finite coproducts
A category has finite coproducts if it has coproducts for finite families of objects. Equivalently, it has an initial object and binary coproducts.
- Dual property: finite products
- Related properties: coproducts
- nLab Link
Relevant implications
- additive is equivalent to finite coproducts and preadditive
- cartesian closed and finite coproducts implies distributive
- coproducts implies countable coproducts and finite coproducts
- countable coproducts implies finite coproducts
- disjoint finite coproducts implies finite coproducts
- distributive implies finite coproducts and finite products
- essentially finite and finite coproducts implies thin
- filtered colimits and finite coproducts implies coproducts
- finite coproducts and preadditive implies finite products
- finite coproducts and self-dual implies finite products
- finite coproducts and sequential colimits implies countable coproducts
- finite coproducts is equivalent to binary coproducts and initial object
- finite products and preadditive implies finite coproducts
- finite products and self-dual implies finite coproducts
- finitely cocomplete is equivalent to coequalizers and finite coproducts
Examples
There are 37 categories with this property.
- category of abelian groups
- category of Banach spaces with linear contractions
- category of combinatorial species
- category of commutative rings
- category of finite abelian groups
- category of finite sets
- category of finitely generated abelian groups
- category of free abelian groups
- category of groups
- category of left R-modules
- category of locally ringed spaces
- category of M-sets
- category of measurable spaces
- category of metric spaces with ∞ allowed
- category of metric spaces with continuous maps
- category of monoids
- category of pointed sets
- category of posets
- category of rings
- category of rngs
- category of schemes
- category of sets
- category of sets and relations
- category of simplicial sets
- category of small categories
- category of smooth manifolds
- category of topological spaces
- category of vector spaces
- category of Z-functors
- partial order [0,1]
- partial order of extended natural numbers
- partial order of natural numbers
- partial order of ordinal numbers
- preorder of integers w.r.t. divisiblity
- trivial category
- walking isomorphism
- walking morphism
Counterexamples
There are 14 categories without this property.
- category of fields
- category of finite orders
- category of finite sets and bijections
- category of finite sets and injections
- category of finite sets and surjections
- category of metric spaces with non-expansive maps
- category of non-empty sets
- delooping of a non-trivial finite group
- delooping of an infinite group
- delooping of the additive monoid of natural numbers
- delooping of the additive monoid of ordinal numbers
- discrete category on two objects
- empty category
- walking parallel pair of morphisms
Unknown
There are 0 categories for which the database has no information on whether they satisfy this property.
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