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Institution

University of Minho

EducationBraga, Portugal
About: University of Minho is a education organization based out in Braga, Portugal. It is known for research contribution in the topics: Context (language use) & Population. The organization has 10585 authors who have published 34736 publications receiving 732436 citations. The organization is also known as: Universidade do Minho & UMinho.


Papers
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Journal ArticleDOI
TL;DR: In this paper, the pulping of pseudo-stems was carried out using soda, kraft and soda-anthraquinone (AQ) cooking processes and the optimal pulping conditions were established.

217 citations

Journal ArticleDOI
TL;DR: In this paper, the authors describe the mechanisms in the development of biofouling layers (initial surface conditioning, microbial transport and attachment, mass transfer of nutrients to the biofilm surface and through the microbial layer, cell metabolism, and detachment of cells and of larger parts of the biofilms).

217 citations

Journal ArticleDOI
Georges Aad1, Brad Abbott2, Jalal Abdallah3, Ovsat Abdinov4  +2882 moreInstitutions (212)
TL;DR: In this article, a search for narrow resonances decaying into WW, WZ, or ZZ boson pairs using 20.3 fb(-1) of proton-proton collision data at a center-of-mass energy of root s = TeV recorded with the AT...
Abstract: A search is performed for narrow resonances decaying into WW, WZ, or ZZ boson pairs using 20.3 fb(-1) of proton-proton collision data at a centre-of-mass energy of root s = TeV recorded with the AT ...

217 citations

Journal ArticleDOI
TL;DR: The dynamic analysis of planar multibody systems with revolute clearance joints, including dry contact and lubrication effects is presented here, and a general methodology for modeling lubricated revolute joints in multibODY mechanical systems is presented.
Abstract: The dynamic analysis of planar multibody systems with revolute clearance joints, including dry contact and lubrication effects is presented here. The clearances are always present in the kinematic joints. They are known to be the sources for impact forces, which ultimately result in wear and tear of the joints. A joint with clearance is included in the multibody system much like a revolute joint. If there is no lubricant in the joint, impacts occur in the system and the corresponding impulsive forces are transmitted throughout the multibody system. These impacts and the eventual continuous contact are described here by a force model that accounts for the geometric and material characteristics of the journal and bearing. In most of the machines and mechanisms, the joints are designed to operate with some lubricant fluid. The high pressures generated in the lubricant fluid act to keep the journal and the bearing surfaces apart. Moreover, the lubricant provides protection against wear and tear. The equations governing the dynamical behavior of the general mechanical systems incorporate the impact force due to the joint clearance without lubricant, as well as the hydrodynamic forces owing to the lubrication effect. A continuous contact model provides the intra-joint impact forces. The friction effects due to the contact in the joints are also represented. In addition, a general methodology for modeling lubricated revolute joints in multibody mechanical systems is also presented. Results for a slider-crank mechanism with a revolute clearance joint between the connecting rod and the slider are presented and used to discuss the assumptions and procedures adopted.

217 citations

Journal ArticleDOI
TL;DR: The phenolic compounds studied here showed protective potential against oxidative damage induced in HepG2 cells, which could be beneficial against liver diseases where it is known that oxidative stress plays a crucial role.

216 citations


Authors

Showing all 10921 results

NameH-indexPapersCitations
A. Gomes1501862113951
Kazuhiko Hara1411956107697
Stefano Giagu1391651101569
Georges Azuelos134129490690
Fumihiko Ukegawa133149294465
Luis M. Liz-Marzán13261661684
Francesco Lacava130104279680
Jozsef Toth130115186193
Monica Verducci12989676002
Andrea Messina12893975409
Rostislav Konoplich12881173790
Michel Vetterli12890176064
Nuno Filipe Castro12896076945
Hideki Okawa12783973603
Nazim Huseynov12683372648
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Performance
Metrics
No. of papers from the Institution in previous years
YearPapers
2023129
2022480
20212,659
20202,640
20192,505
20182,450