Spring 2026 Course Search

Chemistry 2: Organic Structure and Bonding (with Lab) — CHE4212.01

Instructor: Fortune Ononiwu
Days & Time: T/F 10:30AM-12:20PM, W 2:10PM-5:50PM (Lab)
Credits: 5

Building on structural and reactivity insights developed in Chemistry 1, this course delves into molecular structure and modern theories of bonding, especially as they relate to the reaction patterns of functional groups. We will focus on the mechanisms of reaction pathways and develop an understanding for how those mechanisms are experimentally explored. There will be numerous readings from the primary literature, including some classic papers that describe seminal experiments.

The Herbarium: Research, Art & Botany — BIO4441.01

Instructor: Caitlin McDonough MacKenzie
Days & Time: TU,FR 2:10pm-4:00pm
Credits: 4

An herbarium is a museum of pressed plants, a record of flora following a system that dates back to the 16th century. Large herbaria at institutions like D.C.’s Smithsonian National Museum of Natural History, Chicago’s Field Museum, Cambridge’s Harvard University, and London’s Kew Gardens contain millions of specimens, collected from around the world. But, most herbaria are small herbaria, with less than 10,000 specimens.

Special Education — EDU4107.01

Instructor: Jonathan Pitcher
Days & Time: MO,TH 3:40pm-5:30pm
Credits: 4

This course will provide knowledge and skills to offer effective education to students with a range of learning and behavioral characteristics, in a variety of settings. Emphasis will be placed on building an equitable environment for all ages and grades, preK-12, to implement in the future. We will consider how to structure classrooms and plan teaching that is conducive to meeting diverse needs, including those of students with disabilities and English language learners.

Access is a Practice: Dance and Disability Studies — DAN4373.01

Instructor: Londs Reuter
Days & Time: TU,FR 2:10pm-4:00pm
Credits: 2

Accessibility describes the practice of freeing a space or an event so it might be visited by more people in more ways than one could ever presume at the outset. In this course, we will explore the litany of practices that allow more people (and in particular, disabled, mad, and chronically ill people) into all spheres of public life with a particular focus on performance events.

Art in Public Spaces as connective tissue — DAN4380.01

Instructor: Martin Lanz
Days & Time: MO,TH 10:00am-11:50am
Credits: 2

In this course, we will explore various projects that aim to connect people with their surroundings and communities.
We will also explore the strategies that various artists have implemented to increase their audiences and interest in the arts.
We will analyze and design projects that seek sustainability, diversification, and access to the experience of art and culture.

By evaluating environments we could design artistic projects that promote art, artistic education, and the promotion of cultural products as actions to build community, identity, and a creative economy.

Food and Politics: A Food Citizens Methodology Workshop — APA4160.01

Instructor: Yoko Inoue
Days & Time: WE 10:00am-11:50am & WE 2:10pm-4:00pm
Credits: 4

This class will investigate various pedagogical approaches to food studies by examining curriculums, topics and discourses being taught at some academic institutions. More importantly, we will put focus on researching art collectives, contemporary civic engagement practices, and other non-institutional models developed by creative practitioners and activists, which engage with food as a conduit to undertake social, political and cultural identity issues and to enhance their community cohesion.

Chemistry 4 — CHE4277.01

Instructor: John Bullock
Days & Time: MO,TH 3:40pm-5:30pm
Credits: 4

Part of the Chemistry 1-4 suite, this will examine the energetics of chemical changes. Focusing on the enthalpic and entropic contributions to free energy change, we will examine how energy or work can be extracted from chemical systems and how these systems behave as they tend toward equilibrium. Types of equilibria to be covered will include acid/base, solubility, phase change, metal-ligand interactions and oxidation/reduction. The energetics of electron transfer reactions will be examined along with the practical considerations of making use of such reactions to power electric devices.