Cuba: Polit of Extremism

(Offered as POSC 248 and LLAS 248) The study of Cuba’s politics presents opportunities to address issues of universal concern to social scientists and humanists in general, not just Latin Americanists. When is it rational to be radical? Why has Cuban politics forced so many individuals to adopt extreme positions? What are the causes of radical revolutions? Is pre-revolutionary Cuba a case of too little development, uneven development or too rapid development? What is the role of leaders: Do they make history, are they the product of history, or are they the makers of unintended histories?

China & Developing World

(Offered as POSC 218, HIST 218 [AS/TR], & ASLC 218)  As one of the world’s great powers, China has had a profound impact on the developing world. Through financial, military, and political means, China has shaped the economies, cultures, and environments of nations throughout Latin America, Africa, and Asia. This course examines the historical and political aspects of this influence with the aim of better understanding the implications of China’s global presence.

Special Topics

Departments may offer a course known as SPECIAL TOPICS in which a student or a group of students study or read widely in a field of special interest. It is understood that this course will not normally duplicate any other course regularly offered in this curriculum and that the student will work in this course as independently as the instructor thinks possible. A Special Topics course may be elected in any semester. The course should be given a unique name that will be recorded on the student’s transcript.

Biophysics

(Offered as PHYS 400, BIOL 400, BCBP 400, and CHEM 400) How do the physical laws that dominate our lives change at the small length and energy scales of individual molecules? What design principles break down at the sub-cellular level and what new chemistry and physics becomes important? We will answer these questions by looking at bio-molecules, cellular substructures, and control mechanisms that work effectively in the microscopic world. How can we understand both the static and dynamic shape of proteins using the laws of thermodynamics and kinetics?

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