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manual: update broken URLs (#3742)
* manual: update broken URLs Replace www4.ncsu.edu with fatra.cnr.ncsu.edu. * fix broken umlauts
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AUTHORS

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GRASS Development Team
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c/o Markus Neteler
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mundialis GmbH & Co. KG
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Kölnstrasse 99
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Koelnstrasse 99
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53111 Bonn, Germany
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neteler AT osgeo.org
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COPYING

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@@ -32,7 +32,7 @@ GRASS Development Team at the following address:
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GRASS Development Team
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c/o Markus Neteler
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mundialis GmbH & Co. KG
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Kölnstrasse 99
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Koelnstrasse 99
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53111 Bonn, Germany
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neteler AT osgeo.org
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raster/r.carve/README

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http://www4.ncsu.edu/~hmitaso/gmslab/reports/cerl99/rep99.html
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http://fatra.cnr.ncsu.edu/~hmitaso/gmslab/reports/cerl99/rep99.html
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Terrain modeling and Soil Erosion Simulations for Fort Hood and Fort Polk
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test areas
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@@ -21,7 +21,7 @@ Helena Mitasova, Lubos Mitas, William M. Brown, Douglas M. Johnston
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r.carve does not create a depressionless DEM because many depressions are in
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flat areas and not in the streams.
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http://www4.ncsu.edu/~hmitaso/gmslab/reports/cerl99/demstr.gif
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http://fatra.cnr.ncsu.edu/~hmitaso/gmslab/reports/cerl99/demstr.gif
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The program will take the vector stream data, transform them to raster, and
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subtracts a defaultdepth + additionaldepth from the DEM. If the given

raster/r.carve/r.carve.html

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@@ -118,7 +118,7 @@ <h2>KNOWN ISSUES</h2>
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<h2>REFERENCES</h2>
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<a href="http://www4.ncsu.edu/~hmitaso/gmslab/reports/cerl99/rep99.html">Terrain
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<a href="http://fatra.cnr.ncsu.edu/~hmitaso/gmslab/reports/cerl99/rep99.html">Terrain
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modeling and Soil Erosion Simulations for Fort Hood and Fort Polk test
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areas</a>, by Helena Mitasova, Lubos Mitas, William M. Brown, Douglas
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M. Johnston, GMSL (Report for CERL 1999)

raster/r.flow/r.flow.html

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@@ -2,9 +2,9 @@ <h2>DESCRIPTION</h2>
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<em>r.flow</em> generates flowlines using a combined raster-vector
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approach
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(see <a href="http://www4.ncsu.edu/~hmitaso/gmslab/papers/hmg.rev1.ps">Mitasova
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(see <a href="http://fatra.cnr.ncsu.edu/~hmitaso/gmslab/papers/hmg.rev1.ps">Mitasova
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and Hofierka 1993</a>
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and <a href="http://www4.ncsu.edu/~hmitaso/gmslab/papers/ijgis.html">Mitasova
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and <a href="http://fatra.cnr.ncsu.edu/~hmitaso/gmslab/papers/ijgis.html">Mitasova
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et al. 1995</a>) from an input <b>elevation</b> raster map (integer or
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floating point), and optionally an input <b>aspect</b> raster map
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and/or an input <b>barrier</b> raster map.
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<ul>
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<li>Mitasova, H., L. Mitas, 1993, Interpolation by regularized spline with
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tension : I. Theory and implementation. Mathematical Geology 25, p. 641-655.
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(<a href="http://www4.ncsu.edu/~hmitaso/gmslab/papers/lmg.rev1.ps">online</a>)
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(<a href="http://fatra.cnr.ncsu.edu/~hmitaso/gmslab/papers/lmg.rev1.ps">online</a>)
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<li>Mitasova and Hofierka 1993 : Interpolation by Regularized Spline with
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Tension: II. Application to Terrain Modeling and Surface Geometry Analysis.
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Mathematical Geology 25(6), 657-669
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(<a href="http://www4.ncsu.edu/~hmitaso/gmslab/papers/hmg.rev1.ps">online</a>).
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(<a href="http://fatra.cnr.ncsu.edu/~hmitaso/gmslab/papers/hmg.rev1.ps">online</a>).
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<li>Mitasova, H., Mitas, L., Brown, W.M., Gerdes, D.P., Kosinovsky, I.,
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Baker, T., 1995: Modeling spatially and temporally distributed phenomena:
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<i>The version of the program (adapted for GRASS 5.0)</i>:
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Joshua Caplan, Mark Ruesink, Helena Mitasova, University of Illinois
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at Urbana-Champaign with support from USA CERL.
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<a href="http://www4.ncsu.edu/~hmitaso/gmslab/">GMSL/University of Illinois
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<a href="http://fatra.cnr.ncsu.edu/~hmitaso/gmslab/">GMSL/University of Illinois
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at Urbana-Champaign</a>

