Aprendendo o OJS 3.3 : um guia visual para o Open Journal Systems (OJS)

2022 ◽  
Author(s):  
Keyword(s):  
On Line ◽  

Este guia é a versão portuguesa do Guia On-line, criada e disponibilizada pelo PKP, Learning OJS 3.3: a Visual Guide to Open Journal Systems, apresentando as principais funcionalidades desta versão do OJS, assim como o seu uso. Assim, este guia é uma obra derivada do guia em inglês, desenvolvida em parceria entre o Instituto Brasileiro de Informação em Ciência e Tecnologia (Ibict), instituto de pesquisa vinculado ao Ministério da Ciência, Tecnologia e Inovações (MCTI), e da empresa Lepidus Tecnologia, mantenedora do Periódicos em Nuvens.

2018 ◽  
Vol 25 (2/4) ◽  
pp. 1
Author(s):  
Helio Langoni

Novos caminhos e InovaçõesO portal de periódicos da CAPES pode ser acessado por estudantes deInstituição de Ensino Superior, contribuindo para suprir o déficit das bibliotecasbrasileiras quanto à informação científica internacional. Contribui ainda para diminuir asdesigualdades regionais por possibilitar consultas a conteúdos atualizados depesquisas. De acordo com o presidente da CAPES, trata-se de uma ferramentaimportante e fundamental de apoio à pesquisa universitária, científica e tecnológica noBrasil. As avaliações sobre o portal são muito positivas, destacando-se que o acesso éamplo, democrático, permitindo a difusão do conhecimento a todas as localidades dopaís, reduzindo possíveis disparidades com relação ao acesso às informaçõescientíficas. É um repositório vivo, permitindo acesso dinâmico e o mais importante, semcusto para o usuário. Essa ferramenta permite a busca dos mais variados temas, o quecontribui indiscutivelmente para a evolução da ciência no país. No dia 03 de novembro comemorou-se o dia da saúde única (one health), saúdehumana, animal e do meio ambiente. O objetivo desse dia é para trazer atenção aoredor do mundo para a necessidade de interações para a saúde única e do mundo paraa prática dessas ações. Salienta-se a interação entre humanos, animais, plantas esaúde ambiental. A agricultura, alimentos, água e solo saudáveis. A vigilância dedoenças, a prevenção e resposta tanto para doenças infecciosas como para doençascrônicas. Os aspectos de resistência antimicrobiana e de toxocologia ambiental, bemcomo os relacionados com a educação em saúde. Estes aspectos devem ser o focopara a melhor qualidade de vida no planeta.A partir de 2018, números 1 e 2/4, a Veterinária e Zootecnia passa a serpublicada na versão 3.1.1.4 do OJS (Open Journal Systems). OJS é um softwarecanadense, livre e gratuito, que possibilita a gestão on-line completa de um periódicocientífico, desde a submissão dos originais, pelos próprios autores, até à publicação dofascículo no site do Periódico. Diferentemente de outros sistemas de gestão do fluxoeditorial de um periódico científico, OJS publica, em um site que cria, para uma revistaou para um portal, o fascículo atual e toda a coleção retrospectiva.Os fascículos de 2018 da Veterinária e Zootecnia estão disponíveis para suaconsulta, em novo site! Ao longo dos próximos meses toda a coleção retrospectiva denossa revista também estará publicada neste mesmo site.Prof. Dr. Helio LangoniEditor-chefe


2021 ◽  
Vol 7 (5) ◽  
Author(s):  
Nathalia Francisca de Sousa Farias ◽  
Jordana Madeira Alaggio Ribeiro ◽  
Alessandro de Araújo Bezerra ◽  
Renata Shirley de Andrade Araújo

Em um sistema de abastecimento de água, a rede de distribuição permite a chegada de água em condições adequadas aos consumidores e, para isso, é necessário um criterioso dimensionamento. Neste trabalho, foi elaborado um método para dimensionar redes de distribuição de água por meio de uma rotina computacional que combina gradientes hidráulicos obtidos por Hazen-Williams com simulações realizadas através do EPANET com a Teoria dos Grafos. Quatro redes foram dimensionadas e realizou-se uma comparação técnica e econômica entre a metodologia desenvolvida e um método convencional. Ambos buscaram respeitar os parâmetros hidráulicos determinados, encontrando pressões similares, no entanto, o método proposto alcançou resultados mais econômicos, sendo o recomendado.


