Krause, J.R.; Gannon, M.E.; Oczkowski, A.J.; Schwartz, M.J.; Champlin, L.K.; Steinmann, D.; Maxwell-Doyle, M.; Pirl, E.; Allen, V.; Burke Watson, E.
Tidal Flushing Rather Than Non-Point Source Nitrogen Pollution Drives Nutrient Dynamics in A Putatively Eutrophic Estuary. Water 2023, 15, 15.
https://doi.org/10.3390/w15010015
AMA Style
Krause JR, Gannon ME, Oczkowski AJ, Schwartz MJ, Champlin LK, Steinmann D, Maxwell-Doyle M, Pirl E, Allen V, Burke Watson E.
Tidal Flushing Rather Than Non-Point Source Nitrogen Pollution Drives Nutrient Dynamics in A Putatively Eutrophic Estuary. Water. 2023; 15(1):15.
https://doi.org/10.3390/w15010015
Chicago/Turabian Style
Krause, Johannes R., Michelle E. Gannon, Autumn J. Oczkowski, Morgan J. Schwartz, Lena K. Champlin, David Steinmann, Martha Maxwell-Doyle, Emily Pirl, Victoria Allen, and Elizabeth Burke Watson.
2023. "Tidal Flushing Rather Than Non-Point Source Nitrogen Pollution Drives Nutrient Dynamics in A Putatively Eutrophic Estuary" Water 15, no. 1: 15.
https://doi.org/10.3390/w15010015
APA Style
Krause, J. R., Gannon, M. E., Oczkowski, A. J., Schwartz, M. J., Champlin, L. K., Steinmann, D., Maxwell-Doyle, M., Pirl, E., Allen, V., & Burke Watson, E.
(2023). Tidal Flushing Rather Than Non-Point Source Nitrogen Pollution Drives Nutrient Dynamics in A Putatively Eutrophic Estuary. Water, 15(1), 15.
https://doi.org/10.3390/w15010015