raster/r.sim/r.sim.sediment/r.sim.sediment.html

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<h2>REFERENCES</h2>
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<a href="http://www4.ncsu.edu/~hmitaso/gmslab/papers/II.6.8_Mitasova_044.pdf">
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<a href="http://fatra.cnr.ncsu.edu/~hmitaso/gmslab/papers/II.6.8_Mitasova_044.pdf">
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Mitasova, H., Thaxton, C., Hofierka, J., McLaughlin, R., Moore, A., Mitas L., 2004,</a>
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Path sampling method for modeling overland water flow, sediment transport
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and short term terrain evolution in Open Source GIS.
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In: C.T. Miller, M.W. Farthing, V.G. Gray, G.F. Pinder eds.,
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Proceedings of the XVth International Conference on Computational Methods in Water
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Resources (CMWR XV), June 13-17 2004, Chapel Hill, NC, USA, Elsevier, pp. 1479-1490.
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<p>
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<a href="http://www4.ncsu.edu/~hmitaso/gmslab/gisc00/duality.html">
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<a href="http://fatra.cnr.ncsu.edu/~hmitaso/gmslab/gisc00/duality.html">
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Mitasova H, Mitas, L., 2000, Modeling spatial processes in multiscale framework:
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exploring duality between particles and fields, </a>
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plenary talk at GIScience2000 conference, Savannah, GA.
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<p>
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Mitas, L., and Mitasova, H., 1998, Distributed soil erosion simulation
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for effective erosion prevention. Water Resources Research, 34(3), 505-516.
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<p>
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<a href="http://www4.ncsu.edu/~hmitaso/gmslab/papers/LLEmiterev1.pdf">
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<a href="http://fatra.cnr.ncsu.edu/~hmitaso/gmslab/papers/LLEmiterev1.pdf">
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Mitasova, H., Mitas, L., 2001, Multiscale soil erosion simulations for land use management, </a>
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In: Landscape erosion and landscape evolution modeling, Harmon R. and Doe W. eds.,
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Kluwer Academic/Plenum Publishers, pp. 321-347.

raster/r.terraflow/r.terraflow.html

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<dt>Porting to GRASS GIS, 2002:
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<dd> <a href="http://www.daimi.au.dk/~large/">Lars Arge</a>,
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<a href="http://www4.ncsu.edu/~hmitaso/index.html">Helena Mitasova,</a>
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<a href="http://fatra.cnr.ncsu.edu/~hmitaso/index.html">Helena Mitasova,</a>
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<a href="http://www.bowdoin.edu/~ltoma/">Laura Toma</a>.
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<dt>Contact: <a href="mailto:[email protected] "> Laura Toma</a></dt>

raster/r.watershed/front/r.watershed.html

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@@ -526,8 +526,8 @@ <h2>REFERENCES</h2>
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<i>GIS-based Stream Network Analysis for The Chagres River Basin,
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Republic of Panama</i>. <b>The Rio Chagres: A Multidisciplinary Profile of
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a Tropical Watershed</b>, R. Harmon (Ed.), Springer/Kluwer, p.83-95.<br>
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URL: <a href="http://www4.ncsu.edu/~hmitaso/measwork/panama/panama.html">
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http://www4.ncsu.edu/~hmitaso/measwork/panama/panama.html</a>
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URL: <a href="http://fatra.cnr.ncsu.edu/~hmitaso/measwork/panama/panama.html">
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http://fatra.cnr.ncsu.edu/~hmitaso/measwork/panama/panama.html</a>
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<li>McCool et al. (1987). <i>Revised Slope Steepness Factor for the Universal
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Soil Loss Equation</i>, <b>Transactions of the ASAE</b> Vol 30(5).