2018 ◽  
Vol 21 (39) ◽  
pp. 13-18
Author(s):  
César Espinoza Claudio

Es grato presentar el segundo número de Investigaciones Sociales, 39-2017 que se difunde vía on line en el Open Journal Systems que administra el Vicerrectorado de Investigación y Posgrado (VRIP) de la Universidad Nacional Mayor de San Marcos y la Facultad de Ciencias Sociales en su versión impresa. En esta empresa y nueva política editorial nuestra publicación se ha propuesto difundir artículos, ensayos, traducciones, reseñas, comentarios y avances de investigación de docentes y alumnos de pre y posgrado alineados en los Grupos de Investigación de Pre y Posgrado (GIPP) bajo una perspectiva de la pluralidad y el trabajo interdisciplinario de las ciencias sociales.


Author(s):  
William Krakow

In the past few years on-line digital television frame store devices coupled to computers have been employed to attempt to measure the microscope parameters of defocus and astigmatism. The ultimate goal of such tasks is to fully adjust the operating parameters of the microscope and obtain an optimum image for viewing in terms of its information content. The initial approach to this problem, for high resolution TEM imaging, was to obtain the power spectrum from the Fourier transform of an image, find the contrast transfer function oscillation maxima, and subsequently correct the image. This technique requires a fast computer, a direct memory access device and even an array processor to accomplish these tasks on limited size arrays in a few seconds per image. It is not clear that the power spectrum could be used for more than defocus correction since the correction of astigmatism is a formidable problem of pattern recognition.


Author(s):  
A.M.H. Schepman ◽  
J.A.P. van der Voort ◽  
J.E. Mellema

A Scanning Transmission Electron Microscope (STEM) was coupled to a small computer. The system (see Fig. 1) has been built using a Philips EM400, equipped with a scanning attachment and a DEC PDP11/34 computer with 34K memory. The gun (Fig. 2) consists of a continuously renewed tip of radius 0.2 to 0.4 μm of a tungsten wire heated just below its melting point by a focussed laser beam (1). On-line operation procedures were developped aiming at the reduction of the amount of radiation of the specimen area of interest, while selecting the various imaging parameters and upon registration of the information content. Whereas the theoretical limiting spot size is 0.75 nm (2), routine resolution checks showed minimum distances in the order 1.2 to 1.5 nm between corresponding intensity maxima in successive scans. This value is sufficient for structural studies of regular biological material to test the performance of STEM over high resolution CTEM.


Author(s):  
Neil Rowlands ◽  
Jeff Price ◽  
Michael Kersker ◽  
Seichi Suzuki ◽  
Steve Young ◽  
...  

Three-dimensional (3D) microstructure visualization on the electron microscope requires that the sample be tilted to different positions to collect a series of projections. This tilting should be performed rapidly for on-line stereo viewing and precisely for off-line tomographic reconstruction. Usually a projection series is collected using mechanical stage tilt alone. The stereo pairs must be viewed off-line and the 60 to 120 tomographic projections must be aligned with fiduciary markers or digital correlation methods. The delay in viewing stereo pairs and the alignment problems in tomographic reconstruction could be eliminated or improved by tilting the beam if such tilt could be accomplished without image translation.A microscope capable of beam tilt with simultaneous image shift to eliminate tilt-induced translation has been investigated for 3D imaging of thick (1 μm) biologic specimens. By tilting the beam above and through the specimen and bringing it back below the specimen, a brightfield image with a projection angle corresponding to the beam tilt angle can be recorded (Fig. 1a).


