Identifying Knots within a List: Difference between revisions

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];
];
SubLink[pd_PD, j_] := SubLink[pd, {j}];
SubLink[pd_PD, j_] := SubLink[pd, {j}];
SubLink[L_, js_] := SubLink[PD[L], js];$$-->
SubLink[L_, js_] := SubLink[PD[L], js];$$--><!--END-->



<!--$$IdentifyWithin[SubLink[Link["L11n150"], 2], AllKnots[]]$$-->
<!--$$IdentifyWithin[SubLink[Link["L11n150"], 2], AllKnots[]]$$-->
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out= <nowiki>{Knot[5, 2]}</nowiki>}}
out= <nowiki>{Knot[5, 2]}</nowiki>}}
<!--END-->
<!--END-->



{{Knot Image Pair|L11n150|gif|5_2|gif}}
{{Knot Image Pair|L11n150|gif|5_2|gif}}



Unfortunately, the program does not provide absolute identification when all the used invariants cannot distinguish between two or more different knots. In that case, a list of possible candidates for <math>L</math> is returned.
Unfortunately, the program does not provide absolute identification when all the used invariants cannot distinguish between two or more different knots. In that case, a list of possible candidates for <math>L</math> is returned.

Revision as of 21:16, 18 November 2007


IdentifyWithin[L,H], whose code is available here, returns those elements from the list of knots , whose invariant matches that of the knot . It can also recognize mirrors and connected sums of the knots in the list. Its options include turning off (on) the search for connected sums with ConnectedSum->False (True) and choosing the invariants to be used in identification by selecting, for example, Invariants->{Jones[#][q]&, HOMFLYPT[#][a,z]&}. IdentifyWithin can be used together with SubLink to determine the components of a link. For the second component of link L11n150, for instance, we get:

(For In[1] see Setup)


In[2]:= IdentifyWithin[SubLink[Link["L11n150"], 2], AllKnots[]]
Out[2]= {Knot[5, 2]}
L11n150.gif
L11n150
5 2.gif
5_2

Unfortunately, the program does not provide absolute identification when all the used invariants cannot distinguish between two or more different knots. In that case, a list of possible candidates for is returned.