Kinetic and electrochemistry teaching-learning using experimental activities: case study in higher education

Detalhes bibliográficos
Autor(a) principal: Cotta, Jussara Aparecida de Oliveira
Data de Publicação: 2020
Outros Autores: Gomes, Bruno Motta, Andrade, Felipe Leone de Souza, Figueireido, Gabriel Cooper Neves, de Souza, Geicilaine Krisdele Ferreira, Linhares, Ícaro Liberto, Gomes, Jordana Duarte, Santos, José Mateus Bicalho dos, Gomes, Luana Aparecida, Carmo, Nayara Hudson do, de Melo, Paloma Ellen Soares, Santos, Pedro Henrique Frade dos, Carneiro, Rafaela Pichener de Castro, Torres, Rafael Queiroz Quaresma de Figueiredo
Tipo de documento: Artigo
Idioma: por
Título da fonte: Research, Society and Development
Texto Completo: https://rsdjournal.org/index.php/rsd/article/view/1970
Resumo: The teaching of chemistry generates among students a feeling of discomfort due to the difficulties existing in the teaching-learning process and often the teachers are not prepared to act in an interdisciplinary way. Given the difficulties, it is necessary to search for teaching methodologies that approach the subject in a contextualized way and attract the attention of students. In this regard, the author sought to develop a contextualized teaching proposal, through practical experiment, that would address the themes of corrosion and kinetics, with the aim of developing critical thinking in students. In this context, the present work aimed to present a “Case Study” methodology through experimental observation of corrosion of galvanized and non-galvanized steel clamp in different electrolytic solutions and thus find the order of corrosion reaction by speed integration laws. The research would be qualitative and quantitative, as it shows the contribution of experimental observations to the teaching-learning process by addressing the kinetics and corrosion contents, as well as finding the corrosion rate and reaction order. Students showed that the type of electrolyte influences the corrosion velocity. Non-galvanized clamps are more susceptible to corrosion when using NaOH solution. The NaCl solution is relatively weak to corrode the clamp, and in an acidic aqueous medium the clamp corrosion rate is higher. Corrosion of the clamp in different electrolyte solutions follows as a zero order reaction.
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spelling Kinetic and electrochemistry teaching-learning using experimental activities: case study in higher educationEnseñanza-aprendizaje cinético y electroquímico mediante actividades experimentales: estudio de caso en la educación superiorEnsino-aprendizagem de cinética e eletroquímica com uso de atividades experimentais: estudo de caso no ensino superiorAbrazadera de acero tipo Usoluciones electrolíticascorrosión.grampo de aço tipo “U”soluções eletrolíticascorrosão.U-type steel clampelectrolyte solutionscorrosion.The teaching of chemistry generates among students a feeling of discomfort due to the difficulties existing in the teaching-learning process and often the teachers are not prepared to act in an interdisciplinary way. Given the difficulties, it is necessary to search for teaching methodologies that approach the subject in a contextualized way and attract the attention of students. In this regard, the author sought to develop a contextualized teaching proposal, through practical experiment, that would address the themes of corrosion and kinetics, with the aim of developing critical thinking in students. In this context, the present work aimed to present a “Case Study” methodology through experimental observation of corrosion of galvanized and non-galvanized steel clamp in different electrolytic solutions and thus find the order of corrosion reaction by speed integration laws. The research would be qualitative and quantitative, as it shows the contribution of experimental observations to the teaching-learning process by addressing the kinetics and corrosion contents, as well as finding the corrosion rate and reaction order. Students showed that the type of electrolyte influences the corrosion velocity. Non-galvanized clamps are more susceptible to corrosion