844 resultados para Nuclear physics in high school


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The purpose of this study is to validate the Study Behavior Inventory-High School, an instrument designed to measure study behaviors of high school students and to determine the stability of its scores across populations and across grades. Numerous studies have shown the relationship between the level of students' use of appropriate study behaviors and their levels of academic achievement and this is particularly relevant at a time of increasing demands for school and teacher accountability for their students' academic achievement. ^ The instrument was administered to 3,336 students in grades 9 through 12 in four high schools in diverse parts of the United States. Factor analysis yielded a four factor structure for the instrument and evidence for its construct validity was obtained using convergent and discriminant methods. The four factors include academic self-perception and feelings of low self-efficacy, academic preparation behaviors, time management, and the social nature of taking tests and studying. Internal consistency reliability for the scores on each of the four factors was calculated and found to range between .68 and .87. Finally, confirmatory factor analysis indicated acceptable levels of fit between the factor structure obtained in this study and an earlier one obtained during a pilot study using 800 participants. ^ The SBI-HS appears to be a valid and reliable instrument for the measure of study behaviors in high school students. ^

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Neste artigo apresentamos a análise de interpretações de estudantes em trabalhos desenvolvidos em duas disciplinas de cursos de Licenciatura em Física, nas quais realizamos atividades bastante distintas, uma envolvendo a leitura e outra a observação pelos licenciandos. Buscamos compreender falas escritas pelos estudantes como parte dessas atividades, e procuramos evidenciar a diversidade de interpretações e a relevância desse trabalho para a formação inicial. O apoio teórico em que nos sustentamos foi a análise de discurso na vertente originada na França por Michel Pêcheux. A consideração da não transparência da linguagem, e as noções de condições de produção, memória discursiva e repetição, bem como alguns aportes sobre possíveis papéis da observação na construção científica, contribuíram para a compreensão de discursos escritos pelos estudantes. Mostramos a diversidade de interpretações dos licenciados: ao opinarem sobre a possibilidade ou não de se trabalhar a física moderna e contemporânea no ensino médio, depois de lerem um texto envolvendo esse tema, e ao redigirem um texto sobre a observação na pesquisa científica.

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Nesta dissertação buscou-se refletir sobre as dificuldades de professores e alunos com relação ao ensino e à prendizagem de Física no ensino médio (EM). Construída à luz da Teoria Antropológica do Didático de Yves Chevallard, esta dissertação teve por objetivo apontar caminhos para a construção de nova(s) praxeologia(s) que considerem a (re)ligação/articulação dos vários conteúdos de Física, principalmente os do primeiro ano do EM, com a Matemática, evocando particularmente os conceitos de proporcionalidade e a regra de três algebrizada, para auxiliar na compreensão dos fenômenos físicos observáveis no dia-a-dia. Por meio de entrevista semi estruturada com 5 (cinco) professores que lecionam Física no ensino médio, em São Miguel do Guamá, estado do Pará, buscou-se entender, que tipo de relação estes estabeleciam entre a Física e os conceitos de proporcionalidade e destes com os fenômenos físicos. Por meio da análise das entrevistas constatou-se que a articulação entre a Física e a Matemática, com a intenção de compreender os fenômenos físicos, não era comum na prática de ensino dos professores de Física no ensino médio.

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This work is intended to promote a reflection about the forms of work in groups for continuous training of teachers. Based on the hypothesis that the groups of study / discussion of specific topics in physics can have very effects significant and recommended by the literature, we based on the propositions of the educator José Contreras Domingo about autonomy of teachers and we does a report of an experience with group of continuing education in which they succeeded in developing the characteristics of autonomy of teachers in a job with physics teachers who participate in a group of study / discussion of topics of Modern and Contemporary Physics. In this way presents arguments relating the autonomy of teachers with the teacher continuing education and presents the report of a group of training teachers of physics who works along these lines.

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Considering the importance of the inclusion of Modern and Contemporary Physics in the curriculum of Physics in High School, it is proposed in this work an experimental activity, made with low- cost materials, which presents the photoelectric effect. This activity can be used articulating this phenomenon with some technological applications experienced by the students in their daily lives. When working the experiment, the teacher can encourage students to investigate what happens during its execution and, through questions, get them to express their ideas in the previous attempt to explain its operation. This articulation linked to social interaction in the classroom can arouse the students’curiosity and motivation of students to learn the subject taught in classroom.

