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The sandbox is the page where you can experiment with the wiki syntax. Feel free to write nonsense or clear the page whenever you want.

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Contents

1 citing

[Kervaire&Milnor1963] [Kervaire&Milnor1963]

2 Fonts

;

a > b < c/var/www/vhost/map.mpim-bonn.mpg.de/tmp/AppWikiTex/tex_J4AP4R CM: The connected sum of \RP^2/var/www/vhost/map.mpim-bonn.mpg.de/tmp/AppWikiTex/tex_mDheYm with T^2ZZZ/var/www/vhost/map.mpim-bonn.mpg.de/tmp/AppWikiTex/tex_fwUigS is homeomorphic to \RP^2\mathbin{\sharp}\RP^2\mathbin{\sharp}\RP^2X/var/www/vhost/map.mpim-bonn.mpg.de/tmp/AppWikiTex/tex_6dHqWn.

HV: The connected sum of \RP^2/var/www/vhost/map.mpim-bonn.mpg.de/tmp/AppWikiTex/tex_3l4L1T with T^2XXX/var/www/vhost/map.mpim-bonn.mpg.de/tmp/AppWikiTex/tex_29cOvq is homeomorphic to \RP^2\mathbin{\sharp}\RP^2\mathbin{\sharp}\RP^2Y/var/www/vhost/map.mpim-bonn.mpg.de/tmp/AppWikiTex/tex_lCJImX.

LM: The connected sum of \RP^2/var/www/vhost/map.mpim-bonn.mpg.de/tmp/AppWikiTex/tex_W6wwHu with T^2YYYY/var/www/vhost/map.mpim-bonn.mpg.de/tmp/AppWikiTex/tex_dX5H02 is homeomorphic to \RP^2\mathbin{\sharp}\RP^2\mathbin{\sharp}\RP^2Z/var/www/vhost/map.mpim-bonn.mpg.de/tmp/AppWikiTex/tex_2NkHMB.

MF: The connected sum of \RP^2/var/www/vhost/map.mpim-bonn.mpg.de/tmp/AppWikiTex/tex_xdE3Xa with T^2VVVV/var/www/vhost/map.mpim-bonn.mpg.de/tmp/AppWikiTex/tex_mZnNyK is homeomorphic to \RP^2\mathbin{\sharp}\RP^2\mathbin{\sharp}\RP^2ZZ/var/www/vhost/map.mpim-bonn.mpg.de/tmp/AppWikiTex/tex_vnZdyk.

The connected sum of \RP^2/var/www/vhost/map.mpim-bonn.mpg.de/tmp/AppWikiTex/tex_G0DSWU with T^2/var/www/vhost/map.mpim-bonn.mpg.de/tmp/AppWikiTex/tex_VePDJv is homeomorphic to \RP^2\mathbin{\sharp}\RP^2\mathbin{\sharp}\RP^2ZZZ/var/www/vhost/map.mpim-bonn.mpg.de/tmp/AppWikiTex/tex_KCXWU6.

3 Tests

[Ranicki1981]

Proof.

\square


frog

4 Section

4.1 Subsection

Refert to subsection 4.1

Theorem 4.1. test

Refer to theorem 4.1

5 Section

\stackrel{CW^2}{\xrightarrow{\hspace*{0.75cm}}}

An inter-Wiki link.

Another[1]; inter-Wiki link.


sdfasdfa dfa[2] sdfasf

Template:Ref Poincare complexes are great:

\displaystyle  H_i(X)  \cong H^{n-i}(X)
\displaystyle  \oplus, \bigoplus

6 Footnotes

  1. Test
  2. Test
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