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Building Technologies III: Building Structural Systems II, Fall 2002
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This course addresses advanced topics in structures, exterior envelopes and contemporary production technologies. It continues the exploration of structural elements and systems; expanding to include more complex determinant, indeterminate, long-span and high-rise systems. Some of the topics covered include reinforced concrete, steel and engineered wood design, and an introduction to tensile systems. The contemporary exterior envelope is discussed with an emphasis on the classification of systems, their performance attributes and advanced manufacturing technologies.

Subject:
Applied Science
Architecture and Design
Material Type:
Full Course
Textbook
Author:
Ochsendorf, John Allen
Date Added:
01/01/2002
Building Technology I: Materials and Construction, Fall 2004
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This course offers an introduction to the history, theory, and construction of basic structural systems as well as an introduction to energy issues in buildings. It emphasizes basic systematic and elemental behavior, principles of structural behavior, and analysis of individual structural elements and strategies for load carrying. The course also introduces fundamental energy topics including thermodynamics, psychrometrics, and comfort. It is a required class for M. Arch. students.

Subject:
Applied Science
Architecture and Design
Material Type:
Full Course
Textbook
Author:
Fernandez, John
Date Added:
01/01/2004
Building Technology Laboratory, Spring 2004
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Concepts of building technology and experimental methods. Projects vary yearly and have included design and test of strategies for daylighting, passive heating and cooling, and improved indoor air quality. Experimental methods focus on measurement and analysis of thermally driven and wind-driven airflows, lighting intensity and glare, heat flow and thermal storage, and load deformation of materials. Experiments are conducted at model and full scale and are often motivated by ongoing field work in developing countries.

Subject:
Applied Science
Architecture and Design
Material Type:
Full Course
Textbook
Author:
Norford, Les
Date Added:
01/01/2004
Cancer Biology: From Basic Research to the Clinic, Fall 2004
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Seminar covering topics of current interest in biology. Includes reading and analysis of research papers and student presentations. Contact Biology Education Office for topics. This course is one of many Advanced Undergraduate Seminars offered by the Biology Department at MIT. These seminars are tailored for students with an interest in using primary research literature to discuss and learn about current biological research in a highly interactive setting. In 1971, President Nixon declared the "War on Cancer," but after three decades the war is still raging. How much progress have we made toward winning the war and what are we doing to improve the fight? Understanding the molecular and cellular events involved in tumor formation, progression, and metastasis is crucial to the development of innovative therapy for cancer patients. Insights into these processes have been gleaned through basic research using biochemical, molecular, and genetic analyses in yeast, C. elegans, mice, and cell culture models. We will explore the laboratory tools and techniques used to perform cancer research, major discoveries in cancer biology, and the medical implications of these breakthroughs. A focus of the class will be critical analysis of the primary literature to foster understanding of the strengths and limitations of various approaches to cancer research. Special attention will be made to the clinical implications of cancer research performed in model organisms and the prospects for ending the battle with this devastating disease.

Subject:
Biology
Life Science
Material Type:
Full Course
Textbook
Author:
Haigis, Kevin
Kim, Carla
Date Added:
01/01/2004
Career Options for Biomedical Research, Fall 2006
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This course has been designed as a seminar to give students an understanding of how scientists with medical or scientific degrees conduct research in both hospital and academic settings. There will be interactive discussions with research clinicians and scientists about the career opportunities and research challenges in the biomedical field, which an MIT student might prepare for by obtaining an MD, PhD, or combined degrees. The seminar will be held in a case presentation format, with topics chosen from the radiological sciences, including current research in magnetic resonance imaging, positron emission tomography and other nuclear imaging techniques, and advances in radiation therapy. With the lectures as background, we will also examine alternative and related options such as biomedical engineering, medical physics, and medical engineering. We'll use as examples and points of comparisons the curriculum paths available through MIT's Department of Nuclear Science and Engineering. In past years we have given very modest assignments such as readings in advance of or after a seminar, and a short term project.

Subject:
Biology
Life Science
Material Type:
Full Course
Textbook
Author:
Yip, Sidney
Date Added:
01/01/2006
Case Studies in City Form, Fall 2005
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Introduction to urban form and design, focusing on the physical, historical, and social form of cities. Selected cities are analyzed, drawn, and compared, to develop a working understanding of urban and architectural form. The development of map making and urban representation is discussed, and use of the computer is required. Special focus on the historical development of the selected cities, especially mid-nineteenth and mid-twentieth century periods of expansion. Readings on urban design theory in the twentieth century and a weekly discussion/seminar on them. Methods class for S.M.Arch.S. students in Architecture and Urbanism.

