Health Communication has emerged as an important field of theory, research, and practice in the 21st century. As recognized by several public health and global health agendas, well-designed and implemented health communication interventions can have a positive impact on public health and health care outcomes, as well as health equity. This course will introduce students to the field of Health Communication theory and practice, and its key action areas. It will prepare them to design, implement and evaluate health communication interventions within a systematic, participatory, engaging, process-oriented, and multidisciplinary framework that aims at behavioral, social, and organizational results and ultimately, improved public health outcomes.
As health communication is grounded in many theories and principles (e.g., behavioral and social change, marketing, intergroup, sociology, anthropology, cultural-centered and positive deviance theory, mass media and new media theory, medical models, community organizing, social networks, etc.) that are also shared by other disciplines in the public health, health care, and community development fields, these theories will be briefly reviewed as part of session two in relation to their specific application to health communication theory and practice. The planning frameworks and practical exercises included in this course are specific to the field of health communication and provide students with core competencies and skills for future work in health communication within the nonprofit, corporate, academic, and government sectors both in the United States and globally.
Further study of areas such as communication protocols and architectures, flow and congestion control in data networks, performance evaluation in integrated networks. Content varies from year to year, and different topics rotate through the course numbers 6770 to 6779.
During this course, students will be introduced to the methods and techniques of creating infographics and data visualizations. They will learn about storytelling and how to create various charts using Tableau Desktop software. Students will also learn the practical aspects of managing a public health data visualization project. Tableau is becoming widely used and is now also connectable to the “big 4” SPSS/SAS/STAT/R, as such it is an essential data analytics tool for understanding and manipulating data for public health. Students will learn methodologies on how to approach public health data to create data visualizations that display statistics in a compelling form in Tableau. This hands-on introductory course will teach students to develop meaningful public health data stories that reveal insights. Students will utilize health data to tell visual stories and develop an aesthetic for presenting their findings to a lay audience.
Trees shadow the human in faceless fashion. They mark of a form of deep-time (like Darwin’s tree of Life), record and respond to ecological devastation and abundance. Symbolic of the strange proximity of the divine, trees figure as alter-egos or doubles for human lives and their after lives (in figures like the trees of life and salvation, trees of wisdom and knowledge, genealogical trees, et al). As prostheses of thought and knowledge they become synonymous with structure and form, supports for linguistic and other genres of mapping, and markers of organization and reading (Moretti). As key sources of energy, that is, as food-procurers, wood, and coal (from the Carboniferous period), trees –as we know them today -- are direct correlates with the rise of the Anthropocene. This course turns to trees as shadows and shade: that is to trees as coerced doubles of the human and as entry ways to an other-world that figures at the limits of thought and language. Part eco-criticism, part philosophy, this course will begin by coupling medieval literary texts with theoretical works, but will expand (and contract) to other time periods and geographic locales. An undercurrent of the course is the relation of trees to language, knowledge, democracy, aesthetics, indigeneity, colonization, and religion.
This course introduces the fundamental concepts and problems of international human rights law. What are the origins of modern human rights law? What is the substance of this law, who is obligated by it, and how is it enforced? The course will cover the major international human rights treaties and mechanisms and consider some of todays most significant human rights issues and controversies. While the topics are necessarily law-related, the course will assume no prior exposure to legal studies.
Prerequisites: the instructors permission prior to registration. Issues and problems in theory of international politics; systems theories and the current international system; the domestic sources of foreign policy and theories of decision making; transnational forces, the balance of power, and alliances.
Musicals, especially those that have traditionally originated on Broadway, are complex pieces of machinery that are designed to produce a variety of energies in the theater. When taken collectively, those energies constitute the aesthetic of the experience. As with plays, stage managers are charged with coordinating all of a musical’s production elements. However, stage managers should also be able to view a musical from every angle; that is, read it intelligently and analyze it dramatically so they can accurately gauge their contribution to the overall aesthetic. This course seeks to provide stage managers with a customized template to do that: in other words, how to connect what’s on the page and the stage to their own standard methodologies, cue calling, and the CEO/COO perspective. In the contemporary professional landscape, these are important tools that will help them optimize their work on musicals.
The term “digital humanities” (DH) has long been used to describe scholarship at the intersection of digital technologies and humanities disciplines. Although initially characterized by quantitative analysis and number-crunching, DH today enjoys a far broader mandate encompassing new fields like software studies, data visualization, critical code studies, and more. This course proposes to ride the wave of these developments.
