Results for 'scientific research in students'

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  1.  43
    Evaluating Scientific Research Projects: The Units of Science in the Making.Mario Bunge - 2017 - Foundations of Science 22 (3):455-469.
    Original research is of course what scientists are expected to do. Therefore the research project is in many ways the unit of science in the making: it is the center of the professional life of the individual scientist and his coworkers. It is also the means towards the culmination of their specific activities: the original publication they hope to contribute to the scientific literature. The scientific project should therefore be of central interest to all the (...) of science, particularly the philosophers and sociologists of science. We shall focus on the preliminary evaluation of research projects—the specific task of referees—and will emphasize the problem of their scientificity—the chief concern of scientific gatekeepers. In the past such an examination aimed only at protecting the taxpayer from swindlers and incompetent amateurs, such as the inventors of continuous motion artifacts. In recent times a similar issue has resurfaced with regard to some of the most prestigious and most handsomely funded projects, namely work on string theory and many-worlds cosmology. Indeed, some of their faithful have claimed that these theories are so elegant, and so full of high-grade mathematics, that they should be exempted from empirical tests. This claim provoked the spirited rebuttal of the well-known cosmologists Ellis and Silk, which the present paper is intended to reinforce. Indeed, we shall try to show why empirical testability is necessary though insufficient for a piece of work to qualify as scientific. Finally, the present paper may also be regarded as an indirect contribution to the current debate over the reliability of quantitative indicators of scientific worth, such as the h-index of scientific productivity. But we shall touch only tangentially on the sociological, political, and economics of research teams: our focus will be the acquisition of new scientific knowledge. (shrink)
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  2.  8
    Assessment of the action plan to strengthen values in students through scientific research.Alexi Domínguez Fabars, Irina Guzmán Sancho & Dania Rodríguez Carrión - 2018 - Humanidades Médicas 18 (2):228-238.
    RESUMEN La investigación científica constituye uno de los principios en los cuales se respalda la formación integral de los estudiantes de las ciencias médicas, por lo que los autores del presente texto se propusieron como objetivo exponer elementos de un plan de acciones establecido para reforzar los valores en los estudiantes de ciencias médicas centrado en la investigación científica utilizando un estudio de correlación en la facultad de Medicina de la Universidad de Ciencias Médicas, de Santiago de Cuba en el (...)
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  3. Pharma's Marketing Influence on Medical Students and the Need for Culturally Competent and Stricter Policy and Educational Curriculum in Medical Schools: A Comparative Analysis of Social Scientific Research between Poland and the U.S.Marta Makowska, George Sillup & Marvin J. H. Lee - 2017 - Journal of Healthcare Ethics and Administration 3 (2):19-33.
    It is reported that medical students both in the U.S. and Poland have experience of interacting with pharmaceutical company representatives (pharma reps) during their school years. Studies have warned that the interaction typically initiated by the pharma reps’ general gift-giving eventually leads to the quid pro quo relationship between the pharma company and the future doctors, the result of which is that the doctors will prescribe their patients drugs in favor of the pharma company. Built upon the existing finding, (...)
     
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  4. Helmut Steiner.Scientific Schools In Socialism - 1979 - In János Farkas (ed.), Sociology of Science and Research. Akadémiai Kiadó.
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  5.  8
    The Formation of Students’ Competencies during their Participation in Competitions of Applied Scientific Researches.Oleg N. Galaktionov, Yuriy V. Sukhanov, Aleksey S. Vasilyev, Artur S. Kozyr & Yelena A. Kempy - 2024 - ENCYCLOPAIDEIA 28 (68):15-27.
    The relevance of the problem under study is due to the need to improve the practical skills and competencies of students in the course of training in order to prepare them for competition with other job seekers in employment. In this regard, this article is aimed at identifying the expediency of students’ participation in competitive selections and grants as a factor that creates conditions for effective practice-oriented learning. The leading method for the study of this problem is a (...)
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  6.  10
    Teaching Scientific Integrity in Academia: What and How Students Want to Learn?N. Sira, M. Decker, C. Lemke, A. Winkens, C. Leicht-Scholten & D. Groß - forthcoming - Journal of Academic Ethics:1-20.
    Training in scientific integrity continues to be an important topic in universities and other research institutions. Its main goal is to prevent scientific misconduct and promote good scientific practice. However, there is still no consensus on how scientific integrity should be taught. Moreover, the perspective of those who receive such training is often underrepresented. Yet it is precisely their interests and needs that must be considered when developing educational programs. Against this backdrop, we conducted a (...)
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  7. Moral rural : beliefs in a changing rural world.Angel Paniagua, Spanish Council for Scientific Research, Csic, Madrid & Spain - 2014 - In Miranda Fuller (ed.), Psychology of morality: new research. Hauppauge, New York: Nova Science Publishers.
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  8. The ethical character of scientific research: the view of future doctors in education.Juan Carlos González-Acuña, Jorge Valenzuela, Carla Muñoz & Andrea Precht - 2024 - Veritas: Revista de Filosofía y Teología 57:37-57.
    Resumen: El presente artículo indaga en las representaciones de estudiantes de doctorado en educación respecto de aquellos aspectos que hacen que una investigación sea ética. La muestra estuvo compuesta por 24 estudiantes de doctorado de diversos programas chilenos (60% mujeres), entre 30 y 52 años. El diseño implicó la realización de seis grupos focales y las interacciones se registraron en audio y video. El análisis del corpus se realizó bajo un enfoque cualitativo basado en la Teoría Fundamentada de perspectiva constructivista. (...)
