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       <h1>MITgcm</h1> | 
       <h1>MITgcm</h1> | 
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     <p> | 
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     The MITgcm (MIT General Circulation Model) is a numerical model for studying the | 
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     ocean and atmosphere. It is capable of simulating these fluids at a wide range of | 
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     scales and can resolve many different processes. It has a non-hydrostatic capability | 
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     (Marshall et al., JGR 1997a & b) and uses the finite volume method to accurately | 
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     represent the bottom boundary position (Adcroft et al., MWR 1998). <br /> | 
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         <p> | 
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         The MITgcm (MIT General Circulation Model) is a numerical | 
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         model for studying the ocean and atmosphere. It is capable of | 
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         simulating these fluids at a wide range of scales and can | 
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         resolve many different processes. It has a non-hydrostatic | 
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         capability (Marshall et al., JGR 1997a & b) and uses the | 
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         finite volume method to accurately represent the bottom | 
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         boundary position (Adcroft et al., MWR 1998). <br /> | 
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         </p> | 
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         <p> | 
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         <b>For further information, <a | 
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         href="http://paoc.mit.edu/cmi/">please see MIT's Climate | 
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         Modeling Initiative (CMI)</a> which introduces the MITgcm | 
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         model, its applications, and the development team.</b> | 
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         </p> | 
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       <h2><a href="sealion">Release1_patch8 of MITgcm</a> is <em>ready</em>! | 
       <h2><a href="sealion">Release1_patch8 of MITgcm</a> is <em>ready</em>! | 
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       (12-Nov-2002)</h2> | 
       (12-Nov-2002)</h2> | 
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     </div> | 
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       <table align="center" border="2" width="95%" summary=""> | 
       <table align="center" border="2" width="95%" summary=""> |