957 resultados para Mathematics education


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This report has two major objectives. First, the results of an action research project conducted at my high school concerning the use of graphic organizers and their effects on students' written expression abilities. The findings from this action research project indicate that the use of graphic organizers can prove beneficial to students. The second major objective of this report is to provide a reflection and evaluation of my experiences as a participant in the Michigan Teacher Excellence Program (MiTEP). This program provided middle and high school science teachers with an opportunity to develop research based pedagogy techniques and develop the skill necessary to serve as leaders within the public school science community. The action research project described in the first chapter of this report was a collaborative project I participated in during my enrollment in ED 5705 at Michigan Technological University. I worked closely with two other teachers in my building - Brytt Ergang and James Wright. We met several times to develop a research question, and a procedure for testing our question. Each of us investigated how the use of graphic organizers by students in our classroom might impact their performance on writing assessments. We each collected data from several of our classes. In my case I collected data from 2 different classes over 2 different assignments. Our data was collected and the results analyzed separately from classroom to classroom. After the individual classroom data and corresponding analysis was compiled my fellow collaborators and I got together to discuss our findings. We worked together to write a conclusion based on our combined results in all of our classes.

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Climate science and climate change are included in the Next Generation Science Standards, curriculum standards that were released in 2013. How to incorporate these topics, especially climate change, has been a difficult task for teachers. A team of scientists are studying aerosols in the free troposphere; what their properties are, how they change while in the atmosphere and where they came from. Lessons were created based on this real, ongoing scientific research being conducted in the Azores. During these activities, students are exposed to what scientists actually do in the form of videos and participate in similar tasks such as conducting experiments, collecting data, and analyzing data. At the conclusion of the lessons, students will form conclusions based on the evidence they have at the time.

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The use of intriguing open-ended quick-write prompts within the Basotho science classroom could potentially provide a way for secondary teachers in Lesotho to have a time-efficient alternative to stimulate student thinking and increase critical thinking or application of scientific principles. Writing can be used as a powerful means to improve the achievement of students across many subject areas, including the sciences (Moore, 1993; Rivard, 1994; Rillero, Zambo, Cleland, and Ryan, 1996; Greenstein, 2013). This study focuses on the use of a non-traditional nor extensively studied writing method that could potentially support learning in science. A quasi-experimental research design, with a control and experimental group, was applied. The study was conducted at two schools, with one experimental classroom in one school and a second control group classroom in the second school for a period of 4 weeks. 51 Form B (US Grade 9 equivalent) students participated as the experimental group and 43 Form B students as the control group. In an effort to assess learning achievement, a 1 hour (35 mark) pre-test evaluation was made by and given to students by Basotho teachers at the beginning of this study to have an idea of student’s previous knowledge. Topics covered were Static Electricity, Current Electricity, Electromagnetic Waves, and Chemistry of Water. After the experimental trial period, an almost completely identical post-test evaluation was given to students in the same fashion to observe and compare gains in achievement. Test data was analyzed using an inferential statistics procedure that compared means and gains in knowledge made by the experimental and control groups. Difference between the gains of mean pre-test and post-test scores were statistically significant within each group, but were not statistically significant when the control and experimental groups were compared. Therefore, there was no clear practical effect. Qualitative data from teachers’ journals and students’ written feedback provides insight on the assessments, incorporation of the teaching method, and the development of participating students. Both mid and post-study student feedback shows that students had an overall positive and beneficial experience participating in this activity. Assessments and teacher journals showed areas of strength and weaknesses in student learning and on differences in teaching styles. They also helped support some feedback claims made by students. Areas of further research and improvement of the incorporation of this teaching method in the Basotho secondary science classroom are explored.

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This report is a summary of the effects of the Michigan Teacher Excellence Program (MITEP) on me as a science educator. The first chapter is a report of an action research project jointly authored with two other science teachers participating in the MITEP program titled “Station Activities and Misconceptions in the Chemistry Classroom.” The second chapter is a reflective essay evaluating the impacts of the MITEP experience on my teaching skills and practice, knowledge of science education and science education research, and leadership skills. The most significant impacts were a dramatic increase in my earth science content knowledge, a deeper understanding of inquiry-based teaching methods, and an expanded professional network of science educators.

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The first chapter consists of an action research report submitted by Rebecca Joyce, Kari Luckett, and Claudia Witt as part of the Action Research class taken through the Michigan Teacher Excellence Program (MiTEP) during the winter of 2013. The research involved the use of stations to address student misconceptions in urban high school chemistry classrooms. Chapter two contains a personal reflection on the MiTEP program and how it has affected teaching strategies/practices, personal confidence, and professional relationships.

