HR: 16:15h
AN: ED34A-02 INVITED [Abstracts]
TI: The Next Great Science
AU: * Hodges, K V
EM: kvhodges@asu.edu
AF: School of Earth and Space Exploration, Arizona State University, Tempe, AZ 85287-1404,
AB:
Earth science --- when defined as the study of all biological, chemical, and physical processes that interact to
define the behavior of the Earth system --- has direct societal relevance equal to or greater than that any other
branch of science. However, "geology", "geoscience", and "Earth science" departments are contracting at many
universities and even disappearing at some. This irony speaks volumes about the limitations of the traditional
university structure that partitions educational and research programs into specific disciplines, each housed in its
own department. Programs that transcend disciplinary boundaries are difficult to fit into the traditional structure
and are thus highly vulnerable to threats such as chronic underfunding by university administrations, low
enrollments in more advanced subjects, and being largely forgotten during capital campaigns. Dramatic
improvements in this situation will require a different way of thinking about earth science programs by university
administrations. As Earth scientists, our goal must not be to protect "traditional" geology departments, but rather
to achieve a sustainable programmatic future for broader academic programs that focus on Earth evolution from
past, present, and future perspectives.
The first step toward meeting this goal must be to promote a more holistic definition of Earth science that
includes modes of inquiry more commonly found in engineering and social science departments. We must think
of Earth science as a meta-discipline that includes core components of physics, geology, chemistry, biology, and
the emerging science of complexity. We must recognize that new technologies play an increasingly important role
in our ability to monitor global environmental change, and thus our educational programs must include basic
training in the modes of analysis employed by engineers as well as those employed by scientists. One of the
most important lessons we can learn from the engineering community is the value of systems-level thinking, and
it makes good sense to make this the essential mantra of Earth science undergraduate and graduate programs
of the future. We must emphasize that Earth science plays a central role in understanding processes that have
shaped our planet since the origin of our species, processes that have thus influenced the rise and fall of human
societies. By studying the co-evolution of Earth and human societies, we lay a critical part of the foundation for
future environmental policymaking. If we can make this point persuasively, Earth science might just be the "next
great science".
DE: 0810 Post-secondary education
DE: 0820 Curriculum and laboratory design
DE: 0825 Teaching methods
SC: Education and Human Resources [ED]
MN: 2007 Fall Meeting