"Lindström–Gessel–Viennot lemma"의 두 판 사이의 차이

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(사용자 2명의 중간 판 10개는 보이지 않습니다)
1번째 줄: 1번째 줄:
== ==
 
 
 
==introduction==
 
==introduction==
  
 
* in physics, fermion integral formula
 
* in physics, fermion integral formula
  
 
+
  
 
+
  
 
* Determinants, Paths, and Plane Partitions [http://people.brandeis.edu/%7Egessel/homepage/papers/pp.pdf http://people.brandeis.edu/~gessel/homepage/papers/pp.pdf]
 
* Determinants, Paths, and Plane Partitions [http://people.brandeis.edu/%7Egessel/homepage/papers/pp.pdf http://people.brandeis.edu/~gessel/homepage/papers/pp.pdf]
14번째 줄: 12번째 줄:
 
* http://en.wikipedia.org/wiki/Lindstr%C3%B6m%E2%80%93Gessel%E2%80%93Viennot_lemma
 
* http://en.wikipedia.org/wiki/Lindstr%C3%B6m%E2%80%93Gessel%E2%80%93Viennot_lemma
  
 
+
  
 
+
  
 
[http://math.arizona.edu/%7Ecaseyw/LGVmaster.pdf http://math.arizona.edu/~caseyw/LGVmaster.pdf]
 
[http://math.arizona.edu/%7Ecaseyw/LGVmaster.pdf http://math.arizona.edu/~caseyw/LGVmaster.pdf]
  
 
+
  
 
Condensed Matter http://www.andrew.cmu.edu/user/bsauerwi/condensed.htm
 
Condensed Matter http://www.andrew.cmu.edu/user/bsauerwi/condensed.htm
  
 
+
  
 
+
  
 
application to hexagonal tiling
 
application to hexagonal tiling
  
 
http://www.scribd.com/doc/62973687/17/The-Gessel-Viennot-Lemma 40p
 
http://www.scribd.com/doc/62973687/17/The-Gessel-Viennot-Lemma 40p
 +
[[분류:math and physics]]
 +
[[분류:dimer model]]
 +
[[분류:migrate]]
  
 
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==메타데이터==
 
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===위키데이터===
==history==
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* ID : [https://www.wikidata.org/wiki/Q6552939 Q6552939]
 
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===Spacy 패턴 목록===
* http://www.google.com/search?hl=en&tbs=tl:1&q=
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* [{'LOWER': 'lindström'}, {'OP': '*'}, {'LOWER': 'gessel'}, {'OP': '*'}, {'LOWER': 'viennot'}, {'LEMMA': 'lemma'}]
 
 
 
 
 
 
 
 
 
 
==related items==
 
 
 
 
 
 
 
 
 
 
 
==encyclopedia==
 
 
 
* http://en.wikipedia.org/wiki/
 
* http://www.scholarpedia.org/
 
* [http://eom.springer.de/ http://eom.springer.de]
 
* http://www.proofwiki.org/wiki/
 
* Princeton companion to mathematics([[2910610/attachments/2250873|Companion_to_Mathematics.pdf]])
 
 
 
 
 
 
 
 
 
 
 
==books==
 
 
 
 
 
 
 
* [[2011년 books and articles]]
 
* http://library.nu/search?q=
 
* http://library.nu/search?q=
 
 
 
 
 
 
 
 
 
 
 
==expositions==
 
 
 
 
 
 
 
 
 
 
 
==articles==
 
 
 
 
 
 
 
* http://www.ams.org/mathscinet
 
* http://www.zentralblatt-math.org/zmath/en/
 
* http://arxiv.org/
 
* http://www.pdf-search.org/
 
* http://pythagoras0.springnote.com/
 
* [http://math.berkeley.edu/%7Ereb/papers/index.html http://math.berkeley.edu/~reb/papers/index.html]
 
* http://dx.doi.org/
 
 
 
 
 
 
 
 
 
 
 
==question and answers(Math Overflow)==
 
 
 
* http://mathoverflow.net/search?q=
 
* http://math.stackexchange.com/search?q=
 
* http://physics.stackexchange.com/search?q=
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
==blogs==
 
 
 
*  구글 블로그 검색<br>
 
**  http://blogsearch.google.com/blogsearch?q=<br>
 
** http://blogsearch.google.com/blogsearch?q=
 
* http://ncatlab.org/nlab/show/HomePage
 
 
 
 
 
 
 
 
 
 
 
==experts on the field==
 
 
 
* http://arxiv.org/
 
 
 
 
 
 
 
 
 
 
 
==links==
 
 
 
* [http://detexify.kirelabs.org/classify.html Detexify2 - LaTeX symbol classifier]
 
* [http://pythagoras0.springnote.com/pages/1947378 수식표현 안내]
 
[[분류:math and physics]]
 

2021년 2월 17일 (수) 01:50 기준 최신판

introduction

  • in physics, fermion integral formula





http://math.arizona.edu/~caseyw/LGVmaster.pdf


Condensed Matter http://www.andrew.cmu.edu/user/bsauerwi/condensed.htm



application to hexagonal tiling

http://www.scribd.com/doc/62973687/17/The-Gessel-Viennot-Lemma 40p

메타데이터

위키데이터

Spacy 패턴 목록

  • [{'LOWER': 'lindström'}, {'OP': '*'}, {'LOWER': 'gessel'}, {'OP': '*'}, {'LOWER': 'viennot'}, {'LEMMA': 'lemma'}]