scripts/r.fillnulls/r.fillnulls.html

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GIS</i>, 9 (4), special issue on Integrating GIS and Environmental modeling,
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433-446.
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<li><a href="http://www4.ncsu.edu/~hmitaso/gmslab/papers/lmg.rev1.ps">Mitasova H.
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<li><a href="http://fatra.cnr.ncsu.edu/~hmitaso/gmslab/papers/lmg.rev1.ps">Mitasova H.
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and Mitas L. 1993</a>: Interpolation by Regularized Spline with Tension: I.
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Theory and Implementation, <i>Mathematical Geology</i> 25, 641-655.
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<li><a href="http://www4.ncsu.edu/~hmitaso/gmslab/papers/hmg.rev1.ps">Mitasova H.
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<li><a href="http://fatra.cnr.ncsu.edu/~hmitaso/gmslab/papers/hmg.rev1.ps">Mitasova H.
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and Hofierka L. 1993</a>: Interpolation by Regularized Spline with Tension:
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II. Application to Terrain Modeling and Surface Geometry Analysis,
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<i>Mathematical Geology</i> 25, 657-667.

vector/v.surf.rst/v.surf.rst.html

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function so that the important relationships between these parameters
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are preserved. The equations for computation of these parameters and
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their interpretation is described in
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<a href="http://www4.ncsu.edu/~hmitaso/gmslab/papers/hmg.rev1.ps">Mitasova and Hofierka, 1993</a>
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<a href="http://fatra.cnr.ncsu.edu/~hmitaso/gmslab/papers/hmg.rev1.ps">Mitasova and Hofierka, 1993</a>
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or Neteler and Mitasova, 2004).
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Slopes and aspect are computed in degrees (0-90 and 1-360 respectively).
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The aspect raster map has value 0 assigned to flat areas (with slope less
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<h2>REFERENCES</h2>
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<ul>
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<li><a href="http://www4.ncsu.edu/~hmitaso/gmslab/papers/IEEEGRSL2005.pdf">
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<li><a href="http://fatra.cnr.ncsu.edu/~hmitaso/gmslab/papers/IEEEGRSL2005.pdf">
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Mitasova, H., Mitas, L. and Harmon, R.S., 2005,</a>
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Simultaneous spline approximation and topographic analysis for
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lidar elevation data in open source GIS, IEEE GRSL 2 (4), 375- 379.</li>
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<li>Hofierka, J., 2005, Interpolation of Radioactivity Data Using Regularized Spline with Tension. Applied GIS, Vol. 1, No. 2, pp. 16-01 to 16-13. DOI: 10.2104/ag050016</li>
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<li><a href="http://www4.ncsu.edu/~hmitaso/gmslab/papers/TGIS2002_Hofierka_et_al.pdf">
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<li><a href="http://fatra.cnr.ncsu.edu/~hmitaso/gmslab/papers/TGIS2002_Hofierka_et_al.pdf">
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Hofierka J., Parajka J., Mitasova H., Mitas L., 2002,</a> Multivariate
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Interpolation of Precipitation Using Regularized Spline with Tension.
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Transactions in GIS 6(2), pp. 135-150.</li>
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<li>H. Mitasova, L. Mitas, B.M. Brown, D.P. Gerdes, I. Kosinovsky, 1995, Modeling
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spatially and temporally distributed phenomena: New methods and tools for
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GRASS GIS. International Journal of GIS, 9 (4), special issue on Integrating
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GIS and Environmental modeling, 433-446.</li>
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<li><a href="http://www4.ncsu.edu/~hmitaso/gmslab/papers/MG-I-93.pdf">
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<li><a href="http://fatra.cnr.ncsu.edu/~hmitaso/gmslab/papers/MG-I-93.pdf">
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Mitasova, H. and Mitas, L., 1993</a>:
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Interpolation by Regularized Spline with Tension:
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I. Theory and Implementation, Mathematical Geology ,25, 641-655.</li>
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<li><a href="http://www4.ncsu.edu/~hmitaso/gmslab/papers/MG-II-93.pdf">
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<li><a href="http://fatra.cnr.ncsu.edu/~hmitaso/gmslab/papers/MG-II-93.pdf">
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Mitasova, H. and Hofierka, J., 1993</a>: Interpolation
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by Regularized Spline with Tension: II. Application to Terrain Modeling
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and Surface Geometry Analysis, Mathematical Geology 25, 657-667.</li>
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<li><a href="http://www4.ncsu.edu/~hmitaso/gmslab/papers/CMA1988.pdf">
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<li><a href="http://fatra.cnr.ncsu.edu/~hmitaso/gmslab/papers/CMA1988.pdf">
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Mitas, L., and Mitasova H., 1988, </a> General variational approach to the approximation
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problem, Computers and Mathematics with Applications, v.16, p. 983-992.</li>
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<li><a href="http://www.grassbook.org">
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<p>
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For examples of applications see
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<a href="http://www4.ncsu.edu/~hmitaso/gmslab/">GRASS4 implementation</a> and
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<a href="http://www4.ncsu.edu/~hmitaso/">GRASS5 and GRASS6 implementation</a>.
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<a href="http://fatra.cnr.ncsu.edu/~hmitaso/gmslab/">GRASS4 implementation</a> and
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<a href="http://fatra.cnr.ncsu.edu/~hmitaso/">GRASS5 and GRASS6 implementation</a>.
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<h2>AUTHORS</h2>
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vector/v.vol.rst/v.vol.rst.html