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Expertise in physics has been traditionally studied in cognitive science, where physics expertise is understood through the difference between novice and expert problem solving skills. The cognitive perspective of physics experts only create a partial model of physics expertise and does not take into account the development of physics experts in the natural context of research. This dissertation takes a social and cultural perspective of learning through apprenticeship to model the development of physics expertise of physics graduate students in a research group. I use a qualitative methodological approach of an ethnographic case study to observe and video record the common practices of graduate students in their biophysics weekly research group meetings. I recorded notes on observations and conduct interviews with all participants of the biophysics research group for a period of eight months. I apply the theoretical framework of Communities of Practice to distinguish the cultural norms of the group that cultivate physics expert practices. Results indicate that physics expertise is specific to a topic or subfield and it is established through effectively publishing research in the larger biophysics research community. The participant biophysics research group follows a learning trajectory for its students to contribute to research and learn to communicate their research in the larger biophysics community. In this learning trajectory students develop expert member competencies to learn to communicate their research and to learn the standards and trends of research in the larger research community. Findings from this dissertation expand the model of physics expertise beyond the cognitive realm and add the social and cultural nature of physics expertise development. This research also addresses ways to increase physics graduate student success towards their PhD. and decrease the 48% attrition rate of physics graduate students. Cultivating effective research experiences that give graduate students agency and autonomy beyond their research groups gives students the motivation to finish graduate school and establish their physics expertise.

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Relatório de Estágio apresentado à Escola Superior de Educação do Instituto Politécnico de Castelo Branco para cumprimento dos requisitos necessários à obtenção do grau de Mestre em Educação Pré- Escolar e 1º Ciclo do Ensino Básico.

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Matematiken är en abstrakt vetenskap. Laborativt arbete med konkret material sägs kunna överbrygga glappet mellan abstrakt och konkret. Denna kvalitativa studie syftar utforska vilka möjligheter och begränsningar lågstadielärare erfar kring konkret material. Resultatet visar att en vanlig uppfattning bland lågstadielärare är att konkret material besitter den positiva egenskapen att stötta elever i alla åldrar och nivåer i arbetet med att utveckla matematisk förståelse. Detta genom att konstruera inre bilder av matematiken hos eleverna, vilka sedan kan stötta eleverna på vägen mot matematisk abstraktion och generalisering. Arbetssättet tycks också kunna väcka intresse, nyfikenhet och lust att lära matematik samt bjuda in till rikare möjligheter till kommunikation jämfört med läroboksfokuserad undervisning. Dock har valet av konkret material betydelse. Negativa faktorer som uppmärksammats är att leklust riskerar ta fokus från matematiken samt att duktiga elever särskiljer laborativ matematik med konkret material från "riktig" matematik i läroboken. Dokumentationen av arbetet kring det konkreta materialet är dessutom tidskrävande. En slutsats som dras är att laborativt arbete med konkret material inte ensamt kan stå som bas för elevers matematiska utveckling. Däremot kan arbetssättet kombineras med lärobokens färdighetsträning och matematikdiskussioner och tillsammans bidra till fördjupad förståelse genom att eleverna i ett varierat arbetssätt tillåts möta matematikens olika uttrycksformer.

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Worldwide interest in Japanese Lesson Study as a vehicle to improve mathematics teaching practice through professional learning has left largely unanswered questions about the extent to which it can be replicated elsewhere. This paper reports some of the findings from a small-scale research project, “Implementing structured problem-solving mathematics lessons through lesson study”, carried out in three Australian schools during 2012, and continued in a modified form during 2013 and 2014. In particular, it discusses the potential contribution to teacher professional learningresulting from post-lesson discussion commentaries by “knowledgeable others” with considerable experience of and expertise in lesson study within and outside of Japan.

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The drive for the incorporation of digital technologies in the primary mathematics classroom is becoming more prevalent in our schools and curriculum documents. It is vital these technologies enrich the learning experience to make this integration worthwhile, and not simply be employed as a substitution for already satisfactory pedagogical approaches. The SAMR Model (Puentedura, 2006) incorporates four levels of technology integration in the classroom, from the simplicity of “Substitution” through to the transformative level of “Redefinition” (p. 7). In this paper, teachers from Ringwood North Primary School share how the SAMR Model impacted their teaching practice to support, enhance, and personalise student learning in mathematics through the 1:1 iPad Program. Tasks created with user-friendly and easily accessible digital resources such as Padlet, Kahoot! and Explain Everything are shared. Educators should consider the application and suitability of these digital technologies in conjunction with an appropriate level of integration prior to employment as a tool for enhancing mathematical understanding.

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Recibido 02 de setiembre de 2011 • Aceptado 23 de febrero de 2012 • Corregido 21 de marzo de 2012    La enseñanza de las Matemáticas se ha visto influenciada por la presencia de ciertos estereotipos que han determinado el comportamiento y afectado el rendimiento del estudiantado en dicha disciplina. Diversas investigaciones han señalado la relación de inequidad que hombres y mujeres poseen respecto a las matemáticas y la responsabilidad que el profesorado tiene en su construcción. Por tal motivo se plantea la necesidad de llevar a cabo acciones concretas que permitan la construcción de relaciones de equidad en dicha disciplina, basadas en los principios de respeto, solidaridad y ayuda mutua entre los géneros.