Specifically, it explores how coding can be harnessed to the disciplines of film and media studies. Over the past few years, developments in generative AI have placed basic coding expertise within the reach of all. But what possibilities open up from these changes? Over the course of over a dozen weeks, students in this class will learn ways in which coding can help refine and reimagine traditional scholarly agendas (e.g., film analysis, media industry studies, archival restoration, etc.). But the class also shows how coding opens up entirely new ways of working with media as objects of study.
Unique among Hollywood directors, Hitchcock played on two boards. As a master of entertainment who had nothing to say, he produced work as thoroughly trivial as it was utterly compelling. But thanks to the French reception of his work in 1950s, Hitchcock also came to be considered a master of art, the Auteur par excellence. If his films had nothing to say, they hardly needed to; in their unparalleled formal originality, they distilled the pure essence of cinema itself. The course will focus on this dialectic between entertainment and art, between saying nothing and being everything. We shall pay particular attention to a Style that is, on the one hand, commodified as a “touch” that all can recognize, and, on the other, recessed in strange, inconsequential, gibberish-making
touches
that, far from courting recognition, seem to defy it.
Prerequisites: the instructor's permission. This course will help guide E3B Ph.D. students towards candidacy by teaching them the skills necessary to be effective and independent scientists. Students will conduct an extensive literature review, write a preliminary dissertation proposal, and present their research ideas to the group on multiple occasions. Students will learn how to give and receive constructive written and oral feedback on their work.
This required Visual Arts core MFA curriculum course, comprising two parts, allows MFA students to deeply engage with and learn directly from a wide variety of working artists who visit the program each year.
Lecture Series
The lecture component, taught by an adjunct faculty member with a background in art history and/or curatorial studies, consists of lectures and individual studio visits by visiting artists and critics over the course of the academic year. The series is programmed by a panel of graduate Visual Arts students under the professor's close guidance. Invitations are extended to artists whose practice reflects the interests, mediums, and working methods of MFA students and the program. Weekly readings assigned by the professor provide context for upcoming visitors. Other course assignments include researching and preparing introductions and discussion questions for each of the visitors. Undergraduate students enrolled in Visual Arts courses are encouraged to attend and graduate students in Columbia's Department of Art History are also invited. Following each class-period the conversation continues informally at a reception for the visitor. Studio visits with Visual Arts MFA students take place on or around the week of the artist or critic's lecture and are coordinated and assigned by lottery by the professor.
Artist Mentorship
The Artist-Mentor component allows a close and focused relationship to form between a core group of ten to fifteen students and their mentor. Students are assigned two mentors who they meet with each semester in two separate one-week workshops. The content of each workshop varies according to the Mentors’ areas of expertise and the needs of the students. Mentor weeks can include individual critiques, group critiques, studio visits, visits to galleries, other artist's studios, museums, special site visits, readings, and writing workshops. Here are a few descriptions from recent mentors:
• During Mentor Week we will individually and collectively examine our assumptions and notions about art. What shapes our needs and expectations as artists and the impact of what we do?
• Our week will include visits to exhibition spaces to observe how the public engages the art. Throughout, we will consider art's ability to have real life consequences and the public's desire to personally engage with and experience art without mediation.
• The week will be conducted in two parts, f
Introduction to the theory and practice of formal methods for the design and analysis of correct (i.e. bug-free) concurrent and embedded hardware/software systems. Topics include temporal logics; model checking; deadlock and liveness issues; fairness; satisfiability (SAT) checkers; binary decision diagrams (BDDs); abstraction techniques; introduction to commercial formal verification tools. Industrial state-of-art, case studies and experiences: software analysis (C/C++/Java), hardware verification (RTL).
Advanced topics in signal processing, such as multidimensional signal processing, image feature extraction, image/video editing and indexing, advanced digital filter design, multirate signal processing, adaptive signal processing, and wave-form coding of signals. Content varies from year to year, and different topics rotate through the course numbers 6880 to 6889.
Advanced topics in signal processing, such as multidimensional signal processing, image feature extraction, image/video editing and indexing, advanced digital filter design, multirate signal processing, adaptive signal processing, and wave-form coding of signals. Content varies from year to year, and different topics rotate through the course numbers 6880 to 6889.
Advanced topics spanning electrical engineering and computer science such as speech processing and recognition, image and multimedia content analysis, and other areas drawing on signal processing, information theory, machine learning, pattern recognition, and related topics. Content varies from year to year, and different topics rotate through the course numbers 6890 to 6899.
Advanced topics spanning electrical engineering and computer science such as speech processing and recognition, image and multimedia content analysis, and other areas drawing on signal processing, information theory, machine learning, pattern recognition, and related topics. Content varies from year to year, and different topics rotate through the course numbers 6890 to 6899. Topic: Big Data Analytics.
