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  • Architecture and Design
Communication System Design, Spring 2006
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CC BY-NC-SA
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" This course presents a top-down approach to communications system design. The course will cover communication theory, algorithms and implementation architectures for essential blocks in modern physical-layer communication systems (coders and decoders, filters, multi-tone modulation, synchronization sub-systems). The course is hands-on, with a project component serving as a vehicle for study of different communication techniques, architectures and implementations. This year, the project is focused on WLAN transceivers. At the end of the course, students will have gone through the complete WLAN System-On-a-Chip design process, from communication theory, through algorithm and architecture all the way to the synthesized standard-cell RTL chip representation. "

Subject:
Applied Science
Architecture and Design
Material Type:
Full Course
Textbook
Author:
Stojanovic, Vladimir
Date Added:
01/01/2006
Community Growth and Land Use Planning, Fall 2010
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0.0 stars

This subject explores the techniques, processes, and personal and professional skills required to effectively manage growth and land use change. While primarily focused on the planning practice in the United States, the principles and techniques reviewed and presented may have international application. This course is not for bystanders; it is designed for those who wish to become actively involved or exposed to the planning discipline and profession as it is practiced today, and as it may need to be practiced in the future.

Author:
Sengupta, Annis
Szold, Terry
Comparative Land Use and Transportation Planning, Spring 2006
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CC BY-NC-SA
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This course focuses on the land use-transportation ‰ŰĎinteraction space‰Ű in metropolitan settings. The course aims to develop an understanding of relevant theories and analytical techniques, through the exploration of various cases drawn from different parts of the world. The course begins with an overview of the role of transportation in patterns of urban development and metropolitan growth. It introduces the concept of accessibility and related issues of individual and firm travel demand. Later in the semester, students will explore the influence of the metropolitan built environment on travel behavior and the role of transportation on metropolitan land development. The course will conclude with an examination of the implications of the land use-transportation interaction space for metropolitan futures, and our abilities to forecast them.

Subject:
Applied Science
Architecture and Design
Material Type:
Full Course
Textbook
Author:
Zegras, P. Christopher
Date Added:
01/01/2006
Complex Digital Systems, Spring 2005
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CC BY-NC-SA
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This course is offered to graduates and is a project-oriented course to teach new methodologies for designing multi-million-gate CMOS VLSI chips using high-level synthesis tools in conjunction with standard commercial EDA tools. The emphasis is on modular and robust designs, reusable modules, correctness by construction, architectural exploration, and meeting the area, timing, and power constraints within standard cell and FPGA frameworks.

Subject:
Applied Science
Architecture and Design
Computer Science
Material Type:
Full Course
Textbook
Author:
Arvind, V.
Date Added:
01/01/2005
Computer Networks, Fall 2002
Conditional Remix & Share Permitted
CC BY-NC-SA
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Topics on the engineering and analysis of network protocols and architecture, including: architectural principles for designing heterogeneous networks; congestion control; unicast and multicast routing; wireless and mobile networking; network quality of service; router design; network security; streaming and multicast applications; naming; content distribution; and peer-to-peer networking. Readings from original research papers, industry white papers, and Internet RFCs. Semester-long project and paper.

Subject:
Applied Science
Architecture and Design
Computer Science
Material Type:
Full Course
Textbook
Author:
Balakrishnan, Hari
Date Added:
01/01/2002
Construct and Test Roofs for Different Climates
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We design and create objects to make our lives easier and more comfortable. The houses in which we live are excellent examples of this. Depending on your local climate, the features of your house have been designed to satisfy your particular environmental needs: protection from hot, cold, windy and/or rainy weather. In this activity, students design and build model houses, then test them against various climate elements, and then re-design and improve them. Using books, websites and photos, students learn about the different types of roofs found on various houses in different environments throughout the world.

