In this course, we will focus on gender as a central mode of identity exploration in contemporary art within the digital age, adopting a multidisciplinary and interactive approach. Over a course of six sections, we will analyze how contemporary artists, from diverse backgrounds, delve into various facets of gender identity within the context of digital art history. This exploration will encompass their interactions with new media styles, mediums, reception, and critical analysis. We will raise essential questions: How does technology in interactive art contribute to gender equality? To what extent does an artist’s gender identity influence the interpretation of their digital work? We will critically engage with gender studies, examine gender’s profound impact on digital creation, and explore the socio-cultural influences at play. Through weekly readings and group interactive activities, class discussions, and a final VR exhibition on a related topic of their choosing, students will explore gender’s relevance to digital art creation, examine materials highlighting how gender shapes digital art, analyze socio-cultural factors influencing gender and sexuality in digital contemporary art, and apply their insights to interactive media.
This course will survey literature produced at various points in the tumult of modern Chinese history, from the late Qing through to the present day. While the time period will be broad, we will hope to engage in close, critical readings of significant works of fiction from a selection major authors primarily from Mainland China. How do certain concerns of modernity arise in different texts, at different times, and for different writers? What different relationships do we see being shaped between literature, life, and politics, and how does fiction negotiate certain tensions and anxieties about modern and contemporary life? By exploring a variety of engaging novels and short stories, we will hope to gain a more nuanced understanding of modern China and the role that fiction has played as both an agent of modernity and a reflection of modern Chinese life.
Course Description: In this 14-week course, students will explore sound design fundamentals through modular synthesizers, leveraging the capabilities of microcontrollers. Modular synthesizers are a type of electronic musical instrument used to generate, manipulate, and shape sound through the interconnection of individual modules, or components. This course is designed to equip students with the skills and creative prowess required to craft their own unique devices that adhere to the Eurorack design format; a popular modular synthesizer standard. The curriculum blends the art of sound design with the technical aspects of hardware synthesizer architecture, building skills so that by the end of this course students will have the competence to bring their sonic visions to life in physical form through thoughtful interaction. By harnessing the modular nature of these components, students will work independently, taking into consideration the designs of their peers to ensure seamless compatibility between their devices, resulting in a distinct ‘voice’; a term used to describe a collection of components that define the signal path of a synthesizer. The first half of the course will focus on sound design coding techniques utilizing the Teensy microcontroller, with the second half dedicated to developing tangible hardware design skills. Prerequisites: Intro to Physical Computing No sound design/musical experience is required.
“What does it mean to make something that lasts? In this 7-week studio, we will attempt to understand the collective hallucination that is the Internet, while rationalizing the intersection of permanence, mutation, utility and ownership in creative digital work. To support this investigation, we will: – Use hands-on workshops to understand and build various forms of generating digital art – Consider the implications of storage and longevity – Have a working knowledge of marketplace capabilities, and their influence on the art that they contain – Expand on our understanding of verifiable ownership, blockchain and otherwise, and how it can have impact beyond the digital landscape Through this class, you will develop work that considers time as a critical axis, be it the longevity of the outcome, or the impermanence of the idea. Work may live on the blockchain, utilize generative ai frameworks, or manifest as a performance in a snowstorm.”
This course focuses on designing, developing and delivering multimedia live performances via a virtual platform. The class will have an emphasis on experimenting with different possibilities of virtual performances, pushing the boundaries of the performative medium, and using emerging technologies to create experiences that allow for the unfolding of engaging narratives, and/or generate compelling visuals in real time. We will look at various examples of both online and offline performances, explore how we can apply the technologies we have learned to design performative systems, and discuss methods we can use to make our performances more engaging. Students will practice quickly coming up with ideas and performing in class. A few weeks into the course, students will propose final project ideas and then develop the performances in the following weeks with support from the instructor. The class will culminate in a virtual event featuring solo and/or group performances by the students.
By exploring and dissecting the field of STEM education, we will research how STEM education currently exists with clear biases and gatekeeping. Through that we intend to create a framework to challenge the biases and design more inclusive and accessible pathways. As a class we will engage in discussions around spaces (community/public spaces and private spaces), STEM as an inclusive element, and definitions of accessibility. The hope is to yield an experience where students can observe, inspire (or get inspired) by mundane things around their day to day lives and connect them to STEM experiences that might seem rather oblivious. Students will create assignments in dialogue with “making with everyday objects”, STEM pedagogy practice, social/emotional learning in spaces, and human-centered design. Students will be exposed to STEM literacy pedagogy, will curate a pop-up space, practice comprehensive user-testing, and reconstruct the framework around accessible and universal design. Students will engage in critical thinking, critiques, visiting artist lectures, field trips and class discussions. About Sharon De La Cruz: https://www.sharonleedelacruz.com/about-me, https://khushbukshirsagar.weebly.com/about.html
In this special format studio class, students will investigate techniques and frameworks to challenge the socioeconomics of planned obsolescence. We will research, design, and develop projects that rethink our strained relationship with smartphones and re-imagine the future of “old” devices. This is a production-heavy, four-credit course, where students will contribute to original research, and develop projects that combine HCI, design, and critical theory. Prerequisites include an open mind, the drive to make, and graduate-level Physical Computing.
