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- ...hbb{R}^{n+1})\ \vert\ (L,\mathbb{R})\text{ is an 1-} }}[[dimension (vector space)|{{M|\text{dimensional} }}]]{{M|\text{ vector } }}[[vector subspace|{{M|\te ** We use this map to imbue {{M|\mathbb{RP}^n}} with the [[quotient topology]], so:2 KB (289 words) - 09:08, 18 February 2017
- {{DISPLAYTITLE:Locally Euclidean topological space of dimension {{N}}}} ...n [[equivalence relation]] in play, and we're [[quotient by an equivalence relation|quotienting something]]. I'm not quite sure what yet though!2 KB (393 words) - 12:40, 21 February 2017
- ...c{[-1,1]\times[-1,1]}{\sim} }} where {{M|\sim}} is [[generated equivalence relation|generated]] by {{M|(-1,t)\sim(1,-t)}}</ref>. We claim that {{M|C}} - the [[ ...es[-1,1]\rightarrow \frac{[-1,1]\times[-1,1]}{\sim}:\eq M }} be the {{link|quotient map|topology}}1 KB (173 words) - 10:32, 22 April 2017