Author:
Center for Engineering Educational Outreach,
Martha Cyr; 2011 additions and attachments by Abigail T. Waltrous and Denise W. Carlson, University of Colorado Boulder
Construction Technologies: Create the Strongest Bridge
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Students work in pairs to create three simple types of model bridges (beam, arch, suspension). They observe quantitatively how the bridges work under load and why engineers use different types of bridges for different places. They also get an idea of the parts needed to build bridges, and their functions. The strength of model bridges is mainly a factor of the quality of materials used, and therefore they do not provide a clear visual representation of tension and compression forces involved. Yet, students are able to see these forces at work in three prototype designs and draw conclusions about their dependence on span, width and supporting structures of the bridge designs.

Author:
K-12 Outreach Office,
Joy Trahan-Liptak
Contemporary Architecture and Critical Debate, Spring 2002
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CC BY-NC-SA
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Critical review of works, theories, and polemics in architecture in the aftermath of WWII. Aim is a historical understanding of the period and the development of a meaningful framework to assess contemporary issues in architecture. Special attention paid to historiographic questions of how architects construe the terms of their "present." Required of M.Arch. students.

Subject:
Applied Science
Architecture and Design
Arts and Humanities
Philosophy
Material Type:
Full Course
Textbook
Author:
Dutta, Arindam
Date Added:
01/01/2002
Cooking with the Sun - Creating a Solar Oven
Rating
0.0 stars

Student groups are given a set of materials: cardboard, insulating materials, aluminum foil and Plexiglas, and challenged to build solar ovens. The ovens must collect and store as much of the sun's energy as possible. Students experiment with heat transfer through conduction by how well the oven is insulated and radiation by how well it absorbs solar radiation. They test the effectiveness of their designs qualitatively by baking something and quantitatively by taking periodic temperature measurements and plotting temperature vs. time graphs. To conclude, students think like engineers and analyze the solar oven's strengths and weaknesses compared to conventional ovens.

Author:
Roni Prucz
Techtronics Program,
Lauren Powell
Rahmin Sarabi
Cost Comparisons
Rating
0.0 stars

Students learn about the many types of expenses associated with building a bridge. Working like engineers, they estimate the cost for materials for a bridge member of varying sizes. After making calculations, they graph their results to compare how costs change depending on the use of different materials (steel vs. concrete). They conclude by creating a proposal for a city bridge design based on their findings.

Author:
Malinda Schaefer Zarske
Natalie Mach
Integrated Teaching and Learning Program,
Denise W. Carlson
Denali Lander
Jonathan S. Goode
Joe Friedrichsen
Creative Engineering Design
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0.0 stars

Students are introduced to the world of creative engineering product design. Through six activities, teams work through the steps of the engineering design process (or loop) by completing an actual design challenge presented in six steps. The project challenge is left up to the teacher or class to determine; it might be one decided by the teacher, brainstormed with the class, or the example provided (to design a prosthetic arm that can perform a mechanical function). As students begin by defining the problem, they learn to recognize the need, identify a target population, relate to the project, and identify its requirements and constraints. Then they conduct research, brainstorm alternative solutions, evaluate possible solutions, create and test prototypes, and consider issues for manufacturing. See the Unit Schedule section for a list of example design project topics.

Author:
See individual activities.
Integrated Teaching and Learning Program,
Creepy Silly Putty
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Students learn about viscoelastic material behavior, such as strain rate dependence and creep, by using silly putty, an easy-to-make polymer material. They learn how to make silly putty, observe its behavior with different strain rates, and then measure the creep time of different formulations of silly putty. By seeing the viscoelastic behavior of silly putty, students start to gain an understanding of how biological materials function. Students gain experience in data collection, graph interpretation, and comparison of material properties to elucidate material behavior. It is recommended that students perform Part 1of the activity first (making and playing with silly putty), then receive the content and concept information in the associated lesson, and then complete Part 2 of the activity (experimenting and making measurements with silly putty).