The use of digital technology in mental health treatment, recovery, support, and prevention is rapidly gaining acceptance. For instance: The FDA recently approved the VR therapeutic EaseVRx to treat pain. Researchers recently found that exposure to natural environments in VR can provide emotional well-being benefits for people who cannot access the outdoors. Strobing lights can be tuned to stimulate temporary harmonic brain wave patterns usually only found in people who have been meditating for decades. Apps which help you track your mood could facilitate gaining knowledge and awareness of one’s mood patterns and thus help maintain emotional well-being. ASMR videos are reported to be effective in inducing sleep for those susceptible to insomnia, and assuaging a range of symptoms, including those associated with depression, anxiety and panic attacks. This class will focus on the use of technology to activate any and all of our senses to aid in mindfulness and meditation, distraction therapy, body awareness and acceptance, and more, via the use of tools and techniques shown to have a direct impact on our physiology as well as supportive and accessible user experience design with broad applications in other areas. Prerequisite: Basic coding and physical computing About Brian Lobser: http://light.clinic
This course examines magazines as collaborative sites for artists and writers internationally, leading the way to a global, networked cultural sphere. We will consider periodicals as both commercial and artist-driven enterprises and as material objects to be studied through the lens of the history of photography, journalism, and design.
Students who plan on pursuing careers in the media (professional and academic) will be faced with difficulty choices that carry with them potent ethical repercussions, choices that practical training does not properly equip them to approach in a critical and informed manner. The purpose of this course is therefore twofold: 1) to equip future media professional with sensitivity to moral values under challenge as well as the necessary skills in critical thinking and decision making for navigating their roles and responsibilities in relation to them; and 2) honing those same skills and sensitivities for consumers of media and citizens in media saturated societies.
This course focuses on three important areas in music technology: spatialization, computer aided composition, analysis & synthesis techniques. In each area, concepts & implementations will be explored in a variety of artistic & technological contexts. Students will work with the latest technologies including IRCAM Tools, Spat plugin, Max Bach library, Ambisonics, & Wave Field Synthesis. The course includes a 3-hour weekly lecture, 3-hour studio lab, & workshops at IRCAM. This course is taught in collaboration with IRCAM in Paris, one of the world leading institutions in computer music and acoustics.
This course explores the Art of Character Creation using the powerful digital sculpting program ZBRUSH. Students will learn the ins and outs of the program to create their own 3d characters from scratch. Sculpting, detailing, Polypainting, rendering and compositing in Photoshop will all be covered. The class will encourage learning while doing as I find it’s the best way to learn a new art. Zbrush is a unique program that allows users to manipulate 3D shapes in a quick fashion without having to model polygons like other 3D programs such as Maya. In effect you are using “digital clay” in Zbrush to push and pull primitive forms into fantastic creatures and characters. Zbrush is the perfect tool for traditional artists to transition to artmaking in the digital realm. Zbrush is an extremely feature-rich piece of software, with a unique interface unlike any other computer graphics program. While the interface may seem quite intimidating at first, rest assured we will explore the interface together and learn all the most important tools to get started and having fun with organic character creation! Some benefits of using Zbrush for Character and Creature Design over other computer design software: -The ability to quickly create concepts as if you were manipulating real clay -Great for rough character concepts or more finished painted renders -Transition is much smoother from practical to digital art using Zbrush because it feels like you are using an artistic tool rather than a technical tool – Zbrush offers such a deep diverse toolset, you can create stylized cartoon-like characters, realistic animals and humans! The possibilities are endless. You can use it for everything from organic characters to hard surface robots and props! -Once you learn the interface and tools, you can simply sculpt without worrying as much about technical aspects like polygons, faces, points and edges like other traditional polygon modelling programs
One of the most transformative consumer products in history, the iPhone remains the standard bearer for great design and user experience. With the latest versions of iOS and iPhone, Apple puts depth sensing and augmented reality in our pockets. How do we take advantage of this incredible platform to produce our own compelling experiences? This course will be a hands-on workshop where we explore the world beyond generic apps and push the boundaries of what’s possible on iOS hardware. Each week, you’ll be asked to complete a programming exercise meant to foster your understanding of iOS application development. We’ll leverage existing open source libraries to quickly build out your app with features such as real time communication and cloud storage. We aim to create distributed instruments for computed expression. Full-time access to an iOS device and a Mac laptop computer running the latest operating system and development tools are required. Prereq: Some programming experience (such as ICM) and willingness to learn Apple’s Swift programming language.
“Since the introduction of the iPhone in 2007, the touchscreen has become the dominant manner for navigating Mobile devices. UX pattern best practices are enshrined in documents such as Apple’s ‘HIG’ (Human Interface Guidelines) or Google’s more recent Material Design. ‘No Screens Allowed’ is a class that challenges this ’Touchscreen first’ interaction approach. Taught in the Kotlin language, students will prototype solutions in response to Instructor directed assignments. The various projects structured to interrogate mobile device capabilities such as: Voice Recognition, Computer Vision, Machine Learning, and built in sensors. Students will be provided with identical hardware: Pixel 3 phones running Android, the chosen development platform for the class. Successful completion of Introduction to Computational Media and Introduction to Physical Computing are required for entry into class. “
Quantum technologies are the next frontier of electronics and computing. Quantum Computers, Quantum Sensors, Quantum Materials are just beginning to emerge from laboratories and enter the realm of practical application. The course introduces the underlying principles of quantum physics, and reviews emerging capabilities of quantum computers and related technologies. Coursework will include programming quantum algorithms on a simulator, and running programs on actual cloud-based quantum computing hardware. The topics will be highly technical and will require the study of scientific principles and experimental apparatus. We will cover some basic mathematical operations in linear algebra, and we’ll be encountering some equations from physics and computer science.
The class will focus on the many overlooked aspects of paper, and how it can be used as a three-dimensional material. We will learn the disciplines of making Pop-Ups, Origami, Paper Crafting, and Visual Design. Using these methods as a starting point, students will build prototypes to explore new ways to tell stories, inform, interact, play with, engage, and challenge a younger audience. Most classes are hands – on. The rest, dedicated to criticism (including from children), analysis, and refinement, technical and conceptual. We will discuss how they could be mass produced and distributed. Students will build three prototypes, during the semester. From these, each student will select a favorite to fully develop as the final.