of landscape and climate for a chosen site, and to conceptualize design decisions through drawings and models.

Subject:
Applied Science
Architecture and Design
Arts and Humanities
World Cultures
Material Type:
Full Course
Textbook
Author:
Wampler, Jan
Date Added:
01/01/2005
Architecture and Communication in Organizations, Fall 2003
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CC BY-NC-SA
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While no businesses succeed based on their architecture or space design, many fail as a result of inattention to the power of spatial relationships. This course demonstrates through live case studies with managers and architects the value of strategic space planning and decision making in relation to business needs. The course presents conceptual frameworks for thinking about architecture, communication and organizations. This course is offered during the Sloan Innovation Period (SIP), which is a one-week period at the MIT Sloan School of Management that occurs midway through each semester.

Subject:
Applied Science
Architecture and Design
Business and Communication
Management
Material Type:
Full Course
Textbook
Author:
Burton, M. Diane
Date Added:
01/01/2003
The Architecture of Cairo, Spring 2002
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CC BY-NC-SA
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Cairo still shines as a major cultural, political, and economic center in its three spheres of influence: the Arab world, Africa, and the Islamic world. This course narrates the history of the city from the initial settlement on the site (640s) to the present, reviews its urban and architectural developments, and connects them to their Islamic and Mediterranean architectural and cultural contexts.

Subject:
Applied Science
Architecture and Design
Material Type:
Full Course
Textbook
Author:
Rabbat, Nasser O.
Date Added:
01/01/2002
Are We Like Robots?
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This lesson explores the similarities between how a human being moves/walks and how a robot moves. This allows students to see the human body as a system, i.e., from the perspective of an engineer. It shows how movement results from (i) decision making, i.e., deciding to walk and move, and (ii) implementing the decision by conveying the decision to the muscle (human) or motor (robot).

Author:
GK-12 Program, Computational Neurobiology Center, College of Engineering,
Ajay Nair
Ashwin Mohan
Satish Nair
Charlie Franklin
Asteroid Impact
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Through this earth science curricular unit, student teams are presented with the scenario that an asteroid will impact the Earth. In response, their challenge is to design the location and size of underground caverns to shelter the people from an uninhabitable Earth for one year. Driven by this adventure scenario, student teams 1) explore general and geological maps of their fictional state called Alabraska, 2) determine the area of their classroom to help determine the necessary cavern size, 3) learn about map scales, 4) test rocks, 5) identify important and not-so-important rock properties for underground caverns, and 6) choose a final location and size.

Author:
Adventure Engineering,
BSAD Foundations in the Visual Arts, Fall 2003
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CC BY-NC-SA
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Offers a foundation in the visual art practice and its critical analysis for beginning architecture students. Emphasis on long-range artistic development and its analogies to architectural thinking and practice. Learn to communicate ideas and experiences through various two-dimensional, three-dimensional, and time-based media, including sculpture, installation, performance, and video. Lectures, visiting artist presentations, field trips, and readings supplement studio practice. Required of and restricted to Course 4 majors. Lab fee.

Subject:
Applied Science
Architecture and Design
Arts and Humanities
Performing Arts
Visual Arts
Material Type:
Full Course
Textbook
Author:
Jacob, Wendy
Date Added:
01/01/2003
Balsa Towers
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Students groups use balsa wood and glue to build their own towers using some of the techniques they learned from the associated lesson. While general guidelines are provided, give students freedom with their designs and encourage them to implement what they have learned about structural engineering. The winning team design is the tower with the highest strength-to-weight ratio.

Author:
Kelly Devereaux, Benjamin Burnham
Techtronics Program,
Basic Structural Design, Spring 2009
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CC BY-NC-SA
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" This course provides students with a basic knowledge of structural analysis and design for buildings, bridges and other structures. The course emphasizes the historical development of structural form and the evolution of structural design knowledge, from Gothic cathedrals to long span suspension bridges. Students will investigate the behavior of structural systems and elements through design exercises, case studies, and load testing of models. Students will design structures using timber, masonry, steel, and concrete and will gain an appreciation of the importance of structural design today, with an emphasis on environmental impact of large scale construction."

Subject:
Applied Science
Architecture and Design
Material Type:
Full Course
Textbook
Author:
Ochsendorf, John
Date Added:
01/01/2009
Beating the Motion Sensor
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Lighting is responsible for nearly one-third of the electricity use in buildings. One of the best ways to conserve energy is to make sure the lights are turned off when no one is in a room. This process can be automated using motion sensors. In this activity, students explore material properties as they relate to motion detection, and use that knowledge to make design judgments about what types of motion detectors to use in specific applications.

Author:
Janet Yowell
Darcie Chinnis
Integrated Teaching and Learning Program,
Big Plans and Mega-Urban Landscapes, Spring 2014
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This course explores the physical, ecological, technological, political, economic, and cultural implications of big plans and mega-urban landscapes in a global context. It uses local and international case studies to understand the process of making major changes to urban landscape and city fabric, and to regional landscape systems. It includes lectures by leading practitioners. The assignments consider planning and design strategies across multiple scales and time frames.

