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Institution

Matej Bel University

EducationBanská Bystrica, Slovakia
About: Matej Bel University is a education organization based out in Banská Bystrica, Slovakia. It is known for research contribution in the topics: Tourism & Fuzzy set. The organization has 721 authors who have published 1497 publications receiving 11573 citations. The organization is also known as: Matej Bel & Univerzita Mateja Bela.


Papers
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Journal ArticleDOI
TL;DR: In this paper, the Eads of the superheavy element (SHE) Mc, its lighter homologue (Bi), as well as some lighter homologues of SHEs on gold and hydroxylated quartz surfaces are predicted via periodic relativistic density functional theory calculations.
Abstract: Adsorption energies (Eads) of the superheavy element (SHE) Mc, its lighter homologue (Bi), as well as of another superheavy element Nh and some lighter homologues of SHEs on gold and hydroxylated quartz surfaces are predicted via periodic relativistic density functional theory calculations. The aim of this study is to support "one-atom-at-a-time" gas-phase chromatography experiments that are examining the reactivity and volatility of Mc. The obtained Eads values of the Bi and Mc atoms on the Au(111) surface are >200 kJ/mol. On the hydroxylated quartz surface, Mc should adsorb with a minimal energy of 58 kJ/mol. On both types of surfaces, Eads(Mc) should be ∼100 kJ/mol smaller than Eads(Bi) due to strong relativistic effects on its valence 7p electrons. A comparison with other SHEs under investigation shows that Mc should adsorb on gold more strongly than Cn, Nh, and Fl, while on quartz, Mc should adsorb like Nh, with both of them absorbing more strongly than volatile Cn and Fl. The highest reactivity of Mc in the row of the 7p elements is caused by the largest orbital and relativistic destabilization and expansion of the 7p3/2 atomic orbital. Using the calculated Eads, the distribution of the Nh and Mc events in the gas-phase chromatography column with quartz and gold-plated detectors is predicted via Monte Carlo simulations. As a result, Mc atoms should be almost 100% adsorbed in the first section of the chromatography column on quartz, while a few atoms of Nh can reach the second part of the column with gold-plated detectors.

6 citations

Journal ArticleDOI
TL;DR: In this article, a class of logarithmic Lambert W random variables for a specific family of distributions is introduced, which naturally appear in the likelihood-based inference of normal random variables.

6 citations

Journal Article
TL;DR: In this article, the authors analyze the problems of enforcing international law in terms of fundamental principles of international law, sovereign states and the United Nations, and propose a model for the development of UN law enforcement procedures.
Abstract: Journal of Modern Science tom 2/33/2017 Abstract This article analyzes the problems of enforcing international law in terms of fundamental principles of international law, sovereign states and the United Nations. The issue of law enforcement is a problem not only in individual states, but also with in the United Nations. The whole process of peaceful settlement of disputes through the courts in particular, is therefore irrelevant if the final decision, which the state does not want to submit to and fail to enforce. On the other hand, law enforcement mechanisms and capacities of WTO represent complex system of procedural norms of coercion, which could serve as an example for the innovation of UN law enforcement procedures.

6 citations

Journal ArticleDOI
TL;DR: The aim of the paper is to find discrete versions of the Wiman theorem which states that the maximum possible order of an automorphism of a Riemann surface of genus g ?

6 citations


Authors

Showing all 749 results

NameH-indexPapersCitations
Gareth Jones9165530290
Michal Meres7126014850
Alexander Rosa301272741
Robert Zaleśny25951658
Ľubomír Švorc25921636
Evgeni E. Kolomeitsev24962727
Heribert Reis23561130
Ivan Černušák20961362
Beloslav Riečan19891123
Boris Tomasik16138792
Peter Pristaš161381110
Juraj Nemec151791125
Polina Lemenkova15105743
Uglješa Stankov1568717
Roman Nedela1531765
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Performance
Metrics
No. of papers from the Institution in previous years
YearPapers
202318
202233
2021125
2020138
2019137
2018147