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Interpolation of Precipitation Using Regularized Spline with Tension.
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Transactions in
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GIS&nbsp; 6, pp. 135-150.
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<p><a href="http://www4.ncsu.edu/~hmitaso/gmslab/">Mitas, L.,
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<p><a href="http://fatra.cnr.ncsu.edu/~hmitaso/gmslab/">Mitas, L.,
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Mitasova, H.</a>, 1999, Spatial Interpolation. In: P.Longley, M.F.
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Goodchild, D.J. Maguire, D.W.Rhind (Eds.), Geographical Information
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Systems: Principles, Techniques, Management and Applications, Wiley,
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pp.481-492
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<p>Mitas L., Brown W. M., Mitasova H., 1997,
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<a href="http://www4.ncsu.edu/~hmitaso/gmslab/lcgfin/cg-mitas.html">Role
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<a href="http://fatra.cnr.ncsu.edu/~hmitaso/gmslab/lcgfin/cg-mitas.html">Role
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of dynamic cartography in simulations of landscape processes based on
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multi-variate fields.</a> Computers and Geosciences, Vol. 23, No. 4,
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pp. 437-446 (includes CDROM and WWW: www.elsevier.nl/locate/cgvis)
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special issue on Integrating GIS and Environmental modeling, 433-446.
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<p> Mitasova, H., Mitas, L., Brown, B., Kosinovsky, I., Baker, T.,
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Gerdes, D. (1994):
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<a href="http://www4.ncsu.edu/~hmitaso/gmslab/viz/ches.html">Multidimensional
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<a href="http://fatra.cnr.ncsu.edu/~hmitaso/gmslab/viz/ches.html">Multidimensional
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interpolation and visualization in GRASS GIS</a>
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<p><a href="http://www4.ncsu.edu/~hmitaso/gmslab/papers/lmg.rev1.ps">Mitasova
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<p><a href="http://fatra.cnr.ncsu.edu/~hmitaso/gmslab/papers/lmg.rev1.ps">Mitasova
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H. and Mitas L. 1993</a>: Interpolation by Regularized Spline with
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Tension: I. Theory and Implementation, <i>Mathematical Geology</i> 25,
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641-655.
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<p><a href="http://www4.ncsu.edu/~hmitaso/gmslab/papers/hmg.rev1.ps">Mitasova
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<p><a href="http://fatra.cnr.ncsu.edu/~hmitaso/gmslab/papers/hmg.rev1.ps">Mitasova
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H. and Hofierka J. 1993</a>: Interpolation by Regularized Spline with
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Tension: II. Application to Terrain Modeling and Surface Geometry
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Analysis, <i>Mathematical Geology</i> 25, 657-667.

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