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Note that many of the terms are completely rigorous in context. almost all A shorthand term for "all except for a set of measure zero", when there is a measure to speak of. For example, "almost all real numbers are transcendental" because the algebraic real numbers form a countable subset of the real numbers with measure zero.
A linear algebraic group defined over a field is a torus if only if its base change ¯ to an algebraic closure ¯ is isomorphic to a product of multiplicative groups , ¯. G {\displaystyle G} is a split torus if and only if it is isomorphic to G m , k n {\displaystyle G_{m,k}^{n}} without any base change.
This glossary of linear algebra is a list of definitions and terms relevant to the field of linear algebra, the branch of mathematics concerned with linear equations and their representations as vector spaces. For a glossary related to the generalization of vector spaces through modules, see glossary of module theory
Glossary of game theory; Glossary of arithmetic and diophantine geometry; Glossary of classical algebraic geometry; Glossary of differential geometry and topology; Glossary of Riemannian and metric geometry; Glossary of graph theory; Glossary of group theory
This is a glossary of some terms used in the branch of mathematics known as topology. Although there is no absolute distinction between different areas of topology, the focus here is on general topology. The following definitions are also fundamental to algebraic topology, differential topology and geometric topology.
This is a glossary of properties and concepts in algebraic topology in mathematics. See also: glossary of topology, list of algebraic topology topics, glossary of category theory, glossary of differential geometry and topology, Timeline of manifolds. Convention: Throughout the article, I denotes the unit interval, S n the n-sphere and D n the n ...
2. In geometry and linear algebra, denotes the cross product. 3. In set theory and category theory, denotes the Cartesian product and the direct product. See also × in § Set theory. · 1. Denotes multiplication and is read as times; for example, 3 ⋅ 2. 2. In geometry and linear algebra, denotes the dot product. 3.
Occasionally used for abstract algebra. The term was coined by van der Waerden as the title of his book Moderne Algebra, which was renamed Algebra in the latest editions. Modern algebraic geometry the form of algebraic geometry given by Alexander Grothendieck and Jean-Pierre Serre drawing on sheaf theory. Modern invariant theory