User:Richard Pinch/Redlinks: Difference between revisions
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imported>Richard Pinch (removed some which have been done, added new redlinks) |
imported>Richard Pinch (added Finite set, Infinite set) |
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* [[Galois group]], [[Galois extension]] | * [[Galois group]], [[Galois extension]] | ||
* [[Galois connection]] | * [[Galois connection]] | ||
* [[Finite set]], [[Infinite set]] | |||
* [[Conductor of an elliptic curve]] | * [[Conductor of an elliptic curve]] | ||
Revision as of 01:46, 29 December 2008
A list of redlinks I've created with the intention of filling in at some time:
- Paving dimension
- Point-set topology or possibly General topology
- Galois group, Galois extension
- Galois connection
- Finite set, Infinite set
- Conductor of an elliptic curve
From Centre (mathematics):
- In triangle geometry
- The excentres, centres of the three circles internally tangent to one side and externally to the other two
From Composition (mathematics):
- Function composition: the composition or successive application of functions
- Composition of relations
- Composition series in group theory
From Chain (mathematics):
- A linearly ordered sequence of elements of a partial order
- An element of a group in a chain complex in homological algebra
- The chain rule for the derivative of function composition
From Talk:Series (mathematics):
- Series (analysis), the cumulative sum of a given sequence of terms. Special types include
- Dirichlet series
- Fourier series
- Power series (currently a redirect)
- Puiseux series
- Series (group theory), a chain of subgroups of a group. Special types include
- Series (lattice theory), a chain in a partially ordered set
- Time series in probability and statistics
From Distributivity:
- There are three closely connected examples where each of two operations distributes over the other:
- In set theory, intersection distributes over union and union distributes over intersection;
- In propositional logic, conjunction (logical and) distributes over disjunction (logical or) and disjunction distributes over conjunction;
- In a Boolean algebra, join distributes over meet and meet distributes over join.