987 resultados para Educational Software
Resumo:
A series of government initiatives has raised both the profile of ICT in the curriculum and the expectation that high quality teaching and learning resources will be accessible across electronic networks. In order for e-learning resources such as websites to have the maximum educational impact, teachers need to be involved in their design and development. Use-case analysis provides a means of defining user requirements and other constraints in such a way that software developers can produce e-learning resources which reflect teachers' professional knowledge and support their classroom practice. It has some features in common with the participatory action research used to develop other aspects of classroom practice. Two case-studies are presented: one involves the development of an on-line resource centred on transcripts of original historical documents; the other describes how 'Learning how to Learn', a major, distributed research project funded under the ESRC Teaching and Learning Research Programme is using use-case analysis to develop web resources and services.
Resumo:
This paper presents the analysis and evaluation of the Power Electronics course at So Paulo State University-UNESP-Campus of Ilha Solteira(SP)-Brazil, which includes the usage of interactive Java simulations tools and an educational software to aid the teaching of power electronic converters. This platform serves as an oriented course for the lectures and supplementary support for laboratory experiments in the power electronics courses. The simulation tools provide an interactive and dynamic way to visualize the power electronics converters behavior together with the educational software, which contemplates the theory and a list of subjects for circuit simulations. In order to verify the performance and the effectiveness of the proposed interactive educational platform, it is presented a statistical analysis considering the last three years. © 2011 IEEE.
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In this work, educational software for intuitive understanding of the basic dynamic processes of semiconductor lasers is presented. The proposed tool is addressed to the students of optical communication courses, encouraging self consolidation of the subjects learned in lectures. The semiconductor laser model is based on the well known rate equations for the carrier density, photon density and optical phase. The direct modulation of the laser is considered with input parameters which can be selected by the user. Different options for the waveform, amplitude and frequency of thpoint. Simulation results are plotted for carrier density and output power versus time. Instantaneous frequency variations of the laser output are numerically shifted to the audible frequency range and sent to the computer loudspeakers. This results in an intuitive description of the “chirp” phenomenon due to amplitude-phase coupling, typical of directly modulated semiconductor lasers. In this way, the student can actually listen to the time resolved spectral content of the laser output. By changing the laser parameters and/or the modulation parameters,consequent variation of the laser output can be appreciated in intuitive manner. The proposed educational tool has been previously implemented by the same authors with locally executable software. In the present manuscript, we extend our previous work to a web based platform, offering improved distribution and allowing its use to the wide audience of the web.
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Our extensive research has indicated that high-school teachers are reluctant to make use of existing instructional educational software (Pollard, 2005). Even software developed in a partnership between a teacher and a software engineer is unlikely to be adopted by teachers outside the partnership (Pollard, 2005). In this paper we address these issues directly by adopting a reusable architectural design for instructional educational software which allows easy customisation of software to meet the specific needs of individual teachers. By doing this we will facilitate more teachers regularly using instructional technology within their classrooms. Our domain-specific software architecture, Interface-Activities-Model, was designed specifically to facilitate individual customisation by redefining and restructuring what constitutes an object so that they can be readily reused or extended as required. The key to this architecture is the way in which the software is broken into small generic encapsulated components with minimal domain specific behaviour. The domain specific behaviour is decoupled from the interface and encapsulated in objects which relate to the instructional material through tasks and activities. The domain model is also broken into two distinct models - Application State Model and Domainspecific Data Model. This decoupling and distribution of control gives the software designer enormous flexibility in modifying components without affecting other sections of the design. This paper sets the context of this architecture, describes it in detail, and applies it to an actual application developed to teach high-school mathematical concepts.
Resumo:
Information and communication technologies play an increasingly important role in society, in the sense that all areas and professions make use of digital resources. The school can not be brushed off this reality, aim to create full subjects and integrated in society today. Educational software can be used very early in the education of children, but they must be carefully and monitoring. This article aims to present the results of the use of educational software in English to the awareness of context with children of pre-school education in kindergarten, nursery center Redemptorist Fathers - The smallest fox in White Castle, a 21 group children under 5 years. Early awareness of foreign language such as English can be started with digital multimedia capabilities and various software available on the market. However, the small study described the case reveals some resistance from parents and educators, in the preparation of these to choose and monitor the use of ICT by children, in addition to also highlight the self-interest of the children involved and their learning a few words in English language in different contexts of daily worked. The study opens perspectives on close monitoring needs of such uses and training of educators in the field of use of resources multilingual awareness in pre-school education.
