Courses tagged with "Information control" (1404)
This course covers a detailed analysis of the biochemical mechanisms that control the maintenance, expression, and evolution of prokaryotic and eukaryotic genomes. The topics covered in lectures and readings of relevant literature include gene regulation, DNA replication, genetic recombination, and mRNA translation. In particular, the logic of experimental design and data analysis is emphasized.
This course covers a detailed analysis of the biochemical mechanisms that control the maintenance, expression, and evolution of prokaryotic and eukaryotic genomes. The topics covered in lectures and readings of relevant literature include gene regulation, DNA replication, genetic recombination, and mRNA translation. In particular, the logic of experimental design and data analysis is emphasized.
This course, intended for both graduate and upper level undergraduate students, will focus on understanding of the basic molecular structural principles of biological materials. It will address the molecular structures of various materials of biological origin, such as several types of collagen, silk, spider silk, wool, hair, bones, shells, protein adhesives, GFP, and self-assembling peptides. It will also address molecular design of new biological materials applying the molecular structural principles. The long-term goal of this course is to teach molecular design of new biological materials for a broad range of applications. A brief history of biological materials and its future perspective as well as its impact to the society will also be discussed. Several experts will be invited to give guest lectures.
This course develops and applies scaling laws and the methods of continuum and statistical mechanics to biomechanical phenomena over a range of length scales, from molecular to cellular to tissue or organ level.
This course surveys seven Baroque and Classical genres: opera, oratorio, cantata, sonata, concerto, quartet, symphony, and includes work by composers Bach, Handel, Haydn, Monteverdi, Mozart, Purcell, Schütz and Vivaldi. Course work is based on live performances as well as listening and reading assignments.
This course will focus on issues that arise in contemporary public debate concerning matters of social justice. Topics will likely include: euthanasia, gay marriage, racism and racial profiling, free speech, hunger and global inequality. Students will be exposed to multiple points of view on the topics and will be given guidance in analyzing the moral frameworks informing opposing positions. The goal will be to provide the basis for respectful and informed discussion of matters of common moral concern.
This course is an examination of philosophical theories of action and motivation in the light of empirical findings from social psychology, sociology, and neuroscience. Topics include belief, desire, and moral motivation; sympathy and empathy; intentions and other committing states; strength of will and weakness of will; free will; addiction and compulsion; guilt, shame and regret; evil; self-knowledge and self-deception; and, virtues and character traits.
This course is a CI-M course.
This course covers vector and multi-variable calculus. It is the second semester in the freshman calculus sequence. Topics include vectors and matrices, partial derivatives, double and triple integrals, and vector calculus in 2 and 3-space.
MIT OpenCourseWare offers another version of 18.02, from the Spring 2006 term. Both versions cover the same material, although they are taught by different faculty and rely on different textbooks. Multivariable Calculus (18.02) is taught during the Fall and Spring terms at MIT, and is a required subject for all MIT undergraduates.
This course covers differential, integral and vector calculus for functions of more than one variable. These mathematical tools and methods are used extensively in the physical sciences, engineering, economics and computer graphics.
Course Formats
The materials have been organized to support independent study. The website includes all of the materials you will need to understand the concepts covered in this subject. The materials in this course include:
- Lecture Videos recorded on the MIT campus
- Recitation Videos with problem-solving tips
- Examples of solutions to sample problems
- Problem for you to solve, with solutions
- Exams with solutions
- Interactive Java Applets ("Mathlets") to reinforce key concepts
Content Development
Denis Auroux
Arthur Mattuck
Jeremy Orloff
John Lewis
In this course, we will rebuild the everyday sounds of nature, machines, and animals from scratch and encapsulate them in dynamic sound objects which can be embedded into computer games, animations, movies, virtual environments, sound installations, and theatre productions. You will learn how to analyze and model sounds and resynthesize them with the open-source graphical programming environment Pure Data (Pd). Our work will be guided by Andy Farnell's book Designing Sound (MIT Press, 2010). No previous programming experience is required.
This course features directed composition of larger forms of original writing involving voices and/or instruments. It includes a weekly seminar in composition for the presentation and discussion of work in progress. Students are expected to produce at least one substantive work, performed in public, by the end of the term. Contemporary compositions and major works from 20th-century music literature are studied.