when using NaOH solution. The NaCl solution is relatively weak to corrode the clamp, and in an acidic aqueous medium the clamp corrosion rate is higher. Corrosion of the clamp in different electrolyte solutions follows as a zero order reaction.La enseñanza de la química genera entre los estudiantes una sensación de incomodidad debido a las dificultades existentes en el proceso de enseñanza-aprendizaje y, a menudo, los maestros no están preparados para actuar de manera interdisciplinaria. Dadas las dificultades, es necesario buscar metodologías de enseñanza que aborden el tema de manera contextualizada y atraigan la atención de los estudiantes. En este sentido, el autor buscó desarrollar una propuesta de enseñanza contextualizada, a través de experimentos prácticos, que abordara los temas de corrosión y cinética, con el objetivo de desarrollar el pensamiento crítico en los estudiantes. En este contexto, el presente trabajo tuvo como objetivo presentar una metodología de "Estudio de caso" a través de la observación experimental de corrosión de abrazadera de acero "U" galvanizada y no galvanizada en diferentes soluciones electrolíticas y así encontrar el orden de reacción a la corrosión por las leyes de integración de velocidad. La investigación sería cualitativa y cuantitativa, ya que muestra la contribución de las observaciones experimentales al proceso de enseñanza-aprendizaje al abordar la cinética y el contenido de corrosión, así como encontrar la velocidad de corrosión y el orden de reacción. Los estudiantes mostraron que el tipo de electrolito influye en la velocidad de corrosión. Las abrazaderas no galvanizadas son más susceptibles a la corrosión cuando se usa una solución de NaOH. La solución de NaCl es relativamente débil para corroer la abrazadera, y en un medio acuoso ácido la velocidad de corrosión de la abrazadera es más alta. La corrosión de la pinza en diferentes soluciones electrolíticas se produce como una reacción de orden cero.O ensino de química gera entre estudantes uma sensação de desconforto em função das dificuldades existentes no processo ensino-aprendizagem e em muitas vezes os docentes não estão preparados para atuar de forma interdisciplinar. Diante das dificuldades, faz-se necessário a busca por metodologias de ensino que abordem o assunto de maneira contextualizada e que atraiam a atenção dos discentes. Nesta vertente, a autora buscou desenvolver uma proposta de ensino contextualizada, por meio de experimento prático, que viesse a abordar os temas corrosão e cinética, com o intuito de desenvolver nos discente o pensamento crítico. Neste contexto, o presente trabalho teve como objetivo apresentar uma metodologia de “Estudo de Caso” por meio de observação experimental da corrosão de grampo tipo “U” galvanizado e não galvanizado em diferentes soluções eletrolíticas e assim encontrar a ordem da reação de corrosão pelas leis de integração de velocidade. A pesquisa seria de natureza quali-quantitativa, pois mostra a contribuição das observações experimentais para o processo de ensino-aprendizagem ao abordar os conteúdos de cinética e corrosão, além de encontrar a taxa de corrosão e a ordem da reação. Os discentes evidenciaram que o tipo de eletrólito influencia na velocidade de corrosão. Os grampos não galvanizados estão mais suscetíveis à corrosão quando se utiliza solução de NaOH. A solução do NaCl é relativamente fraca para se corroer o grampo, e em um meio aquoso ácido, a taxa de corrosão do grampo se mostra superior. A corrosão do grampo em diferentes soluções eletrolítica segue como uma reação de ordem zero.Research, Society and Development2020-01-01info:eu-repo/semantics/articleinfo:eu-repo/semantics/publishedVersionapplication/pdfhttps://rsdjournal.org/index.php/rsd/article/view/197010.33448/rsd-v9i2.1970Research, Society and Development; Vol. 9 No. 2; e23921970Research, Society and Development; Vol. 9 Núm. 2; e23921970Research, Society and Development; v. 9 n. 2; e239219702525-3409reponame:Research, Society and Developmentinstname:Universidade Federal de Itajubá (UNIFEI)instacron:UNIFEIporhttps://rsdjournal.org/index.php/rsd/article/view/1970/1684Copyright (c) 2019 