Advanced topics spanning electrical engineering and computer science such as speech processing and recognition, image and multimedia content analysis, and other areas drawing on signal processing, information theory, machine learning, pattern recognition, and related topics. Content varies from year to year, and different topics rotate through the course numbers 6890 to 6899.
Advanced topics spanning electrical engineering and computer science such as speech processing and recognition, image and multimedia content analysis, and other areas drawing on signal processing, information theory, machine learning, pattern recognition, and related topics. Content varies from year to year, and different topics rotate through the course numbers 6890 to 6899. Topic: Quantum Computing and Communication.
Selected topics in electrical and computer engineering. Content varies from year to year, and different topics rotate through the course numbers 6900 to 6909.
Prerequisites: ECON G6211 and ECON G6212 or the instructors permission. This course covers topics at the frontier of international trade research, placing an emphasis on theory. Previous topics include: trade patterns, offshoring, inequality, unemployment, trade and matching, firm organization, and trade policy.
Prerequisites: calculus. Recommended preparation: linear algebra, statistics, computer programming. Introduction to the fundamentals of quantitative data analysis in Earth and environmental sciences. Topics: review of relevant probability, statistics and linear algebra; linear models and generalized least squares; Fourier analysis and introduction to spectral analysis; filtering time series (convolution,deconvolution,smoothing); factor analysis and empirical orthogonal functions; covariance and correlation; methods of interpolation; statistical significance and hypothesis testing; introduction to Monte Carlo methods for data analysis. Problem sets and term project require use of MATLAB or Python.
This proposed course allows for a variety of potential advanced courses to be taught as part of the proposed concentration on control.
Art Humanities aims to instill in undergraduate students a passion and a critical vocabulary for the study of art as well as a fundamental capacity to engage the world of images and built environments. Principles of Art Humanities aims to prepare instructors to teach Art Humanities. We will study each unit of Art Humanities with an eye toward pedagogy, formal and critical analysis, and a capacious understanding of art and culture of past epochs. The course comprises presentations by the Art Humanities Chair and by weekly invited guests, as well as discussion among all participants. Required of all first-time Art Humanities instructors. Open to retuning instructors.
Prerequisites: EESC W4008, APPH E4210, and advanced calculus, or the instructor's permission. This course is a continuation of Geophysical Fluid Dynamics (APPH E4210) which is a prerequisite for this course. Exploration of atmospheric circulation based upon oabservations and interpretive models. Topics include wave/mean-flow interaction (the equilibration of instabilities and the wave-driven contribution to meridional transport), zonally symmetric circulations (Hadley and Ferrel Cells), maintenance of the mid-latitude circulation through extratropical cyclones, the zonally asymmetric circulation (stationary waves and storm tracks), and the stratospheric circulation (the quasi-biennial oscillation and meridional transport).
Prerequisites: EESC GR6901 This course teaches students to design and apply idealized models to study the fundamental properties of climate system processes and their interactions. Though these models typically have at their core only a handful of interacting differential equations, they can significantly advance process understanding. We cover three topical areas in climate system science: (1) the interpretation and attribution of atmospheric methane trends (2) the role of the ocean in regulating atmospheric carbon dioxide, and (3) the influence of climate system feedbacks on the Earth’s energy balance. Throughout the course, emphasis is placed on identifying assumptions underlying conclusions drawn from simple models and the time scales over which different processes operate.
Looked at one way, the history of cinema is a series of death knells. While the rhetoric of crisis is especially acute today, with the very existence of movie theaters imperiled by the dominance of streaming services, predictions of cinema’s demise are as old as the medium itself — one of its inventors is said to have called it “an invention without a future” and its evolution is marked by moments of technological and cultural change that were perceived or experienced as existential threats.
This course traces the arc of cinema through its many supposed deaths: the industrialization of movies, the arrival of sound, the threat of television and the home theater, the compensatory innovations of color and widescreen and CGI, the rise of media conglomeration, the invention of digital technology, the migration of the moving image into ever more settings and contexts (galleries, portable devices, the virtual realm), and so on. We will explore the circumstances that led to these inflection points and the ways in which each threshold period of change reshaped the landscape and language of cinema. We will also consider the periodic death throes (and various afterlives) of film criticism, film theory, and cinephilia.
Provides students the opportunity to present work in progress or final drafts to other students and relevant faculty to receive guidance and feedback.
MRST Directed Readings, Independent study. Students should meet with the Program Director and Program Manager before registering for this course.
Selected topics in computer science (advanced level). Content and prerequisites vary between sections and semesters. May be repeated for credit. Check “topics course” webpage on the department website for more information on each section.
Selected topics in computer science (advanced level). Content and prerequisites vary between sections and semesters. May be repeated for credit. Check “topics course” webpage on the department website for more information on each section.
