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Darby Smith (UF Mathematics)

368 Little Hall

Intracelluar Transport: Understanding Force Dependent Stepping Within cells, small molecules such as glucose rely on diffusion to reach needed destinations.  Larger structures, like vesicles and organelles, need directed transport to

Subhorn Khonthapagdee (UF Mathematics)

368 Little Hall

Models of crowding effect on phytoplankton competition for nitrogen In the previous study, we consider a chemostat model of phytoplankton competing for nitrogen taking into account effects of both intra-

Stefan Gerber (UF Soil and Water Sciences)

368 Little Hall

Reflections on the use of models to study global environmental change The work of my lab revolves around the mathematical modeling to understand interactions between major elements that cycle between