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<head><title>tensor(Module,Module) -- tensor product</title>
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<div><h1>tensor(Module,Module) -- tensor product</h1>
<div class="single"><h2>Synopsis</h2>
<ul><li><div class="list"><dl class="element"><dt class="heading">Usage: </dt><dd class="value"><div><tt>tensor(M,N)</tt></div>
</dd></dl>
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</li>
<li><span>Function: <a href="_tensor.html" title="tensor product">tensor</a></span></li>
<li><div class="single">Inputs:<ul><li><span><tt>M</tt>, <span>a <a href="___Module.html">module</a></span>,  or <span>a <a href="___Coherent__Sheaf.html">coherent sheaf</a></span></span></li>
<li><span><tt>N</tt>, <span>a <a href="___Module.html">module</a></span>,  or <span>a <a href="___Coherent__Sheaf.html">coherent sheaf</a></span>, the same class as <tt>M</tt></span></li>
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<li><div class="single">Outputs:<ul><li><span><span>a <a href="___Module.html">module</a></span>, <span>a <a href="___Module.html">module</a></span> or <span>a <a href="___Coherent__Sheaf.html">coherent sheaf</a></span>, the same class as both <tt>M</tt> and <tt>N</tt></span></li>
</ul>
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</li>
<li><div class="single"><a href="_using_spfunctions_spwith_spoptional_spinputs.html">Optional inputs</a>:<ul><li><span><a href="_tensor_lp__Ring_cm__Ring_rp.html">DegreeLift => ...</a>,  -- tensor product</span></li>
<li><span><a href="_tensor_lp__Ring_cm__Ring_rp.html">DegreeMap => ...</a>,  -- tensor product</span></li>
<li><span><a href="_tensor_lp__Ring_cm__Ring_rp.html">DegreeRank => ...</a>,  -- tensor product</span></li>
<li><span><a href="_tensor_lp__Ring_cm__Ring_rp.html">Degrees => ...</a>,  -- tensor product</span></li>
<li><span><a href="_tensor_lp__Ring_cm__Ring_rp.html">Global => ...</a>,  -- tensor product</span></li>
<li><span><a href="_tensor_lp__Ring_cm__Ring_rp.html">Heft => ...</a>,  -- tensor product</span></li>
<li><span><a href="_tensor_lp__Ring_cm__Ring_rp.html">Inverses => ...</a>,  -- tensor product</span></li>
<li><span><a href="_tensor_lp__Ring_cm__Ring_rp.html">Join => ...</a>,  -- tensor product</span></li>
<li><span><a href="_tensor_lp__Ring_cm__Ring_rp.html">Local => ...</a>,  -- tensor product</span></li>
<li><span><a href="_tensor_lp__Ring_cm__Ring_rp.html">MonomialOrder => ...</a>,  -- tensor product</span></li>
<li><span><a href="_tensor_lp__Ring_cm__Ring_rp.html">MonomialSize => ...</a>,  -- tensor product</span></li>
<li><span><a href="_tensor_lp__Ring_cm__Ring_rp.html">SkewCommutative => ...</a>,  -- tensor product</span></li>
<li><span><a href="_tensor_lp__Ring_cm__Ring_rp.html">VariableBaseName => ...</a>,  -- tensor product</span></li>
<li><span><a href="_tensor_lp__Ring_cm__Ring_rp.html">Variables => ...</a>,  -- tensor product</span></li>
<li><span><a href="_tensor_lp__Ring_cm__Ring_rp.html">Weights => ...</a>,  -- tensor product</span></li>
<li><span><a href="_tensor_lp__Ring_cm__Ring_rp.html">WeylAlgebra => ...</a>,  -- tensor product</span></li>
</ul>
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<div class="single"><h2>Description</h2>
<div><p>This is a synonym of <tt>M ** N</tt>.  None of the options are used in this case.</p>
<p>For examples, see <a href="___Module_sp_st_st_sp__Module.html" title="tensor product">Module ** Module</a>, and <a href="___Coherent__Sheaf_sp_st_st_sp__Coherent__Sheaf.html" title="tensor produce of coherent sheaves">CoherentSheaf ** CoherentSheaf</a>.</p>
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