Selected topics in computer science (advanced level). Content and prerequisites vary between sections and semesters. May be repeated for credit. Check “topics course” webpage on the department website for more information on each section.
Selected topics in computer science (advanced level). Content and prerequisites vary between sections and semesters. May be repeated for credit. Check “topics course” webpage on the department website for more information on each section.
Selected topics in computer science (advanced level). Content and prerequisites vary between sections and semesters. May be repeated for credit. Check “topics course” webpage on the department website for more information on each section.
Selected topics in computer science (advanced level). Content and prerequisites vary between sections and semesters. May be repeated for credit. Check “topics course” webpage on the department website for more information on each section.
Selected topics in computer science (advanced level). Content and prerequisites vary between sections and semesters. May be repeated for credit. Check “topics course” webpage on the department website for more information on each section.
Selected topics in computer science (advanced level). Content and prerequisites vary between sections and semesters. May be repeated for credit. Check “topics course” webpage on the department website for more information on each section.
Selected topics in computer science (advanced level). Content and prerequisites vary between sections and semesters. May be repeated for credit. Check “topics course” webpage on the department website for more information on each section.
Selected topics in computer science (advanced level). Content and prerequisites vary between sections and semesters. May be repeated for credit. Check “topics course” webpage on the department website for more information on each section.
Selected topics in computer science (advanced level). Content and prerequisites vary between sections and semesters. May be repeated for credit. Check “topics course” webpage on the department website for more information on each section.
Selected topics in computer science (advanced level). Content and prerequisites vary between sections and semesters. May be repeated for credit. Check “topics course” webpage on the department website for more information on each section.
Selected topics in computer science (advanced level). Content and prerequisites vary between sections and semesters. May be repeated for credit. Check “topics course” webpage on the department website for more information on each section.
ENGL 6998 GR is a twin listings of an undergraduate English lecture provided to graduate students for graduate credit. If a graduate student enrolls, she/he/they attends the same class as the undergraduate students (unless otherwise directed by the instructor). Each instructor determines additional work for graduate students to complete in order to receive graduate credit for the course. Please refer to the notes section in SSOL for the corresponding (twin) undergraduate 1000 or 2000 level course and follow that course's meeting day & time and assigned classroom. Instructor permission is required to join.
ENGL 6998 GR is a twin listings of an undergraduate English lecture provided to graduate students for graduate credit. If a graduate student enrolls, she/he/they attends the same class as the undergraduate students (unless otherwise directed by the instructor). Each instructor determines additional work for graduate students to complete in order to receive graduate credit for the course. Please refer to the notes section in SSOL for the corresponding (twin) undergraduate 1000 or 2000 level course and follow that course's meeting day & time and assigned classroom. Instructor permission is required to join.
ENGL 6998 GR is a twin listings of an undergraduate English lecture provided to graduate students for graduate credit. If a graduate student enrolls, she/he/they attends the same class as the undergraduate students (unless otherwise directed by the instructor). Each instructor determines additional work for graduate students to complete in order to receive graduate credit for the course. Please refer to the notes section in SSOL for the corresponding (twin) undergraduate 1000 or 2000 level course and follow that course's meeting day & time and assigned classroom. Instructor permission is required to join.
ENGL 6998 GR is a twin listings of an undergraduate English lecture provided to graduate students for graduate credit. If a graduate student enrolls, she/he/they attends the same class as the undergraduate students (unless otherwise directed by the instructor). Each instructor determines additional work for graduate students to complete in order to receive graduate credit for the course. Please refer to the notes section in SSOL for the corresponding (twin) undergraduate 1000 or 2000 level course and follow that course's meeting day & time and assigned classroom. Instructor permission is required to join.
ENGL 6998 GR is a twin listings of an undergraduate English lecture provided to graduate students for graduate credit. If a graduate student enrolls, she/he/they attends the same class as the undergraduate students (unless otherwise directed by the instructor). Each instructor determines additional work for graduate students to complete in order to receive graduate credit for the course. Please refer to the notes section in SSOL for the corresponding (twin) undergraduate 1000 or 2000 level course and follow that course's meeting day & time and assigned classroom. Instructor permission is required to join.
HIST 6998 GR is a twin listings of an undergraduate History lecture provided to graduate students for graduate credit. If a graduate student enrolls, she/he/they attends the same class as the undergraduate students (unless otherwise directed by the instructor). Each instructor determines additional work for graduate students to complete in order to receive graduate credit for the course. Please refer to the notes section in SSOL for the corresponding (twin) undergraduate 1000 or 2000 level course and follow that course's meeting day & time and assigned classroom. Instructor permission is required to join.