Results 41 to 50 of about 186 (132)

A Study on A − I − Γ‐Hyperideals and (m, n) − Γ‐Hyperfilters in Ordered Γ‐Semihypergroups

open access: yesDiscrete Dynamics in Nature and Society, Volume 2021, Issue 1, 2021., 2021
The concept of almost interior Γ‐hyperideals (A − I − Γ‐hyperideals) in ordered Γ‐semihypergroups is a generalization of the concept of interior Γ‐hyperideals (I − Γ‐hyperideals). In this study, the connections between I − Γ‐hyperideals and A − I − Γ‐hyperideals in ordered Γ‐semihypergroups were presented.
Yongsheng Rao   +5 more
wiley   +1 more source

Factorizable Ordered Hypergroupoids with Applications

open access: yesMathematical Problems in Engineering, Volume 2021, Issue 1, 2021., 2021
In this study, we propose the concept of factorizable ordered hypergroupoids (semihypergroups) and present several of its properties. Our goal is to construct ordered hypergroupoid from blood groups together with some other information. Finally, we discuss right magnifying elements for further research.
Xiaolong Shi   +4 more
wiley   +1 more source

On Strongly $H_{v}$-groups [PDF]

open access: yesJournal of Mahani Mathematical Research, 2019
‎The largest class of hyperstructures is the one which satisfies the weak properties; these are called $H_{v}$-structures‎. ‎In this paper we introduce a special product of elements in $H_{v}$-group $H$ and define a new class of $H_{v}$-groups called ...
Morteza Jafarpour, Fatemeh Arabpur
doaj   +1 more source

Reducibility in Corsini hypergroups

open access: yesAnalele Stiintifice ale Universitatii Ovidius Constanta: Seria Matematica, 2021
In this paper, we study the reducibility property of special hyper-groups, called Corsini hypergroups, named after the mathematician who introduced them.
Kankaras Milica
doaj   +1 more source

Extension of HyperGraph to n-SuperHyperGraph and to Plithogenic n-SuperHyperGraph, and Extension of HyperAlgebra to n-ary (Classical-/Neutro-/Anti-)HyperAlgebra [PDF]

open access: yesNeutrosophic Sets and Systems, 2020
We recall and improve our 2019 concepts of n-Power Set of a Set, n-SuperHyperGraph, Plithogenic n-SuperHyperGraph, and n-ary HyperAlgebra, n-ary NeutroHyperAlgebra, n-ary AntiHyperAlgebra respectively, and we present several properties and examples ...
Florentin Smarandache
doaj   +1 more source

Application of hyperoperations for engineering practice

open access: yesIOP Conference Series: Materials Science and Engineering, 2020
Abstract This article presents some of the main points of the study for the practical application of various hyperoperations in engineering practice. The authors examined the use of hyperoperations in mathematical formalization of analytical solutions of branching algorithms, the use of new number formats for encoding information based ...
Konstantin A. Rubtsov   +4 more
openaire   +1 more source

Valuated matroid polytopes and linking system composition. [PDF]

open access: yes, 2021
PhD Theses.Valuated matroids are a generalisation of matroids; matroids themselves being an abstraction of the notion of independence. Valuated matroids have many equivalent de nitions including via independent sets and circuits, and in this thesis we ...
Kemp., Scott.
core  

On Strongly Associative (Semi)Hypergroups [PDF]

open access: yes, 2017
In this paper we introduce the notion of a strongly associative hyperoperation that we call SASS and obtain new class of semihypergroups....
Fatemeh Jantani   +2 more
core   +1 more source

Euler’s totient function applied to complete hypergroups [PDF]

open access: yes, 2023
We study the Euler's totient function (called also the Euler's phi function) in the framework of finite complete hypergroups. These are algebraic hypercompositional structures constructed with the help of groups, and endowed with a multivalued operation,
Cristea, Irina   +1 more
core   +1 more source

A Study on Hyperatomic Ordered Semihyperrings

open access: yes, 2023
In this study, we analyze an operator RT of an ordered semihyperring T with symmetrical hyperoperation ⊕ and show relations with the LT operator of T. We define the set ERT(K)={RT(K):∅≠K⊆T}.
Behnam Zahednejad   +3 more
core   +1 more source

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