Emulating a Fish Swim Bladder

ORAL

Abstract

The University of New Hampshire and the University of New England are developing biologically relevant physics laboratories for their predominantly health science audiences. Buoyancy plays an important role in a variety of biological processes. We describe an inexpensive laboratory activity based on the Cartesian Diver that allows students to quantitatively emulate the swim bladder of a fish. Inflation of the ``bladder'' is externally controlled through an external gas syringe or squeezing on the plastic water containment vessel (a 2L soda bottle). The students can accurately determine the volume of a ``fish'' at the point of neutral buoyancy by visual measurement of the trapped air pocket. A simple electronic gas pressure sensor allows the hydrostatic pressure on the fish to be analyzed simultaneously.

Authors

  • Jessica Oliviera

    University of New England

  • Irvinder Kaur

    University of Colorado, University of Southern Virginia, University of New Hampshire, University of New England, Southern Virginia University, Bridgewater State College, Massachusetts Institute of Technology, SciPrint.org

  • Irvinder Kaur

    University of Colorado, University of Southern Virginia, University of New Hampshire, University of New England, Southern Virginia University, Bridgewater State College, Massachusetts Institute of Technology, SciPrint.org

  • Irvinder Kaur

    University of Colorado, University of Southern Virginia, University of New Hampshire, University of New England, Southern Virginia University, Bridgewater State College, Massachusetts Institute of Technology, SciPrint.org

  • Irvinder Kaur

    University of Colorado, University of Southern Virginia, University of New Hampshire, University of New England, Southern Virginia University, Bridgewater State College, Massachusetts Institute of Technology, SciPrint.org