Author:
Kian Goh
Boom Construction
Rating
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Student teams design their own booms (bridges) and engage in a friendly competition with other teams to test their designs. Each team strives to design a boom that is light, can hold a certain amount of weight, and is affordable to build. Teams are also assessed on how close their design estimations are to the final weight and cost of their boom "construction." This activity teaches students how to simplify the math behind the risk and estimation process that takes place at every engineering firm prior to the bidding phase when an engineering firm calculates how much money it will take to build the project and then "bids" against other competitors.

Author:
AMPS GK-12 Program,
Stanislav Roslyakov
Janet Yowell
The Brain and Cognitive Sciences II, Spring 2006
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CC BY-NC-SA
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This class is the second half of an intensive survey of cognitive science for first-year graduate students. Topics include visual perception, language, memory, cognitive architecture, learning, reasoning, decision-making, and cognitive development. Topics covered are from behavioral, computational, and neural perspectives.

Subject:
Applied Science
Architecture and Design
Material Type:
Full Course
Textbook
Author:
Tenenbaum, Joshua
Date Added:
01/01/2006
Breaking Beams
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Students learn about stress and strain by designing and building beams using polymer clay. They compete to find the best beam strength to beam weight ratio, and learn about the trade-offs engineers make when designing a structure.

Author:
Ben Heavner
Malinda Schaefer Zarske
Integrated Teaching and Learning Program,
Denise Carlson
Chris Yakacki
Breaking the Mold
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In this math activity, students conduct a strength test using modeling clay, creating their own stress vs. strain graphs, which they compare to typical steel and concrete graphs. They learn the difference between brittle and ductile materials and how understanding the strength of materials, especially steel and concrete, is important for engineers who design bridges and structures.

Author:
Malinda Schaefer Zarske
Natalie Mach
Denise W. Carlson
Chris Valenti
Denali Lander
Jonathan S. Goode
Joe Friedrichsen
Bridge Types: Tensile & Compressive Forces
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Students explore how tension and compression forces act on three different bridge types. Using sponges, cardboard and string, they create models of beam, arch and suspension bridges and apply forces to understand how they disperse or transfer these loads.

Author:
Malinda Schaefer Zarske
Natalie Mach
Integrated Teaching and Learning Program,
Denise W. Carlson
Chris Valenti
Denali Lander
Jonathan S. Goode
Joe Friedrichsen
Bridges
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Through a five-lesson series that includes numerous hands-on activities, students are introduced to the importance and pervasiveness of bridges for connecting people to resources, places and other people, with references to many historical and current-day examples. In learning about bridge types arch, beam, truss and suspension students explore the effect of tensile and compressive forces. Students investigate the calculations that go into designing bridges; they learn about loads and cross-sectional areas by designing and testing the strength of model piers. Geology and soils are explored as they discover the importance of foundations, bearing pressure and settlement considerations in the creation of dependable bridges and structures. Students learn about brittle and ductile material properties. Students also learn about the many cost factors that comprise the economic considerations of bridge building. Bridges are unique challenges that take advantage of the creative nature of engineering.

Author:
Integrated Teaching and Learning Program,
See individual lessons and activities.
Bridging the Gaps
Read the Fine Print
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Students are presented with a brief history of bridges as they learn about the three main bridge types: beam, arch and suspension. They are introduced to two natural forces tension and compression common to all bridges and structures. Throughout history, and today, bridges are important for connecting people to resources, places and other people. Students become more aware of the variety and value of bridges around us in our everyday lives.

Subject:
Applied Science
Architecture and Design
Engineering
Material Type:
Activity/Lab
Lesson Plan
Author:
Christopher Valenti
Denali Lander
Denise W. Carlson
Integrated Teaching and Learning Program, College of Engineering,
Joe Friedrichsen
Jonathan S. Goode
Malinda Schaefer Zarske
Natalie Mach
Date Added:
09/18/2014
Build a Birdhouse
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Students construct bird nests and birdhouses. They research birds of their choosing and then design houses that meet the birds' specific needs. It works well to conduct this activity in conjunction with a grades 9-12 woodshop class by partnering the older students with the younger students (but it is not required to do this in order to conduct the activity).

Author:
K-12 Outreach Office,
Building A Scale Model
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Students create models of objects of their choice, teaching them skills and giving them practice in techniques used by professionals. They use sketches as they build their objects. This activity facilitates a discussion on models and their usefulness.

Author:
Adebayo Adeyinka
Lee Fisher
Mark Liffiton
Center for Engineering Educational Outreach,
Building Our Bridge to Fun!
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Students identify different bridge designs and construction materials used in modern day engineering. They work in construction teams to create paper bridges and spaghetti bridges based on existing bridge designs. Students progressively realize the importance of the structural elements in each bridge. They also measure vertical displacements under the center of the spaghetti bridge span when a load is applied. Vertical deflection is measured using a LEGO MINDSTORMS(TM) NXT intelligent brick and ultrasonic sensor. As they work, students experience tension and compression forces acting on structural elements of the two bridge prototypes. In conclusion, students discuss the material properties of paper and spaghetti and compare bridge designs with performance outcomes.

Author:
AMPS GK-12 Program,
Eduardo Suescun