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- ...nt vectors (or velocities) to the curves passing through that point p. The tangent space at this point p is usually denoted <math>T_pM</math>. ..., this ambient [[Euclidean space]] is unnecessary to the definition of the tangent space.4 KB (676 words) - 00:52, 15 November 2007
- 12 bytes (1 word) - 00:52, 15 November 2007
- 119 bytes (17 words) - 20:19, 4 September 2009
- Auto-populated based on [[Special:WhatLinksHere/Tangent space]]. Needs checking by a human.438 bytes (56 words) - 20:49, 11 January 2010
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- ...nt vectors (or velocities) to the curves passing through that point p. The tangent space at this point p is usually denoted <math>T_pM</math>. ..., this ambient [[Euclidean space]] is unnecessary to the definition of the tangent space.4 KB (676 words) - 00:52, 15 November 2007
- {{r|Tangent space}}580 bytes (72 words) - 18:18, 11 January 2010
- Auto-populated based on [[Special:WhatLinksHere/Tangent space]]. Needs checking by a human.438 bytes (56 words) - 20:49, 11 January 2010
- ...tangent space is also n-dimensional. Although it is normal to visualise a tangent space being embedded within <math>\scriptstyle \mathbb{R}^{n+1}</math>, it can be * [[Tangent space]]5 KB (805 words) - 17:01, 28 November 2008
- ...nction has (at every point) the differential, – a linear functional on the tangent space. Real (or complex) finite-dimensional linear, affine and projective spaces28 KB (4,311 words) - 08:36, 14 October 2010
- ...= (''x'',''z''). The source fibers are (''x'',''M'') and thus the source tangent space is T<sup>s</sup>G = ∪<sub>''x''∈''M''</sub> (''x'',''TM''). The pull-b16 KB (2,719 words) - 04:11, 7 October 2013
- ...n associate a Lie algebra in the following way. The vector space is the [[tangent space]] at the identity of ''G''. This vector space is also canonically isomorph12 KB (1,918 words) - 20:29, 22 December 2011
- which can be normalized to be of unit length. For more background see [[tangent space]].29 KB (4,366 words) - 09:10, 26 March 2011