Author(s):  
G.Y. Fan ◽  
J.M. Cowley

In recent developments, the ASU HB5 has been modified so that the timing, positioning, and scanning of the finely focused electron probe can be entirely controlled by a host computer. This made the asynchronized handshake possible between the HB5 STEM and the image processing system which consists of host computer (PDP 11/34), DeAnza image processor (IP 5000) which is interfaced with a low-light level TV camera, array processor (AP 400) and various peripheral devices. This greatly facilitates the pattern recognition technique initiated by Monosmith and Cowley. Software called NANHB5 is under development which, instead of employing a set of photo-diodes to detect strong spots on a TV screen, uses various software techniques including on-line fast Fourier transform (FFT) to recognize patterns of greater complexity, taking advantage of the sophistication of our image processing system and the flexibility of computer software.


Author(s):  
John F. Mansfield ◽  
Douglas C. Crawford

A method has been developed that allows on-line measurement of the thickness of crystalline materials in the analytical electron microscope. Two-beam convergent beam electron diffraction (CBED) patterns are digitized from a JEOL 2000FX electron microscope into an Apple Macintosh II microcomputer via a Gatan #673 CCD Video Camera and an Imaging Systems Technology Video 1000 frame-capture board. It is necessary to know the lattice parameters of the sample since measurements are made of the spacing of the diffraction discs in order to calibrate the pattern. The sample thickness is calculated from measurements of the spacings of the fringes that are seen in the diffraction discs. This technique was pioneered by Kelly et al, who used the two-beam dynamic theory of MacGillavry relate the deviation parameter (Si) of the ith fringe from the exact Bragg condition to the specimen thickness (t) with the equation:Where ξg, is the extinction distance for that reflection and ni is an integer.


Author(s):  
W.J. de Ruijter ◽  
P. Rez ◽  
David J. Smith

There is growing interest in the on-line use of computers in high-resolution electron n which should reduce the demands on highly skilled operators and thereby extend the r of the technique. An on-line computer could obviously perform routine procedures hand, or else facilitate automation of various restoration, reconstruction and enhan These techniques are slow and cumbersome at present because of the need for cai micrographs and off-line processing. In low resolution microscopy (most biologic; primary incentive for automation and computer image analysis is to create a instrument, with standard programmed procedures. In HREM (materials researc computer image analysis should lead to better utilization of the microscope. Instru (improved lens design and higher accelerating voltages) have improved the interpretab the level of atomic dimensions (approximately 1.6 Å) and instrumental resolutior should become feasible in the near future.


Author(s):  
M.A. O’Keefe ◽  
J. Taylor ◽  
D. Owen ◽  
B. Crowley ◽  
K.H. Westmacott ◽  
...  

Remote on-line electron microscopy is rapidly becoming more available as improvements continue to be developed in the software and hardware of interfaces and networks. Scanning electron microscopes have been driven remotely across both wide and local area networks. Initial implementations with transmission electron microscopes have targeted unique facilities like an advanced analytical electron microscope, a biological 3-D IVEM and a HVEM capable of in situ materials science applications. As implementations of on-line transmission electron microscopy become more widespread, it is essential that suitable standards be developed and followed. Two such standards have been proposed for a high-level protocol language for on-line access, and we have proposed a rational graphical user interface. The user interface we present here is based on experience gained with a full-function materials science application providing users of the National Center for Electron Microscopy with remote on-line access to a 1.5MeV Kratos EM-1500 in situ high-voltage transmission electron microscope via existing wide area networks. We have developed and implemented, and are continuing to refine, a set of tools, protocols, and interfaces to run the Kratos EM-1500 on-line for collaborative research. Computer tools for capturing and manipulating real-time video signals are integrated into a standardized user interface that may be used for remote access to any transmission electron microscope equipped with a suitable control computer.


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