Experimental Marine Science Methods
Contemporary marine science research relies on a rapidly developing world of aquatic technologies, yet there has also been a recent revolution in low-cost, DIY electronics and components. For experimentalists, there is immense value in having a broad knowledge of the assorted tools in your methodological “toolkit”. Often, the instrument to collect the data you need doesn’t exist or is unaffordable, in which case the best option may be to build it yourself. Learning how to operate, fix, or even construct instruments to answer a research question builds a strong and interconnected foundation of scientific skills, both concrete (programming, simple electronics, instrumentation, machining, and engineering) and cognitive (critical thinking, creative problem solving, cost-benefit analysis, forethought, resilience, and the “methods” part of the scientific method).
In this course you will (1) practice the practical and cognitive skills that experimental marine scientists use to do research, and (2) learn how to design and construct custom aquatic instrumentation to answer a scientific question. The course will start with you constructing a simple aquatic sensor to build basic skills, move on to creating a lab setup designed to manipulate some aspect of the aquatic environment, and end with self-directed research projects devising and building an instrument to explore your own scientific question. Much of our class time will be spent in a collaborative learning setting similar to a research group. Throughout the course, we will explore the ways that creative custom instrumentation can push the boundaries of science and make high-quality research more accessible.
This is a project-based course that is intended for STEM-motivated students. It would serve particularly well to bridge students into pursuing more advanced scientific research endeavors.
This class is very much a group effort, and assessment will be based on active participation in class experiences as well as written assignments in the style of a technical report, short weekly reflections, and a presentation at an end-of-term symposium. In addition to class meetings, expect to spend a substantive amount of time outside of class working on your projects.