mailr20952 - /branches/relax_disp/docs/latex/dispersion.tex


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Posted by edward on September 09, 2013 - 19:41:
Author: bugman
Date: Mon Sep  9 19:41:52 2013
New Revision: 20952

URL: http://svn.gna.org/viewcvs/relax?rev=20952&view=rev
Log:
Added the k_AB and k_BA conversion equations to the dispersion parameter 
table in the user manual.


Modified:
    branches/relax_disp/docs/latex/dispersion.tex

Modified: branches/relax_disp/docs/latex/dispersion.tex
URL: 
http://svn.gna.org/viewcvs/relax/branches/relax_disp/docs/latex/dispersion.tex?rev=20952&r1=20951&r2=20952&view=diff
==============================================================================
--- branches/relax_disp/docs/latex/dispersion.tex (original)
+++ branches/relax_disp/docs/latex/dispersion.tex Mon Sep  9 19:41:52 2013
@@ -149,8 +149,8 @@
 $\omegae$          & $\sqrt(\aveoffset^2 + \omegaone^2)$  & Effective field 
in the rotating frame                                   & rad.s$^{-1}$ \\
 $\omegarf$         & -                              & Spin-lock offset, i.e. 
the frequency of the rf field                          & rad.s$^{-1}$ \\
 $\theta$           & $\arctan \left( \frac{\omegaone}{\aveoffset} \right)$  
& Rotating frame tilt angle                             & rad \\
-$\kAB$             &                                & The forward exchange 
rate from state A to state B                             & rad.s$^{-1}$ \\
-$\kBA$             &                                & The reverse exchange 
rate from state B to state A                             & rad.s$^{-1}$ \\
+$\kAB$             & $\pB\kex$                      & The forward exchange 
rate from state A to state B                             & rad.s$^{-1}$ \\
+$\kBA$             & $\pA\kex$                      & The reverse exchange 
rate from state B to state A                             & rad.s$^{-1}$ \\
 $\kex$             & $1 / (2 \tex)$                 & Chemical exchange rate 
constant                                               & rad.s$^{-1}$ \\
 $\kexB$            & $\kAB + \kBA$                  & Chemical exchange rate 
constant between sites A and B                         & rad.s$^{-1}$ \\
 $\kexC$            & $\kAC + \kCA$                  & Chemical exchange rate 
constant between sites A and C                         & rad.s$^{-1}$ \\




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