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author | Johannes Ranke <jranke@uni-bremen.de> | 2015-12-22 19:32:54 +0100 |
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committer | Johannes Ranke <jranke@uni-bremen.de> | 2015-12-22 19:32:54 +0100 |
commit | 3a579d87820ccbec514f1be5eb090e874fd87eec (patch) | |
tree | fdc726d4938dc98fc741a38435372da22dc9e956 /pkg/inst/web/PEC_sw_sed.html | |
parent | 9851a97ec915ddbfc8357f1a7e2cabae56c89f7d (diff) |
EFSA 2015 tier 1 PEC soil, clean up, add static docs
Diffstat (limited to 'pkg/inst/web/PEC_sw_sed.html')
-rw-r--r-- | pkg/inst/web/PEC_sw_sed.html | 127 |
1 files changed, 127 insertions, 0 deletions
diff --git a/pkg/inst/web/PEC_sw_sed.html b/pkg/inst/web/PEC_sw_sed.html new file mode 100644 index 0000000..231c48f --- /dev/null +++ b/pkg/inst/web/PEC_sw_sed.html @@ -0,0 +1,127 @@ +<!DOCTYPE html> +<html lang="en"> + <head> + <meta charset="utf-8"> +<title>PEC_sw_sed. pfm 0.3-1</title> +<meta name="viewport" content="width=device-width, initial-scale=1.0"> +<meta name="author" content=" +Johannes Ranke +"> + +<link href="css/bootstrap.css" rel="stylesheet"> +<link href="css/bootstrap-responsive.css" rel="stylesheet"> +<link href="css/highlight.css" rel="stylesheet"> +<link href="css/staticdocs.css" rel="stylesheet"> + +<!--[if lt IE 9]> + <script src="http://html5shim.googlecode.com/svn/trunk/html5.js"></script> +<![endif]--> + +<script type="text/x-mathjax-config"> + MathJax.Hub.Config({ + tex2jax: { + inlineMath: [ ['$','$'], ["\\(","\\)"] ], + processEscapes: true + } + }); +</script> +<script type="text/javascript" + src="http://cdn.mathjax.org/mathjax/latest/MathJax.js?config=TeX-AMS-MML_HTMLorMML"> +</script> + </head> + + <body> + <div class="navbar"> + <div class="navbar-inner"> + <div class="container"> + <a class="brand" href="#">pfm 0.3-1</a> + <div class="nav"> + <ul class="nav"> + <li><a href="index.html"><i class="icon-home icon-white"></i> Index</a></li> + </ul> + </div> + </div> + </div> +</div> + + <div class="container"> + <header> + + </header> + + <h1>Calculate predicted environmental concentrations in sediment from surface +water concentrations</h1> + +<div class="row"> + <div class="span8"> + <h2>Usage</h2> + <pre><div>PEC_sw_sed(PEC_sw, percentage = 100, method = "percentage", sediment_depth = 5, water_depth = 30, sediment_density = 1.3, PEC_sed_units = c("µg/kg", "mg/kg"))</div></pre> + + <h2>Arguments</h2> + <dl> + <dt>PEC_sw</dt> + <dd>Numeric vector or matrix of surface water concentrations in µg/L for +which the corresponding sediment concentration is to be estimated</dd> + <dt>percentage</dt> + <dd>The percentage in sediment, used for the percentage method</dd> + <dt>method</dt> + <dd>The method used for the calculation</dd> + <dt>sediment_depth</dt> + <dd>Depth of the sediment layer</dd> + <dt>water_depth</dt> + <dd>Depth of the water body in cm</dd> + <dt>sediment_density</dt> + <dd>The density of the sediment in L/kg (equivalent to +g/cm3)</dd> + <dt>PEC_sed_units</dt> + <dd>The units of the estimated sediment PEC value</dd> + </dl> + + <div class="Value"> + <h2>Value</h2> + + <p><dl> +The predicted concentration in sediment +</dl></p> + + </div> + + <div class="Description"> + <h2>Description</h2> + + <p>The method 'percentage' is equivalent to what is used in the CRD spreadsheet +PEC calculator</p> + + </div> + + <h2 id="examples">Examples</h2> + <pre class="examples"><div class='input'>PEC_sw_sed(PEC_sw_drift(100, distances = 1), percentage = 50) +</div> +<div class='output'> 1 m +2.130769 +</div></pre> + </div> + <div class="span4"> + <!-- <ul> + <li>PEC_sw_sed</li> + </ul> + <ul> + + </ul> --> + + + <h2>Author</h2> + +Johannes Ranke + + + </div> +</div> + + <footer> + <p class="pull-right"><a href="#">Back to top</a></p> +<p>Built by <a href="https://github.com/hadley/staticdocs">staticdocs</a>. Styled with <a href="http://twitter.github.com/bootstrap">bootstrap</a>.</p> + </footer> + </div> + </body> +</html>
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