This course is an introduction to selected musical traditions of West Africa. A variety of musical practices and their cultural contexts will be explored through listening, reading, and written assignments, with an emphasis on class discussion. The course includes in-class instruction in West African drumming, song and dance, as well as lecture-demonstrations by guest artists.
After an introductory unit, the course will be organized around four main geographical areas: Senegal, Mali, Ghana, and Nigeria. An in-depth study of music from these countries will be interspersed with brief overviews of Southern, Central, and East Africa.
This course focuses on Hindustani classical music of North India, and also involves learning about the ancient foundations of the rich classical traditions of music and dance of all Indian art and culture. Students explore the practice the ragas and talas through learning songs, dance, and drumming compositions, and develop insights through listening, readings, and concert attendance.
This course begins with the premise that the 1960s mark a great dividing point in the history of 20th century Western musical culture, and explores the ways in which various social and artistic concerns of composers, performers, and listeners have evolved since that decade. It focuses on works by classical composers from around the world. Topics include the impact of rock, as it developed during the 1960s - 70s; the concurrent emergence of post serial, neotonal, minimalist, and new age styles; the globalization of Western musical traditions; the impact of new technologies; and the significance of music video, video games, and other versions of multimedia. The course interweaves discussion of these topics with close study of seminal musical works, evenly distributed across the four decades since 1960; works by MIT composers are included.
This class is an introduction to the analysis of tonal music. Students develop analytical techniques based upon concepts learned in 21M.301-21M.302. Students study rhythm and form, harmony, line and motivic relationships at local and large scale levels of musical structure. Three papers (totaling 20 pages, one to be revised) and one oral presentation are required.
In this course, students study concepts and practice techniques of improvisation in solo and ensemble contexts. The course examines relationships between improvisation, composition, and performance based in traditional and experimental approaches. Hands-on music making will be complemented by discussion of the aesthetics of improvisation. Weekly lab sessions support work on musical technique. Guest artist / lecturers will engage students through mini-residencies in jazz with film, Indian music, electronic music, and blending improvisation with classic music; and an accompanying concert series will feature these artists in performance. Open by audition to instrumental or vocal performers.
Human beings are symbol-making as well as tool-making animals. We understand our world and shape our lives in large part by assigning meanings to objects, beings, and persons; by connecting things together in symbolic patterns; and by creating elaborate forms of symbolic action and narrative. In this introductory subject we consider how symbols are created and structured; how they draw on and give meaning to different domains of the human world; how they are woven into politics, family life, and the life cycle; and how we can interpret them.
The semester will be devoted to a number of topics in symbolism.
- Metaphor and Other Figurative Language
- The Raw Materials of Symbolism, especially Animals and The Human Body
- Cosmology and Complex Symbolic Systems
- Ritual, including Symbolic Curing and Magic
- Narrative and Life
- Mythology
Related Content
Parallel treatments of photons, electrons, phonons, and molecules as energy carriers, aiming at fundamental understanding and descriptive tools for energy and heat transport processes from nanoscale continuously to macroscale. Topics include the energy levels, the statistical behavior and internal energy, energy transport in the forms of waves and particles, scattering and heat generation processes, Boltzmann equation and derivation of classical laws, deviation from classical laws at nanoscale and their appropriate descriptions, with applications in nano- and microtechnology.
This course links clean energy sources and storage technology to energy consumption case studies to give students a concept of the full circle of production and consumption. Specifically, photovoltaic, organic photovoltaic, piezoelectricity and thermoelectricity sources are applied to electrophoresis, lab on a chip, and paper microfluidic applications–relevant analytical techniques in biology and chemistry. Hands-on experimentation with everyday materials and equipment help connect the theory with the implementation. Complementary laboratories fabricating LEDs, organic LEDs and spectrometers introduce the diagnostic tools used to characterize energy efficiency.
This course is one of many OCW Energy Courses, and it is an elective subject in MIT’s undergraduate Energy Studies Minor. This Institute-wide program complements the deep expertise obtained in any major with a broad understanding of the interlinked realms of science, technology, and social sciences as they relate to energy and associated environmental challenges.
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