These files comprise a discrete time mass balance process based model written in the software package, R (version 3.2). The purpose of the model is to simulate the fates of organic carbon in aquatic ecosystems. The code requires no input or output data. There are two files, SimpleOCModel.R and SimpleOCModelFunctions.R. The former is the entry point for running the model and the latter contains the metabolism functions. The model simulates aquatic organic carbon cycling across a range of hydrologic residence times and allows for a range of hydrologic loads, two different respiration models, and two different burial models
A new R software package, RAC, is presented. RAC allows to simulate the rearing cycle of 4 species, ...
Detailed descriptions for each of the files can be found in Readme.txt. The R Markdown, data, and sc...
A new R software package, RAC, is presented. RAC allows to simulate the rearing cycle of 4 species, ...
<p>These files comprise a discrete time mass balance process based model written in the software pac...
These files comprise a discrete time mass balance process based model written in the software packag...
The R code required to recreate the model analyses for the manuscript: "Constraining carbon and nutr...
This is a zipped file that includes the model code, written in R, as well as the input and output da...
The concentrations of many natural compounds are altered by chemical and biological transformations,...
This R code defines and runs the abundance and integrated models for estimating the feeding rates of...
R code to simulate the three stochastic ecological models described in the associated paper. Contact...
This file contains the R Source Code of the most complex model (as described in Supplementary Text S...
Beyond its statistical usage, R is a noteworthy programming environment for C and Fortran code. We d...
R code for marine food web analyses illustrating the implementation of instrumental variable methods...
Metabolism is a fundamental process in ecosystems that crosses multiple scales of organization from ...
These are the source codes of the models used in the paper Large Eutrophic Estuaries Becoming Sinks ...
A new R software package, RAC, is presented. RAC allows to simulate the rearing cycle of 4 species, ...
Detailed descriptions for each of the files can be found in Readme.txt. The R Markdown, data, and sc...
A new R software package, RAC, is presented. RAC allows to simulate the rearing cycle of 4 species, ...
<p>These files comprise a discrete time mass balance process based model written in the software pac...
These files comprise a discrete time mass balance process based model written in the software packag...
The R code required to recreate the model analyses for the manuscript: "Constraining carbon and nutr...
This is a zipped file that includes the model code, written in R, as well as the input and output da...
The concentrations of many natural compounds are altered by chemical and biological transformations,...
This R code defines and runs the abundance and integrated models for estimating the feeding rates of...
R code to simulate the three stochastic ecological models described in the associated paper. Contact...
This file contains the R Source Code of the most complex model (as described in Supplementary Text S...
Beyond its statistical usage, R is a noteworthy programming environment for C and Fortran code. We d...
R code for marine food web analyses illustrating the implementation of instrumental variable methods...
Metabolism is a fundamental process in ecosystems that crosses multiple scales of organization from ...
These are the source codes of the models used in the paper Large Eutrophic Estuaries Becoming Sinks ...
A new R software package, RAC, is presented. RAC allows to simulate the rearing cycle of 4 species, ...
Detailed descriptions for each of the files can be found in Readme.txt. The R Markdown, data, and sc...
A new R software package, RAC, is presented. RAC allows to simulate the rearing cycle of 4 species, ...