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This study aims to contribute to understanding the complexity related to the definition and practice of "Didactics of Physics" in initial physics teachers training. We intend to make evident how is understood the Didactics of Physics in curricular organizations, since an "observation" from a perspective based on an analysis of theoretical frameworks of Science Teaching, according to which "Didactics of Physics" is an articulating axis between different disciplines and constitutes the knowledge body to be taught in order to teachers learn to teach physics. For that, we used techniques of documentary analysis, constituting a text from a systematic search of information about Physics teachers’ initial education programs, looking for criteria justifying their organizations and contents of disciplines that aim to contribute to the training for teaching, in a study carried out during 2011. We found on these curricular organizations the presence of disciplines in fields such as: Exact Sciences, Humanities, Social Sciences and Teaching Practice, which indicates a consideration of interdisciplinary training which must receive the future teacher. However, without being consistent with Science Education' epistemology, requesting the integration of interdisciplinary knowledge to solve problems related to teach physics in high school, with some exceptions in the preparation for the subject "traineeship" or training for "Didactic transposition", but since different interpretations.

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Acompanha: Procedimento para o uso do Tracker como objeto de ensino, suas potencialidades e dificuldades para aprendizagem de física no ensino médio

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Dissertação (mestrado)—Universidade de Brasília, Instituto de Física, Programa de Pós-Graduação em Física, Mestrado Nacional Profissional em Ensino de Física, 2015.

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Dissertação (mestrado)—Universidade de Brasília, Instituto de Física, Programa de Pós-Graduação em Física, 2015.

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My thesis falls within the framework of physics education and teaching of mathematics. The objective of this report was made possible by using geometrical (in mathematics) and qualitative (in physics) problems. We have prepared four (resp. three) open answer exercises for mathematics (resp. physics). The test batch has been selected across two different school phases: end of the middle school (third year, 8\textsuperscript{th} grade) and beginning of high school (second and third year, 10\textsuperscript{th} and 11\textsuperscript{th} grades respectively). High school students achieved the best results in almost every problem, but 10\textsuperscript{th} grade students got the best overall results. Moreover, a clear tendency to not even try qualitative problems resolution has emerged from the first collection of graphs, regardless of subject and grade. In order to improve students' problem-solving skills, it is worth to invest on vertical learning and spiral curricula. It would make sense to establish a stronger and clearer connection between physics and mathematical knowledge through an interdisciplinary approach.

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The STAR Collaboration at the Relativistic Heavy Ion Collider presents a systematic study of high-transverse-momentum charged-di-hadron correlations at small azimuthal pair separation Delta phi in d+Au and central Au+Au collisions at s(NN)=200 GeV. Significant correlated yield for pairs with large longitudinal separation Delta eta is observed in central Au+Au collisions, in contrast to d+Au collisions. The associated yield distribution in Delta eta x Delta phi can be decomposed into a narrow jet-like peak at small angular separation which has a similar shape to that found in d+Au collisions, and a component that is narrow in Delta phi and depends only weakly on Delta eta, the ""ridge."" Using two systematically independent determinations of the background normalization and shape, finite ridge yield is found to persist for trigger p(t)>6 GeV/c, indicating that it is correlated with jet production. The transverse-momentum spectrum of hadrons comprising the ridge is found to be similar to that of bulk particle production in the measured range (2 < p(t)< 4 GeV/c).

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The remarkable difference between the nuclear quadrupole frequencies v_Q of Cu(1) and Cu(2) in YBa_2Cu_3O_6 and YBa_2Cu_3O_7 is analyzed. We calculate the ionic contribution to the electric field gradients and estimate, by using experimental results for Cu_2O and La_2CuO_4, the contribution of the d valence electrons. Thus, we determine v_Q1, v_Q2, and the asymmetry parameter η for YBa_2Cu_3O_6 and YBa_2Cu_3O_7. The number of holes in dthe Cu-O planes and chains is found to be important for the different behavior of v_Q1 and v_Q2.

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The longitudinal study focuses on the success of cegep science students at one college who were accepted into the science program although their secondary school grades in chemistry and/or physics did not meet the admission requirements, These less prepared students were admitted into the science program because they were placed in remedial classes that offered support through extra class time in their introductory college science courses. The main research question addressed in this study was to determine whether accepting less prepared students is beneficial to the student in terms of academic success.