Jussara Aparecida de Oliveira Cotta, Bruno Motta Gomes, Felipe Leone de Souza Andrade, Gabriel Cooper Neves Figueireido, Geicilaine Krisdele Ferreira de Souza, Ícaro Liberto Linhares, Jordana Duarte Gomes, José Mateus Bicalho dos Santos, Luana Aparecida Gomes, Nayara Hudson do Carmo, Paloma Ellen Soares de Melo, Pedro Henrique Frade dos Santos, Rafaela Pichener de Castro Carneiro, Rafael Queiroz Quaresma de Figueiredo Torresinfo:eu-repo/semantics/openAccessCotta, Jussara Aparecida de OliveiraGomes, Bruno MottaAndrade, Felipe Leone de SouzaFigueireido, Gabriel Cooper Nevesde Souza, Geicilaine Krisdele FerreiraLinhares, Ícaro LibertoGomes, Jordana DuarteSantos, José Mateus Bicalho dosGomes, Luana AparecidaCarmo, Nayara Hudson dode Melo, Paloma Ellen SoaresSantos, Pedro Henrique Frade dosCarneiro, Rafaela Pichener de CastroTorres, Rafael Queiroz Quaresma de Figueiredo2020-08-20T18:08:48Zoai:ojs.pkp.sfu.ca:article/1970Revistahttps://rsdjournal.org/index.php/rsd/indexPUBhttps://rsdjournal.org/index.php/rsd/oairsd.articles@gmail.com2525-34092525-3409opendoar:2024-01-17T09:26:48.278174Research, Society and Development - Universidade Federal de Itajubá (UNIFEI)false
dc.title.none.fl_str_mv Kinetic and electrochemistry teaching-learning using experimental activities: case study in higher education
Enseñanza-aprendizaje cinético y electroquímico mediante actividades experimentales: estudio de caso en la educación superior
Ensino-aprendizagem de cinética e eletroquímica com uso de atividades experimentais: estudo de caso no ensino superior
title Kinetic and electrochemistry teaching-learning using experimental activities: case study in higher education
spellingShingle Kinetic and electrochemistry teaching-learning using experimental activities: case study in higher education
Cotta, Jussara Aparecida de Oliveira
Abrazadera de acero tipo U
soluciones electrolíticas
corrosión.
grampo de aço tipo “U”
soluções eletrolíticas
corrosão.
U-type steel clamp
electrolyte solutions
corrosion.
title_short Kinetic and electrochemistry teaching-learning using experimental activities: case study in higher education
title_full Kinetic and electrochemistry teaching-learning using experimental activities: case study in higher education
title_fullStr Kinetic and electrochemistry teaching-learning using experimental activities: case study in higher education
title_full_unstemmed Kinetic and electrochemistry teaching-learning using experimental activities: case study in higher education
title_sort Kinetic and electrochemistry teaching-learning using experimental activities: case study in higher education
author Cotta, Jussara Aparecida de Oliveira
author_facet Cotta, Jussara Aparecida de Oliveira
Gomes, Bruno Motta
Andrade, Felipe Leone de Souza
Figueireido, Gabriel Cooper Neves
de Souza, Geicilaine Krisdele Ferreira
Linhares, Ícaro Liberto
Gomes, Jordana Duarte
Santos, José Mateus Bicalho dos
Gomes, Luana Aparecida
Carmo, Nayara Hudson do
de Melo, Paloma Ellen Soares
Santos, Pedro Henrique Frade dos
Carneiro, Rafaela Pichener de Castro
Torres, Rafael Queiroz Quaresma de Figueiredo
author_role author
author2 Gomes, Bruno Motta
Andrade, Felipe Leone de Souza
Figueireido, Gabriel Cooper Neves
de Souza, Geicilaine Krisdele Ferreira
Linhares, Ícaro Liberto
Gomes, Jordana Duarte
Santos, José Mateus Bicalho dos
Gomes, Luana Aparecida
Carmo, Nayara Hudson do
de Melo, Paloma Ellen Soares
Santos, Pedro Henrique Frade dos
Carneiro, Rafaela Pichener de Castro
Torres, Rafael Queiroz Quaresma de Figueiredo
author2_role author
author
author
author
author
author
author
author
author
author
author
author
author
dc.contributor.author.fl_str_mv Cotta, Jussara Aparecida de Oliveira
Gomes, Bruno Motta
Andrade, Felipe Leone de Souza
Figueireido, Gabriel Cooper Neves
de Souza, Geicilaine Krisdele Ferreira
Linhares, Ícaro Liberto
Gomes, Jordana Duarte
Santos, José Mateus Bicalho dos
Gomes, Luana Aparecida
Carmo, Nayara Hudson do
de Melo, Paloma Ellen Soares
Santos, Pedro Henrique Frade dos
Carneiro, Rafaela Pichener de Castro
Torres, Rafael Queiroz Quaresma de Figueiredo
dc.subject.por.fl_str_mv Abrazadera de acero tipo U
soluciones electrolíticas
corrosión.
