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Saltmarsh pool and tidal creek morphodynamics: Dynamic equilibrium of northern latitude saltmarshes? Geomorphology. :99-115.. 2014.
Distribution patterns of Melampus bidentatus and their implications on the effects of climate change on salt marsh animal populations. BS. 2015.
N budgets and aquatic uptake in the Ipswich River basin, northeastern Massachusetts.. Water Resources Research. 40:1-12.. 2004.
The effects of salt marsh haying on benthic algal biomass. Biological Bulletin. 201:287-288.. 2001.
Relationships of land use and streamwater solute concentrations in the Ipswich River basin, northeastern Massachusetts.. Water, Air, and Soil Pollution. 161. 2005.
Discontinuities in soil strength contribute to destabilization of nutrient‐enriched creeks. Ecosphere.. 2018.
Improving predictions of salt marsh evolution through better integration of data and models.. Annual Review of Marine Science. 12:389-413.. 2020.
Declining Sediments and Rising Seas: an Unfortunate Convergence for Tidal Wetlands. Estuaries and Coasts.. 2013.
The effects of varying salinity on ammonium exchange in estuarine sediments of the Parker River, Massachusetts.. Estuaries and Coasts. 33:985-1003.. 2010.
Ulva additions alter soil biogeochemistry and negatively impact Spartina alterniflora growth. Marine Ecological Progress Series. 532:59-72.. 2015.
The effects of urbanization on the aboveground carbon storage and tree species composition in the Boston Metropolitan Region. BS:45.. 2013.
An inverse ecosystem model of year-to-year variations with first order approximation to the annual mean fluxes.. Ecological Modeling. 187:369-388.. 2005.
Atlantic coast feeding habits of striped bass: a synthesis of data supporting a comprehensive coast-wide understanding of the trophic biology. Fisheries Management and Ecology. 10:349-360.. 2003.
Macro-scale models of water and nutrient flux to the coastal zone. Estuarine Science: A Synthetic Approach to Research and Practice. :43-80.. 2000.
Drainage basins, river systems, and anthropogenic change: the Chinese example. Asian Change in the Context of Global CHange: Impacts of Natural and Anthropogenic Changes in Asia on Global Biogeochemical Cycles. :210-244.. 1998.
Drivers of Residential Lawn Care in Suburban Massachusetts: A Quantitative and Qualitative Analysis of Four Massachusetts Towns. Urban and Environmental Planning.. 2010.
The ebb and flood of silica: Quantifying dissolved and biogenic silica fluxes from a temperate salt marsh. Estuarine, Coastal and Shelf Science. 95:415-423.. 2011.
Impacts of long-term fertilization on salt marsh tidal creek benthic nutrient and N2 gas fluxes. Marine Ecological Progress Series. 471:11-22.. 2012.
Visualizing the rate at which the accuracy of a land change prediction decays.. Conference proceedings of the meeting of the University Consortium for Geographic Information Science. :29.. 2004.
Intensity Analysis and the Figure of Merit’s components for assessment of a Cellular Automata – Markov simulation model. Ecological Indicators.. 2019.
Differences and implications in biogeochemistry from maximizing entropy production locally versus globally. Earth System Dynamics. 2:69-85.. 2011.
Using Maximum Entropy Production to Describe Microbial Biogeochemistry Over Time and Space in a Meromictic Pond. Frontiers in Environmental Science.. 2018.
Thermodynamics of Marine Biogeochemical Cycles: Lotka Revisited. Annual Review of Marine Science. 8:333-356.. 2016.