"Unlocking Knowledge, Empowering Minds. Free lecture notes, exams, and videos from HARVARD-MIT.
Kamis, 26 Mei 2011
Selasa, 26 April 2011
MIT Club of Indonesia
Aeronautics and Astronautics
Professors, students, and researchers come to MIT from all corners of the globe to explore their passion for air and space travel and to advance the technologies and vehicles that make such travel possible.
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We build on our long tradition of scholarship and research to develop and implement reliable, safe, economically feasible, and environmentally responsible air and space travel.
Our industry contributions and collaborations are extensive. We have graduated more astronauts than any other private institution in the world. Nearly one-third of our current research collaborations are with MIT faculty in other departments, and approximately one-half are with non-MIT colleagues in professional practice, government agencies, and other universities. We work closely with scientists and scholars at NASA, Boeing, the U.S. Air Force, Stanford University, Lockheed Martin, and the U.S. Department of Transportation.
Our educational programs are organized around three overlapping areas:
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Jumat, 18 Maret 2011
MIT Club of Indonesia
Biological Engineering
MIT is a leader in the field of biological engineering, engaging in visionary research and collaborations with industry and government.
Read more about Biological Engineering at MIT
Our research in the synthesis of engineering and biology technologies results in major innovations in diverse areas, including developing imaging systems to help understand the origins of cancer and harnessing biomaterials for controlled drug release and tissue regeneration.
Students, professors, and researchers in biological engineering explore issues of physical and chemical sciences such as biochemistry, biophysics, pharmacology, and toxicology from both a molecular life science and an engineering perspective. Throughout the curriculum, our educational programs interweave major concepts of biological engineering with a number of important focus areas, including:
- Biological and physiological transport phenomena
- Biological imaging and functional measurement
- Biomolecular engineering and cell and tissue engineering
- Computational biology and bioinformatics
- Genetic toxicology
- Macromolecular biochemistry and biophysics
- Metabolism of drugs and toxins
- Microbial pathogenesis
- Carcinogenesis
- Biomechanics
- Genomics, proteomics, and glycomics
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Learn more about MIT Engineering
Online Resources
Global Enterprise for Micro-Mechanics and Molecular Medicine (GEM4) Short Courses
Jumat, 18 Februari 2011
MIT Club of Indonesia
Chemical Engineering
Photo illustration by Greg Sands.
Research in cutting-edge industries, including nanotechnology and biotechnology, and in traditional areas of inquiry depend on chemical engineers to decipher molecular information in order to develop new products and processes.
Read more about Chemical Engineering at MIT
Our graduates work in a broad range of fields and create innovative solutions to important industrial and societal problems. They develop clean and sustainable energy systems, make advances in the life sciences, design and produce pharmaceuticals, and discover and create new materials.
The first chemical engineering curriculum at MIT was offered in 1888 and helped to establish chemical engineering as a discipline. Since then, members of the MIT Department of Chemical Engineering have developed the tools and guidelines to define and advance the field. The department has led the nation in awarding graduate degrees, and its nearly 6,000 living alumni have distinguished themselves as leaders in industry, government, and academia. We maintain strong ties with other departments within MIT and institutions and industries worldwide.
Department of Chemical Engineering links
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Selasa, 18 Januari 2011
MIT Club of Indonesia
Civil and Environmental Engineering
Steel structure, seen from below.
Civil and environmental engineers are concerned with some of the most pressing problems of our world, including public infrastructure renewal, access to clean drinking water, environmental remediation and sustainable solutions to energy needs.
Read more about Civil and Environmental Engineering at MIT
The CEE undergraduate program prepares students to face these tremendous challenges by providing a sound education in math, physics, and science and engineering fundamentals, all while emphasizing hands-on design projects and case studies that supply context and motivation. Students are taught how to combine theory, measurement and modeling to develop a good understanding of the problems at hand and point the way to desirable solutions.
The three CEE undergraduate degrees - civil engineering (1C) environmental engineering science (1E) and civil and environmental engineering degree (1A) - share a common core, usually taken in the sophomore year, that includes subjects in ecology, mechanics, mathematics and engineering design. In the junior and senior years, students build on the core by taking more specialized subjects in their chosen degree tracks.
The CEE engineering design lab sequence introduces sophomores to design and fabrication in a supportive team-oriented environment. The Classes of 2009 and 2010 designed and built energy-harvesting machines, for instance, a bicycle that harvests and stores the energy generated by the cyclist and a turbine that collects wind energy. Students in the senior engineering design class also design and build projects, including full-scale portable footbridges that can support a ton of concrete blocks.
Our departmental unit requirements are among the lowest in the School of Engineering, providing flexibility for students who wish to have a minor as well as a major, study abroad and pursue interests outside engineering.
Department of Civil and Environmental Engineering links
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Sabtu, 18 Desember 2010
MIT Club of Indonesia
Electrical Engineering and Computer Science
Graduates of MIT's electrical engineering and computer science department work in diverse industries and conduct research in a broad range of areas.
Read more about Electrical Engineering and Computer Science at MIT
They improve the stability and security of computers and communications networks, and they increase the efficiency of solar panels. They create unique algorithms to analyze financial markets and design robots capable of thinking like human beings. Our community members continually make breakthroughs that enable people to communicate more easily, manage their environments more effectively, and lead more comfortable lives than ever before.
MIT has awarded electrical engineering degrees for nearly 130 years, and our educational programs have been at the cutting edge since their inception. We provide an in-depth education in engineering principles built on mathematics, computation, and the physical and life sciences, and encourage our students to apply what they learn through projects, internships, and research. We succeed in our mission to produce graduates capable of taking leadership positions in the fields of electrical engineering and computer science and beyond.
More than 30 percent of MIT's undergraduates are enrolled in the Department of Electrical Engineering and Computer Science, and our graduate programs are world-renowned. Our faculty comprises more than 40 members of the National Academy of Engineering, more than 10 members of the National Academy of Sciences, several National Medal of Technology winners, as well as many fellows of professional societies, such as the IEEE, ACM, APS, AAAI and others.
Department of Electrical Engineering and Computer Science links
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