grampo de aço tipo “U”
soluções eletrolíticas
corrosão.
U-type steel clamp
electrolyte solutions
corrosion.
topic Abrazadera de acero tipo U
soluciones electrolíticas
corrosión.
grampo de aço tipo “U”
soluções eletrolíticas
corrosão.
U-type steel clamp
electrolyte solutions
corrosion.
description The teaching of chemistry generates among students a feeling of discomfort due to the difficulties existing in the teaching-learning process and often the teachers are not prepared to act in an interdisciplinary way. Given the difficulties, it is necessary to search for teaching methodologies that approach the subject in a contextualized way and attract the attention of students. In this regard, the author sought to develop a contextualized teaching proposal, through practical experiment, that would address the themes of corrosion and kinetics, with the aim of developing critical thinking in students. In this context, the present work aimed to present a “Case Study” methodology through experimental observation of corrosion of galvanized and non-galvanized steel clamp in different electrolytic solutions and thus find the order of corrosion reaction by speed integration laws. The research would be qualitative and quantitative, as it shows the contribution of experimental observations to the teaching-learning process by addressing the kinetics and corrosion contents, as well as finding the corrosion rate and reaction order. Students showed that the type of electrolyte influences the corrosion velocity. Non-galvanized clamps are more susceptible to corrosion when using NaOH solution. The NaCl solution is relatively weak to corrode the clamp, and in an acidic aqueous medium the clamp corrosion rate is higher. Corrosion of the clamp in different electrolyte solutions follows as a zero order reaction.
publishDate 2020
dc.date.none.fl_str_mv 2020-01-01
dc.type.driver.fl_str_mv info:eu-repo/semantics/article
info:eu-repo/semantics/publishedVersion
format article
status_str publishedVersion
dc.identifier.uri.fl_str_mv https://rsdjournal.org/index.php/rsd/article/view/1970
10.33448/rsd-v9i2.1970
url https://rsdjournal.org/index.php/rsd/article/view/1970
identifier_str_mv 10.33448/rsd-v9i2.1970
dc.language.iso.fl_str_mv por
language por
dc.relation.none.fl_str_mv https://rsdjournal.org/index.php/rsd/article/view/1970/1684
dc.rights.driver.fl_str_mv info:eu-repo/semantics/openAccess
eu_rights_str_mv openAccess
dc.format.none.fl_str_mv application/pdf
dc.publisher.none.fl_str_mv Research, Society and Development
publisher.none.fl_str_mv Research, Society and Development
dc.source.none.fl_str_mv Research, Society and Development; Vol. 9 No. 2; e23921970
Research, Society and Development; Vol. 9 Núm. 2; e23921970
Research, Society and Development; v. 9 n. 2; e23921970
2525-3409
reponame:Research, Society and Development
instname:Universidade Federal de Itajubá (UNIFEI)
instacron:UNIFEI
instname_str Universidade Federal de Itajubá (UNIFEI)
instacron_str UNIFEI
institution UNIFEI
reponame_str Research, Society and Development
collection Research, Society and Development
repository.name.fl_str_mv Research, Society and Development - Universidade Federal de Itajubá (UNIFEI)
repository.mail.fl_str_mv rsd.articles@gmail.com
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