[CHNOSZ-commits] r631 - in pkg/CHNOSZ: . inst man
noreply at r-forge.r-project.org
noreply at r-forge.r-project.org
Wed Nov 25 21:49:33 CET 2020
Author: jedick
Date: 2020-11-25 21:49:32 +0100 (Wed, 25 Nov 2020)
New Revision: 631
Modified:
pkg/CHNOSZ/DESCRIPTION
pkg/CHNOSZ/inst/NEWS.Rd
pkg/CHNOSZ/man/berman.Rd
Log:
Correct units for VPrTr in ?berman
Modified: pkg/CHNOSZ/DESCRIPTION
===================================================================
--- pkg/CHNOSZ/DESCRIPTION 2020-11-13 05:14:57 UTC (rev 630)
+++ pkg/CHNOSZ/DESCRIPTION 2020-11-25 20:49:32 UTC (rev 631)
@@ -1,6 +1,6 @@
-Date: 2020-11-13
+Date: 2020-11-26
Package: CHNOSZ
-Version: 1.4.0-1
+Version: 1.4.0-2
Title: Thermodynamic Calculations and Diagrams for Geochemistry
Authors at R: c(
person("Jeffrey", "Dick", , "j3ffdick at gmail.com", role = c("aut", "cre"),
Modified: pkg/CHNOSZ/inst/NEWS.Rd
===================================================================
--- pkg/CHNOSZ/inst/NEWS.Rd 2020-11-13 05:14:57 UTC (rev 630)
+++ pkg/CHNOSZ/inst/NEWS.Rd 2020-11-25 20:49:32 UTC (rev 631)
@@ -55,7 +55,7 @@
\code{diagram()} causes the main diagram to be overlaid on the fields of
water stability (white) and instability (gray). Change this to
\code{TRUE} to obtain the previous default of masking all parts of the
- diagram oustide of the water stability field.
+ diagram outside of the water stability field.
}
}
Modified: pkg/CHNOSZ/man/berman.Rd
===================================================================
--- pkg/CHNOSZ/man/berman.Rd 2020-11-13 05:14:57 UTC (rev 630)
+++ pkg/CHNOSZ/man/berman.Rd 2020-11-25 20:49:32 UTC (rev 631)
@@ -47,7 +47,7 @@
\code{GfPrTr} \tab standard Gibbs energy at 298.15 K and 1 bar (J mol\S{-1}) (Benson-Helgeson convention)\cr
\code{HfPrTr} \tab standard enthalpy at 298.15 K and 1 bar (J mol\S{-1})\cr
\code{SPrTr} \tab standard entropy at 298.15 K and 1 bar (J mol\S{-1} K\S{-1})\cr
- \code{VPrTr} \tab standard volume at 298.15 K and 1 bar (J mol\S{-1})\cr
+ \code{VPrTr} \tab standard volume at 298.15 K and 1 bar (J bar\S{-1}) [1 J bar\S{-1} = 10 cm\S{3}]\cr
\code{k0} ... \code{k6} \tab k0 (J mol\S{-1} K\S{-1}) to k6 \cr
\code{v1} \tab v1 (K\S{-1}) * 10\S{5} \cr
\code{v2} \tab v2 (K\S{-2}) * 10\S{5} \cr
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