Subject:
Applied Science
Architecture and Design
Material Type:
Full Course
Textbook
Author:
Dennis, Michael
Date Added:
01/01/2005
Cell Biology, Spring 2007
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Biology of cells of higher organisms: structure, function, and biosynthesis of cellular membranes and organelles; cell growth and oncogenic transformation; transport, receptors and cell signaling; the cytoskeleton, the extracellular matrix, and cell movements; chromatin structure and RNA synthesis.

Subject:
Biology
Life Science
Material Type:
Full Course
Textbook
Author:
Orr-Weaver, Terry
Date Added:
01/01/2007
Cell and Molecular Neurobiology, Spring 2008
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Subject covers all major areas of cellular and molecular neurobiology including excitable cells and membranes, ion channels and receptors, synaptic transmission, cell type determination, axon guidance and targeting, neuronal cell biology, synapse formation and plasticity. Includes lectures and exams, and involves presentation and discussion of primary literature. Focus on major concepts and recent advances in experimental neuroscience.

Subject:
Biology
Life Science
Material Type:
Full Course
Textbook
Author:
Constantine-Paton, Martha
Sheng, Morgan
Date Added:
01/01/2008
Cellular Neurophysiology, Spring 2002
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Surveys the molecular and cellular mechanisms of neuronal communication. Covers ion channels in excitable membrane, synaptic transmission, and synaptic plasticity. Correlates the properties of ion channels and synaptic transmission with their physiological function such as learning and memory. Discusses the organizational principles for the formation of functional neural networks at synaptic and cellular levels.

Subject:
Anatomy/Physiology
Life Science
Psychology
Social Science
Material Type:
Full Course
Textbook
Author:
Liu, Guosong
Date Added:
01/01/2002
Cellular and Molecular Immunology, Fall 2005
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Covers cells and tissues of the immune system, lymphocyte development, the structure and function of antigen receptors, the cell biology of antigen processing and presentation including molecular structure and assembly of MHC molecules, lymphocyte activation, the biology of cytokines, leukocyte-endothelial interactions, and the pathogenesis of immunologically mediated diseases. Consists of lectures and tutorials in which clinical cases are discussed with faculty tutors. Details of the case covering a number of immunological issues in the context of disease are posted on a student Web site.

Subject:
Biology
Life Science
Material Type:
Full Course
Textbook
Author:
Pillai, Shiv
Date Added:
01/01/2005
Chemicals in the Environment: Toxicology and Public Health (BE.104J), Spring 2005
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This course addresses the challenges of defining a relationship between exposure to environmental chemicals and human disease. Course topics include epidemiological approaches to understanding disease causation; biostatistical methods; evaluation of human exposure to chemicals, and their internal distribution, metabolism, reactions with cellular components, and biological effects; and qualitative and quantitative health risk assessment methods used in the U.S. as bases for regulatory decision-making. Throughout the term, students consider case studies of local and national interest.

Subject:
Applied Science
Environmental Science
Genetics
Life Science
Material Type:
Full Course
Textbook
Author:
Sherley, James
Date Added:
01/01/2005
Chinese II (Regular), Spring 2015
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This subject is the second semester of four that forms an introduction to modern standard Chinese, commonly called Mandarin. The emphasis is on further developing students' abilities to participate in simple, practical conversations on everyday topics as well as enhancing their abilities on reading and writing. The relationship between Chinese language and culture and the sociolinguistically appropriate use of language will be stressed throughout. A typical class includes performance of memorized basic conversations, drills, questions and discussion, and various types of communicative exercises. At the end of this course, students are expected to develop an understanding of the language learning process so that they will be able to continue studying effectively on their own.

Subject:
Arts and Humanities
Languages
Material Type:
Full Course
Homework/Assignment
Syllabus
Textbook
Author:
Wheatley, Julian K.
Date Added:
01/01/2015
Chronic Infection and Inflammation: What are the Consequences on Your Health?, Fall 2007
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In this course we will explore the new emerging field of pathogen-induced chronic diseases. Work in this field has redefined the causes of some major disorders, such as ulcers. By reading the primary research literature we will learn about the molecular mechanisms through which pathogens cause disease. The diseases that we cover will be introduced with a short patient case study. We will discuss the bacterium Helicobacter pylori and gastric disease, HPV and cervical cancer, hepatitis C virus and liver disease, Epstein-Barr virus and lymphoma, Cytomegalovirus and atherosclerosis, as well as diabetes and multiple sclerosis. We will study technical advances in the fight against microbes and explore future directions for new treatment strategies of chronic infections and inflammation. This course is one of many Advanced Undergraduate Seminars offered by the Biology Department at MIT. These seminars are tailored for students with an interest in using primary research literature to discuss and learn about current biological research in a highly interactive setting. Many instructors of the Advanced Undergraduate Seminars are postdoctoral scientists with a strong interest in teaching.

