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  2. Noncommutative geometry - Wikipedia

    en.wikipedia.org/wiki/Noncommutative_geometry

    The noncommutative torus, deformation of the function algebra of the ordinary torus, can be given the structure of a spectral triple. This class of examples has been studied intensively and still functions as a test case for more complicated situations. Snyder space [10] Noncommutative algebras arising from foliations.

  3. Noncommutative torus - Wikipedia

    en.wikipedia.org/wiki/Noncommutative_torus

    The generating unitaries are the generator of the group Z and the identity function on the circle z : S 1 → C. [1] Twisted group algebra: The function σ : Z 2 × Z 2 → C; σ((m,n), (p,q)) = e 2πinpθ is a group 2-cocycle on Z 2, and the corresponding twisted group algebra C*(Z 2; σ) is isomorphic to A θ.

  4. Free algebra - Wikipedia

    en.wikipedia.org/wiki/Free_algebra

    For example, X 1 X 2 does not equal X 2 X 1. More generally, one can construct the free algebra R E on any set E of generators. Since rings may be regarded as Z-algebras, a free ring on E can be defined as the free algebra Z E . Over a field, the free algebra on n indeterminates can be constructed as the tensor algebra on an n-dimensional ...

  5. Noncommutative topology - Wikipedia

    en.wikipedia.org/wiki/Noncommutative_topology

    And so certain types of functions can correspond to certain properties of a C*-algebra. For example, self-adjoint elements of a commutative C*-algebra correspond to real-valued continuous functions. Also, projections (i.e. self-adjoint idempotents) correspond to indicator functions of clopen sets. Categorical constructions lead to some examples.

  6. Noncommutative algebraic geometry - Wikipedia

    en.wikipedia.org/wiki/Noncommutative_algebraic...

    Noncommutative algebraic geometry is a branch of mathematics, and more specifically a direction in noncommutative geometry, that studies the geometric properties of formal duals of non-commutative algebraic objects such as rings as well as geometric objects derived from them (e.g. by gluing along localizations or taking noncommutative stack quotients).

  7. Invariant subspace - Wikipedia

    en.wikipedia.org/wiki/Invariant_subspace

    The problem is to decide whether every such T has a non-trivial, closed, invariant subspace. It is unsolved. In the more general case where V is assumed to be a Banach space, Per Enflo (1976) found an example of an operator without an invariant subspace. A concrete example of an operator without an invariant subspace was produced in 1985 by ...

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