Mestrado Profissional em Ensino de Física - MNPEF
URI permanente desta comunidadehttps://ri.ifam.edu.br/handle/4321/31
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4 resultados
Resultados da Pesquisa
Other Utilizando o software PictoBlox para o ensino de circuitos elétricos no ensino médio(Instituto Federal de Educação, Ciência e Tecnologia do Amazonas, 2027-10-07) Alencar, Renan de MeloThesis Utilizando o software PictoBlox para o ensino de circuitos elétricos: uma Abordagem prática no ensino médio(Instituto Federal de Educação, Ciência e Tecnologia do Amazonas, 2025-10-07) Alencar, Renan de MeloThis work aims to investigate and explore an additional method for teaching physics, using technology through robotics to teach concepts and practices related to electrical circuits. The goal is to examine the potential of using the Pictoblox platform as a supporting tool in high school physics education. Given the challenges faced in the learning process of this subject, often characterized by abstract and decontextualized approaches, this study seeks to assess how the introduction of a block-based programming language, integrated with sensors and electronic components, can contribute to building physics knowledge in a more interactive, experimental, and meaningful way. Thinking about overcoming such obstacles and motivating high school students to study physics, we thought of using the software PictoBblox, a tool based on SCRATCH, which allows the development of programming in blocks, and also allows connection to boards (microcontrollers) Arduino. The use of the Arduino board will be of great importance in this research, as this is the time when students will need to exercise their knowledge about circuits and, by building and handling variations of these circuits, it will be possible to achieve significant learning on the topic covered. The option to promote a didactic sequence using this software to teach electrical circuits is based on the use of technology to make physics more attractive and understandable to students, making them not only understand the content, but also recognize the importance of learning it.Outro Modelando circuitos elétricos simples através do software Ni Multisim(2025-06-02) Rezende, Nelson de Oliveira; Campos, José GalúcioDissertação Modelando o ensino de circuitos elétricos simples à luz da teoria de registros de representação semiótica de Raymond Duval(2025-06-02) Rezende, Nelson de Oliveira; Campos, José Galúcio; http://lattes.cnpq.br/0500936753469199; Campos, Jose Galucio; http://lattes.cnpq.br/0500936753469199; Amazonas , Márcio Andrei Sousa; http://lattes.cnpq.br/0822367858729601; Silva, Cirlande Cabral da; http://lattes.cnpq.br/3405754239635541With a normative character, on December 20, 2017, the National Common Curricular Base (BNCC) was enacted, with the main objective of providing public and private education networks and institutions with a minimum curriculum that every student should know by the end of basic education. In addition to these and other curricular changes, the base also brought another set of pedagogical proposals to be innovative by teachers in the classroom. One of these changes involves technological transformations. We therefore observe that the use of Digital Information and Communication Technologies (DICT’s) in education has become an emerging theme. Given this macro scenario, this led us to ask the following question: Is it possible to understand the concepts necessary for building simple electrical circuits using computer simulations as a tool, relating them to real electrical circuits, through a didactic sequence implemented from the perspective of Raymond Duval's Theory of Semiotic Representation Registers? This study aimed to answer this question by developing and applying a structured teaching sequence based on the progression of semiotic registers applied to the construction of simple electrical circuits using the NI Multisim software environment. In this study, we employed a collaborative teaching strategy based on the use of different registers of semiotic representations, mobilizing them and verifying whether the gaps between registers of representations of the same object influenced a better understanding of essential concepts for the construction of these circuits. We highlighted the importance of coordinating the different types of languages present in the teaching of Physics, be it symbolic, algebraic, oral or written, demonstrating the relationships involved and their emotions. This led us to conclude that the teaching of Physics, be it through expository classes, experiments, computational models, active methodologies, etc., should be developed based on the evolution of these registers.
