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Macaulay2-1.3.1-8.fc15.i686.rpm

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<head><title>resolution -- projective resolution</title>
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<div><h1>resolution -- projective resolution</h1>
<div class="single"><h2>Synopsis</h2>
<ul><li><div class="single"><a href="_using_spfunctions_spwith_spoptional_spinputs.html">Optional inputs</a>:<ul><li><span><a href="_resolution_lp..._cm_sp__Degree__Limit_sp_eq_gt_sp..._rp.html">DegreeLimit => ...</a>,  -- compute only up to this degree</span></li>
<li><span><a href="_resolution_lp..._cm_sp__Hard__Degree__Limit_sp_eq_gt_sp..._rp.html">HardDegreeLimit => ...</a>, </span></li>
<li><span><a href="_resolution_lp..._cm_sp__Length__Limit_sp_eq_gt_sp..._rp.html">LengthLimit => ...</a>,  -- stop when the resolution reaches this length</span></li>
<li><span><a href="_resolution_lp..._cm_sp__Pair__Limit_sp_eq_gt_sp..._rp.html">PairLimit => ...</a>,  -- stop when this number of pairs has been handled</span></li>
<li><span><a href="_resolution_lp..._cm_sp__Sort__Strategy_sp_eq_gt_sp..._rp.html">SortStrategy => ...</a>, </span></li>
<li><span><a href="_resolution_lp..._cm_sp__Stop__Before__Computation_sp_eq_gt_sp..._rp.html">StopBeforeComputation => ...</a>,  -- whether to stop the computation immediately</span></li>
<li><span><a href="_resolution_lp..._cm_sp__Strategy_sp_eq_gt_sp..._rp.html">Strategy => ...</a>, </span></li>
<li><span><a href="_resolution_lp..._cm_sp__Syzygy__Limit_sp_eq_gt_sp..._rp.html">SyzygyLimit => ...</a>,  -- stop when this number of syzygies are obtained</span></li>
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<div class="waystouse"><h2>Ways to use <tt>resolution</tt> :</h2>
<ul><li><span><a href="_resolution_lp__Ideal_rp.html" title="compute a projective resolution of (the quotient ring corresponding to) an ideal">resolution(Ideal)</a> -- compute a projective resolution of (the quotient ring corresponding to) an ideal</span></li>
<li><span>resolution(MonomialIdeal), see <span><a href="_resolution_lp__Ideal_rp.html" title="compute a projective resolution of (the quotient ring corresponding to) an ideal">resolution(Ideal)</a> -- compute a projective resolution of (the quotient ring corresponding to) an ideal</span></span></li>
<li><span><a href="_resolution_lp__Matrix_rp.html" title="given a module map represented by a matrix, produce a comparison map between resolutions of its source and target">resolution(Matrix)</a> -- given a module map represented by a matrix, produce a comparison map between resolutions of its source and target</span></li>
<li><span><a href="_resolution_lp__Module_rp.html" title="compute a projective resolution of a module">resolution(Module)</a> -- compute a projective resolution of a module</span></li>
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