Author:
Marissa H. Forbes
Integrated Teaching and Learning Program,
Brandi N. Briggs
Denise W. Carlson
Data Communication Networks, Fall 2002
Conditional Remix & Share Permitted
CC BY-NC-SA
Rating
0.0 stars

Modeling of the control processes in conventional and high-speed data communication networks. Develops and utilizes elementary concepts from queueing theory, algorithms, linear and nonlinear programming to study the problems of line and network protocols, distributed algorithms, quasi-static and dynamic routing, congestion control, deadlock prevention. Treats local and wide-area networks, and high-speed electronic and optical networks. Focuses on the fundamentals of data communication networks. One goal is to give some insight into the rationale of why networks are structured the way they are today and to understand the issues facing the designers of next-generation data networks. Much of the course focuses on network algorithms and their performance. Students are expected to have a strong mathematical background and an understanding of probability theory. Topics discussed include: layered network architecture, Link Layer protocols, high-speed packet switching, queueing theory, Local Area Networks, and Wide Area Networking issues, including routing and flow control.

Subject:
Applied Science
Architecture and Design
Computer Science
Material Type:
Full Course
Textbook
Author:
Modiano, Eytan H.
Date Added:
01/01/2002
Daylighting Design
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Students explore the many different ways that engineers provide natural lighting to interior spaces. They analyze various methods of daylighting by constructing model houses from foam core board and simulating the sun with a desk lamp. Teams design a daylighting system for their model houses based on their observations and calculations of the optimal use of available sunlight to their structure.

Author:
Malinda Schaefer Zarske
Integrated Teaching and Learning Program,
Denise W. Carlson
Lauren Cooper
Landon B. Gennetten
Daylighting, Spring 2012
Conditional Remix & Share Permitted
CC BY-NC-SA
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This course explores natural and electric lighting that integrates occupant comfort, energy efficiency and daylight availability in an architectural context. Students are asked to evaluate daylighting in real space and simulations, and also high dynamic range photography and physical model building.

Subject:
Applied Science
Architecture and Design
Material Type:
Full Course
Textbook
Author:
Christoph Reinhart
Date Added:
01/01/2012
Deformation: Nanocomposite Compression
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Students learn about nanocomposites, compression and strain as they design and program robots that compress materials. Student groups conduct experiments to determine how many LEGO MINDSTORMS(TM) NXT motor rotations it takes to compress soft nanocomposites, including mini marshmallows, Play-Doh®, bread and foam. They measure the length and width of their nanocomposite objects before and after compression to determine the change in length and width as a function of motor rotation.

Author:
AMPS GK-12 Program,
Jennifer S. Haghpanah
Design
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0.0 stars

This unit looks at the process of design - from assessing the complexity of design as an activity, to exposing the difficulty in making general conclusions about how designers work. You will be able to identify innovation in a wide variety of designed objects and evaluate the impact of this innovation.

Design Fabrication, Spring 2003
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CC BY-NC-SA
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Design Fabrication is an introductory course in the field of advanced computing, prototyping and building fabrication. The class is focused on the relationship between design, various forms of computer modeling both explicit and generative and the physical representation of information using rapid prototyping devices.

Subject:
Applied Science
Architecture and Design
Material Type:
Full Course
Textbook
Author:
Lawrence
Sass
Date Added:
01/01/2003
Design Step 1: Identify the Need
Rating
0.0 stars

Students practice the initial steps involved in an engineering design challenge. They begin by reviewing the steps of the engineering design loop and discussing the client need for the project. Next, they identify a relevant context, define the problem within their design teams, and examine the project's requirements and constraints. (Note: Conduct this activity in the context of a design project that students are working on, which could be a challenge determined by the teacher, brainstormed with the class, or the example project challenge provided [to design a prosthetic arm that can perform a mechanical function].)

Author:
Malinda Schaefer Zarske
Integrated Teaching and Learning Program,
Lauren Cooper
Denise W. Carlson
Design Step 2: Research the Problem
Rating
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Through Internet research, patent research, standards and codes research, user interviews (if possible) and other techniques (idea web, reverse engineering), students further develop the context for their design challenge. In subsequent activities, the design teams use this body of knowledge about the problem to generate product design ideas. (Note: Conduct this activity in the context of a design project that students are working on, which could be a challenge determined by the teacher, brainstormed with the class, or the example project challenge provided [to design a prosthetic arm that can perform a mechanical function]. This activity is Step 2 in a series of six that guide students through the engineering design loop.)

Author:
Malinda Schaefer Zarske
Integrated Teaching and Learning Program,
Lauren Cooper
Denise W. Carlson