Subject:
Biology
Life Science
Material Type:
Full Course
Textbook
Author:
Frickel, Eva
Gredmark, Sara
Date Added:
01/01/2007
Cities in Conflict: Theory and Practice, Fall 2003
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This course's aims are two-fold: 1) to offer students the theoretical and practical tools to understand how and why cities become torn by ethnic, religious, racial, nationalist, and/or other forms of identity that end up leading to conflict, violence, inequality, and social injustice; and 2) to use this knowledge and insight in the search for solutions. As preparation, students will be required to become familiar with social and political theories of the city and the nation and their relationship to each other. They also will focus on the ways that racial, ethnic, religious, nationalist or other identities grow and manifest themselves in cities or other territorial levels of determination (including the regional or transnational). In the search for remedies, students will be encouraged to consider a variety of policymaking or design points of entry, ranging from the political- institutional (e.g. forms of democratic participation and citizenship) to spatial, infrastructural, and technological interventions.

Subject:
Applied Science
Architecture and Design
Material Type:
Full Course
Textbook
Author:
Davis, Diane E.
Date Added:
01/01/2003
The City, Spring 2003
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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
Civil Society and the Environment, Spring 2005
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This graduate seminar examines the roles that civil society actors play in international, national, and local environmental governance. We will consider theories pertaining to civil society development, social movement mobilization, and relations between state and non-state actors. During the course of the semester, particular attention will be given to the legitimacy and accountability of nongovernmental organizations (NGOs). Case studies of civil society response to specific environmental issues will be used to illustrate theoretical issues and assess the impacts that these actors have on environmental policy and planning.

Subject:
Applied Science
Environmental Science
Material Type:
Full Course
Textbook
Author:
Carmin, JoAnn
Date Added:
01/01/2005
Classical Mechanics: A Computational Approach, Fall 2008
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" We will study the fundamental principles of classical mechanics, with a modern emphasis on the qualitative structure of phase space. We will use computational ideas to formulate the principles of mechanics precisely. Expression in a computational framework encourages clear thinking and active exploration. We will consider the following topics: the Lagrangian formulation; action, variational principles, and equations of motion; Hamilton's principle; conserved quantities; rigid bodies and tops; Hamiltonian formulation and canonical equations; surfaces of section; chaos; canonical transformations and generating functions; Liouville's theorem and PoincarĚŠ integral invariants; PoincarĚŠ-Birkhoff and KAM theorems; invariant curves and cantori; nonlinear resonances; resonance overlap and transition to chaos; properties of chaotic motion. Ideas will be illustrated and supported with physical examples. We will make extensive use of computing to capture methods, for simulation, and for symbolic analysis."

Subject:
Physical Science
Physics
Material Type:
Full Course
Textbook
Author:
Sussman, Gerald
Wisdom, Jack
Date Added:
01/01/2008
Classification, Natural Kinds, and Conceptual Change: Race as a Case Study, Spring 2004
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This course will consider the claim that there is no such thing as race, with a particular emphasis on the question whether races should be thought of as natural kinds: is our concept of race a natural kind concept? Is the term 'race' a natural kind term? If so, is Appiah right to conclude that there are no races? How should one go about "analyzing" the concept of race?

Subject:
Arts and Humanities
Biology
Life Science
Philosophy
Material Type:
Full Course
Textbook
Author:
Haslanger, Sally
Date Added:
01/01/2004
Cognitive and Behavioral Genetics, Spring 2001
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How genetics can add to our understanding of cognition, language, emotion, personality, and behavior. Use of gene mapping to estimate risk factors for psychological disorders and variation in behavioral and personality traits. Mendelian genetics, genetic mapping techniques, and statistical analysis of large populations and their application to particular studies in behavioral genetics. Topics also include environmental influence on genetic programs, evolutionary genetics, and the larger scientific, social, ethical, and philosophical implications.

Subject:
Biology
Genetics
Life Science
Psychology
Social Science
Material Type:
Full Course
Textbook
Author:
Nedivi, Elly
Pinker, Steve
Date Added:
01/01/2001
Combinatorial Analysis, Fall 2014
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This course analyzes combinatorial problems and methods for their solution. Topics include: enumeration, generating functions, recurrence relations, construction of bijections, introduction to graph theory, network algorithms, and extremal combinatorics.

Subject:
Mathematics
Material Type:
Full Course
Textbook
Author:
Richard Stanley
Date Added:
01/01/2014