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Graduate Research in Dance — DAN5305.01

Instructor: Levi Gonzalez
Days & Time:
Credits: 6

This course is designed to assist graduate students with the research and development of their new work. The weekly format is determined with the students. In class, they show works-in-progress, try out ideas with their colleagues, and discuss issues involved in their creative processes. Though the class meets only once a week, students are expected to spend considerable time each week in active, ongoing creative research; their independent projects will be presented to the public, either formally or informally, by the end of the term.

Graduate Teaching Fellowship in Dance — DAN5304.01

Instructor: Levi Gonzalez
Days & Time:
Credits: 4

Graduate Teaching Fellows in Dance are integrated into the dance program as teaching assistants. In consultation with their academic advisors and the dance faculty, MFA candidates develop an assistantship schedule of approximately ten hours weekly; the courses they develop and teach are listed in the curriculum. All Teaching Fellows bring their own professional histories and contribute their own manners of teaching. Outside of listed class times, TBD, the Teaching Fellows will meet to discuss their courses with the designated faculty and with each other.

Chemistry 3: Organic Reactions and Mechanisms (with Lab) — CHE4213.01

Instructor: Fortune Ononiwu
Days & Time: T/F 10:30AM-12:20PM, W 8:30AM-12:10PM (Lab)
Credits: 5

Chemistry 3 focuses on the nature and pathways of organic reactions: what the steps are, how we experimentally determine them, and how we can use them to solve practical problems, such as the synthesis of a drug, or understanding the action of an enzyme. Emphasis will be using the general principles of nucleo- and and electrophilicity to provide a logical framework for understanding substitution, addition, elimination and reactions involving carbonyl groups. Chemical kinetics will also be a topic of study because of the insights it provides for reaction mechanisms.

Chemistry 1: Chemical Principles (with Lab) — CHE2211.01

Instructor: Fortune Ononiwu
Days & Time: T/F 2:10PM-4:00PM, Th 8:30AM-12:10PM (Lab)
Credits: 5

This course is the first of a four-course chemistry sequence covering general, organic and biochemistry. Students do not need to take the entire sequence. We will focus on introductory chemical principles, including atomic theory, classical and quantum bonding concepts, molecular structure, organic functional groups, and the relationship between structure and properties. The class will have lecture/discussion meetings at which we will critically examine the major concepts of reading assignments, discuss articles, and review some of the current developments of the field.

Early Christian and Sufi Mystics — LIT2579.01

Instructor: An Duplan
Days & Time: TU,FR 2:10pm-4:00pm
Credits: 4

Mystics鈥撯揾istorically portrayed as passionate, dangerous, romantic, heretical, satanic鈥撯揳re a thorn in the side of organized religion. From the very beginnings of recorded human time, the presence and practice of mystics has been controversial. Sufi mystic al-Hallaj鈥檚 pronouncement that he was 鈥渢he Truth鈥 was received as blasphemy by the orthodoxy. His execution followed shortly after. Christian mystics of the 4th and 5th centuries were relegated to practicing outside the peripheries of the Roman Empire, in relative secrecy.

Visualizing Science — CHE2249.01

Instructor: Dor Ben-Amotz
Days & Time: WE 2:10pm-4:00pm
Credits: 2

In this class we will explore the art and practice of scientific communication. This course is inspired by the work of Edward Tufte as well as a lifetime of experience in scientific research and presentation. Our aim is to learn how to create elegant explanations of complex ideas using pictures, charts, numbers and words. We will analyze and produce displays for use in journalism, research publications and scientific presentations, as well as other art forms that inspire multifaceted understanding.

Scanning Electron Microscopy Research Methods — ES4107.01

Instructor: Tim Schroeder
Days & Time: TU 2:10pm-4:00pm
Credits: 2

Scanning electron microscopes are a fundamental tool in the physical and life sciences. When equipped with an X-Ray spectrometer, a SEM can provide rapid physical and chemical data of specimens on extremely small scales. This class with cover the theory and practical applications of SEM imaging and analysis for advanced science students who have their own research interests. Students will be expected to develop and conduct an independent research project through this class.