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Não é recente a contribuição das tecnologias de informação e comunicação em processos de ensino/aprendizagem, no sentido da proliferação de conhecimento, de forma fácil e rápida. Com a contínua evolução tecnológica, surgem novos conceitos relativamente a processos de ensino/aprendizagem assentes nessas tecnologias. A aprendizagem por meio de dispositivos móveis, o m-Learning, é um exemplo, sendo um campo de investigação educacional em franca evolução, que explora essencialmente a mobilidade e a interactividade. No âmbito desta dissertação, pretende-se analisar a tecnologia m-Learning, fazendo referência as principais vantagens e desvantagens desta tecnologia. Neste sentido, e por pretendermos dar o nosso contributo ao ensino cabo-verdiano, onde a utilização de tal tecnologia é ainda inexistente, desenvolveu-se a aplicação CV Learning Mobile, um software educativo sobre a “Organização Administrativa de Cabo Verde”, como resultado do estudo efectuado.
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Este estudo procura a valorização do ensino dirigido a alunos com Incapacidade Intelectual. Tem como objetivos conceber um recurso didático, integrando as ferramentas do Scratch, para alunos com Incapacidade Intelectual; averiguar a exequibilidade do uso desse recurso em ambiente natural de ensino e promover o envolvimento de alunos com Incapacidade Intelectual na realização de tarefas propostas na disciplina de Ciências da Natureza. Pretendemos dar resposta às seguintes questões de investigação: (1) A utilização do Scratch é adequada e exequível no trabalho quotidiano de alunos com Incapacidade Intelectual? (2) Em que medida o Scratch pode contribuir para um melhor envolvimento dos alunos com Incapacidade Intelectual na realização das tarefas propostas? Para este efeito, planificamos duas aulas. Na primeira, abordou-se o conteúdo a tratar – Poluição – e na segunda aula utilizou-se o Scratch, desafiando os alunos a desenvolverem diversas tarefas de forma mais ativa. O presente estudo segue uma abordagem metodológica de natureza qualitativa, centrando-se num estudo de caso, onde se aborda a importância do uso das Tecnologias de Informação e Comunicação, mais concretamente o software educativo Scratch, como sendo uma ferramenta potenciadora do envolvimento dos alunos. Este estudo foi aplicado a três alunos com Incapacidade Intelectual que tinham sido atribuídos à docente investigadora no presente ano letivo. Os dados foram recolhidos através da análise dos Programas Educativos Individuais dos alunos participantes; da entrevista realizada à docente de Educação Especial; de gravações áudio, de fotografias, de trabalhos realizados pelos alunos participantes e de notas de campo da investigadora. Foi centralidade do estudo a conceção de uma proposta didática e o desenvolvimento dos respetivos recursos, utilizando o software educativo Scratch. Quer a proposta didática quer os recursos a ela associados constituem em si mesmo parte dos resultados do trabalho desenvolvido. Os dados obtidos neste estudo permitem sustentar a ideia de que é possível trabalhar com alunos com Necessidades Educativas Especiais, nomeadamente Incapacidade Intelectual, recorrendo ao software educativo Scratch e que o uso desta ferramenta proporcionou um maior envolvimento e autonomia dos alunos nas tarefas propostas.
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Though Free Radicals is one of the most frequently explored scientific subjects in mass communication media, the topic is absent of many Biochemistry introductory courses, especially those in which the students do not have a good chemical background. To overcome this contradictory situation we have developed a software treating this topic in a very simple way. The software is divided in four sections: (1) definition and description of free radicals, (2) production pathways, (3) mechanism of action and (4) enzymatic and non enzymatic protection. The instructional capacity of the software has been both qualitative and quantitatively evaluated through its application in undergraduate courses. The software is available in the INTERNET at the site: http://www.unicamp.br/ib/bioquimica/ensino.
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Chemicals binding to membrane receptors may induce events within the cell changing its behavior. Since these events are simultaneous and hard to be understood by students, we developed a computational model to dynamically and visually explore the cAMP signaling system to facilitate its understanding. The animation is shown in parts, from the hormone-receptor binding to the cellular response. There are some questions to be answered after using the model. The software was field-tested and an evaluation questionnaire (concerning usability, animations, models, and the software as an educational tool) was answered by the students, showing the software to be a valuable aid for content comprehension.
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Optical activity is the ability of chiral substances to rotate the plane of plane-polarized light and is measured using an instrument called a polarimeter. An educational software application to explore, both interactively and visually, the concepts related to polarimetry to facilitate their understanding was developed. The software was field-tested and a questionnaire evaluating the graphics interface, usability and the software as an educational tool, was answered by students. The results characterized the computer application developed as an auxiliary tool for assisting teachers in lectures and students in the learning process.
Resumo:
Resonance is a useful concept that shows how electrons are shared between two or more atoms and allows a prediction of the chemical reactivity and relative stability of reagents, intermediates, and products. An educational software that enables interactive exploration of the concepts related to resonance and thereby facilitates its understanding was developed. The software was field-tested, and an evaluation questionnaire concerning the software as an educational tool was answered by the students and professors involved in the test. The results led to the conclusion that the developed computer application can be characterized as an auxiliary tool that assists teachers in their lectures and students in their learning process.