adamsgaard.dk

my academic webpage
git clone git://src.adamsgaard.dk/adamsgaard.dk
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commit 457aad5b5af1079d158f12d5cdf8544da863c408
parent 572e836c0267d79d3bc423977b569698f6fcca4d
Author: Anders Damsgaard <anders@adamsgaard.dk>
Date:   Tue, 25 Feb 2020 17:49:13 +0100

Remove non-ascii hyphens

Diffstat:
Mtemplates/research.html/header.html | 12++++++------
1 file changed, 6 insertions(+), 6 deletions(-)

diff --git a/templates/research.html/header.html b/templates/research.html/header.html @@ -60,7 +60,7 @@ M.D. Bateman, D.A. Swift, J.A. Piotrowski, E.J. Rhodes, and <a href="https://doi.org/10.1016/j.geomorph.2018.01.017"> "Can glacial shearing of sediment reset the signal used for luminescence dating?"</a> -Geomorphology, vol. 306, 90–101 +Geomorphology, vol. 306, 90-101 [<a href="papers/Bateman et al 2018 Can glacial shearing of sediment reset the signal used for luminescence dating.pdf">PDF</a>] <br> <br> @@ -72,7 +72,7 @@ M.R. Siegfried, and H.A. Fricker 2017 <a href="https://doi.org/10.1017/jog.2017.71"> "Sediment behavior controls equilibrium width of subglacial channels"</a> -Journal of Glaciology, vol. 63, 1034–1048 +Journal of Glaciology, vol. 63, 1034-1048 [<a href="papers/Damsgaard et al 2017 Sediment behavior controls equilibrium width of subglacial channels.pdf">PDF</a>] <br> <br> @@ -95,7 +95,7 @@ Larsen, J.A. Piotrowski, and M.R. Siegfried 2016 <a href="https://doi.org/10.1002/2016GL071579">"Ice flow dynamics forced by water pressure variations in subglacial granular beds"</a> -Geophysical Research Letters, vol. 43, 12,165–12,173 +Geophysical Research Letters, vol. 43, 12,165-12,173 [<a href="papers/Damsgaard et al 2016 Ice flow dynamics forced by water pressure variations in subglacial granular beds.pdf">PDF</a>, <a href="papers/Damsgaard et al 2016 Ice flow dynamics forced by water pressure variations in subglacial granular beds SI.pdf">SI</a>] <br> @@ -109,7 +109,7 @@ N.K. Larsen, and C.F. Brædstrup <a href="https://doi.org/10.5194/tc-9-2183-2015"> "A new methodology to simulate subglacial deformation of water-saturated granular material"</a> -The Cryosphere, vol. 9, 2183–2200 +The Cryosphere, vol. 9, 2183-2200 [<a href="papers/Damsgaard et al 2015 A new methodology to simulate subglacial deformation of water-saturated granular material.pdf">PDF</a>] <br> <br> @@ -131,7 +131,7 @@ C.F. Brædstrup, <strong>A. Damsgaard</strong>, and D.L. Egholm 2014 <a href="https://doi.org/10.1016/j.cageo.2014.07.019"> "Ice-sheet modelling accelerated by graphics cards"</a> -Computers and Geosciences, vol. 72, 210–220 +Computers and Geosciences, vol. 72, 210-220 <br> <br> </li> @@ -142,7 +142,7 @@ Larsen, and K. Tylmann 2013 <a href="https://doi.org/10.1002/2013JF002830"> "Discrete element modeling of subglacial sediment deformation"</a> -Journal of Geophysical Research: Earth Surface, vol. 118, 2230–2242 +Journal of Geophysical Research: Earth Surface, vol. 118, 2230-2242 [<a href="papers/Damsgaard et al 2013 Discrete element modeling of subglacial sediment deformation.pdf">PDF</a>] </li> </ul>