Biophysical Field Methods




Biophysical Field Methods

Biophysical field methods online offers a practical approach to biophysical ecology, which applies physical concepts, principles and techniques to the interpretation of animal-environment interactions. These include: how physical laws, such as the laws of thermodynamics, affect the abundance and distribution of animals and plants; the nature of microclimate, the ecological niche; and the integration of physiology and evolutionary ecology.

With specific ecological questions in mind, we aim to teach practical methods for reliably measuring temperature and humidity and their physical drivers in the field. Temperature and humidity are commonly reported in field studies, but they are usually measured with little attention to the physical principles that make those measurements meaningful and reliable. Without such attention, the results can be worse than meaningless: they can be misleading.

    The course is composed of nine lessons, each subdivided into several sections. The first third of the course deals with the physics of heat: energy, temperature, the differences between them and how biological systems are constrained by the laws of thermodynamics. Next the course delves into the physics of water, its colligative properties, and the energetics of phase changes from ice to liquid water and liquid water to water vapor. Then, the course focuses on the physics of water potential.

All these concepts are tied together through their common currency—energy—and are demonstrated with several examples of how these concepts properly applied can lead to a deeper understanding of the organism and its environment.

This entire course is filmed on location in Namibia. BPFM is complemented by a field course, where students from the USA, Israel and Namibia rendezvous in the Namib desert, at Gobabeb, Namib Research Institute, to apply the principles of biophysical ecology to real-world problems of adaptation and biophysical ecology. If you have an interest in the field course, drop me a line! 

Scott Turner
Professor emeritus of biology

Using the physics of heat and water to study the thermal ecology of animals and plants in the wild.

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What you will learn
  • Learn practical methods for reliably measuring temperature and humidity and their physical drivers in the field.
  • Learn about calibration and ways you can improvise meaningful calibrations of your instruments under field situations.
  • Learn about the concept of the operative temperature, and how this can be applied to ecologically meaningful measurements of the operative temperature.

Rating: 4.65

Level: All Levels

Duration: 9 hours

Instructor: Scott Turner


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