1 | \begin{thebibliography}{38} |
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4 | \providecommand{\urlprefix}{URL } |
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5 | \expandafter\ifx\csname urlstyle\endcsname\relax |
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6 | \providecommand{\doi}[1]{doi:\discretionary{}{}{}#1}\else |
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7 | \providecommand{\doi}{doi:\discretionary{}{}{}\begingroup |
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8 | \urlstyle{rm}\Url}\fi |
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9 | \providecommand{\eprint}[2][]{\url{#2}} |
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10 | |
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11 | \bibitem[{Assur(1958)}]{Assur58} |
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14 | |
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20 | |
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25 | |
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27 | Bitz, C.~M. and W.~H. Lipscomb, 1999: An energy-conserving thermodynamic model |
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28 | of sea ice. \textit{Journal of Geophysical Research}, \textbf{104}, |
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29 | 15,669--15,677. |
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30 | |
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36 | |
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47 | |
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49 | Flato, G.~M. and W.~D. Hibler, 1995: Ridging and strength in modeling the |
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50 | thickness distribution of arctic sea ice. \textit{Journal of Geophysical |
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56 | of high-resolution sea ice models on the basis of statistical and scaling |
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57 | properties of arctic sea ice drift and deformation. \textit{Journal of |
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59 | |
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85 | New Hampshire. |
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93 | |
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104 | Lipscomb, W.~H., 2001: Remapping the thickness distribution in sea ice models. |
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106 | |
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110 | strength, and stability in high-resolution sea ice models. \textit{Journal of |
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112 | |
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117 | |
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129 | thermodynamic model of sea ice. \textit{Journal of Geophysical Research}, |
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201 | |
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202 | \end{thebibliography} |
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