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  9. The myth of 'scientific method' in contemporary educational research.Darrell Patrick Rowbottom & Sarah Jane Aiston - 2006 - Journal of Philosophy of Education 40 (2):137–156.
    Whether educational research should employ the ‘scientific method’ has been a recurring issue in its history. Hence, textbooks on research methods continue to perpetuate the idea that research students ought to choose between competing camps: ‘positivist’ or ‘interpretivist’. In reference to one of the most widely referred to educational research methods textbooks on the market—namely Research Methods in Education by Cohen, Manion, and Morrison—this paper demonstrates the misconception of science in operation and the (...)
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  10.  26
    The Myth of 'Scientific Method' in Contemporary Educational Research.Darrell Patrick Rowbottom & Sarah Jane Aiston - 2006 - Journal of Philosophy of Education 40 (2):137-156.
    Whether educational research should employ the ‘scientific method’ has been a recurring issue in its history. Hence, textbooks on research methods continue to perpetuate the idea that research students ought to choose between competing camps: ‘positivist’ or ‘interpretivist’. In reference to one of the most widely referred to educational research methods textbooks on the market—namely Research Methods in Education by Cohen, Manion, and Morrison—this paper demonstrates (1) the misconception of science in operation and (...)
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  11.  9
    Prevalence of Scientific Misconduct Among a Group of Researchers in Nigeria.Theresa Rossouw Patrick Okonta - 2012 - Developing World Bioethics 13 (3):149-157.
    Background There is a dearth of information on the prevalence of scientific misconduct from Nigeria. Objectives This study aimed at determining the prevalence of scientific misconduct in a group of researchers in Nigeria. Factors associated with the prevalence were ascertained. Method A descriptive study of researchers who attended a scientific conference in 2010 was conducted using the adapted Scientific Misconduct Questionnaire‐Revised (SMQ‐R). Results Ninety‐one researchers (68.9%) admitted having committed at least one of the eight listed forms (...)
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  12.  8
    Research Doctorate Programs in the United States: Continuity and Change.Marvin L. Goldberger, Brendan A. Maher, Pamela Ebert Flattau, Committee for the Study of Research-Doctorate Programs in the United States & Conference Board of Associated Research Councils - 1995 - National Academies Press.
    Doctoral programs at U.S. universities play a critical role in the development of human resources both in the United States and abroad. This volume reports the results of an extensive study of U.S. research-doctorate programs in five broad fields: physical sciences and mathematics, engineering, social and behavioral sciences, biological sciences, and the humanities. Research-Doctorate Programs in the United States documents changes that have taken place in the size, structure, and quality of doctoral education since the widely used 1982 (...)
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  13.  20
    Prevalence of Scientific Misconduct Among a Group of Researchers in Nigeria.Patrick Okonta & Theresa Rossouw - 2012 - Developing World Bioethics 13 (3):149-157.
    Background There is a dearth of information on the prevalence of scientific misconduct from Nigeria. Objectives This study aimed at determining the prevalence of scientific misconduct in a group of researchers in Nigeria. Factors associated with the prevalence were ascertained. Method A descriptive study of researchers who attended a scientific conference in 2010 was conducted using the adapted Scientific Misconduct Questionnaire-Revised (SMQ-R). Results Ninety-one researchers (68.9%) admitted having committed at least one of the eight listed forms (...)
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  14.  49
    Scientific Discovery in the Social Sciences.Mark Addis, Fernand Gobet & Peter Sozou (eds.) - 2019 - Springer Verlag.
    This volume offers selected papers exploring issues arising from scientific discovery in the social sciences. It features a range of disciplines including behavioural sciences, computer science, finance, and statistics with an emphasis on philosophy. The first of the three parts examines methods of social scientific discovery. Chapters investigate the nature of causal analysis, philosophical issues around scale development in behavioural science research, imagination in social scientific practice, and relationships between paradigms of inquiry and scientific fraud. (...)
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  15.  51
    Text-Based Plagiarism in Scientific Writing: What Chinese Supervisors Think About Copying and How to Reduce it in Students’ Writing.Yongyan Li - 2013 - Science and Engineering Ethics 19 (2):569-583.
    Text-based plagiarism, or textual copying, typically in the form of replicating or patchwriting sentences in a row from sources, seems to be an issue of growing concern among scientific journal editors. Editors have emphasized that senior authors (typically supervisors of science students) should take the responsibility for educating novices against text-based plagiarism. To address a research gap in the literature as to how scientist supervisors perceive the issue of textual copying and what they do in educating their (...)
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  16.  6
    A corpus-based contrastive study of the appraisal systems in English and Chinese scientific research articles.Xu Yuchen - 2022 - New York, NY: Routledge. Edited by Yan Xuan, Su Rui & Kou Ying.
    Appraisal is the way language users express their attitude towards things, people, behaviour or ideas. In the last few decades, significant achievements have been made in Appraisal Theory research, yet little attention has been paid to appraisal in scientific texts, especially in relation to the contrast to how it is applied in English and Chinese. This title examines the similarities and differences of Appraisal systems in English and Chinese scientific research articles. Using a self-constructed corpus of (...)
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  17.  26
    Scientific Integrity in Brazil.Liliane Lins & Fernando Martins Carvalho - 2014 - Journal of Bioethical Inquiry 11 (3):283-287.
    This article focuses on scientific integrity and the identification of predisposing factors to scientific misconduct in Brazil. Brazilian scientific production has increased in the last ten years, but the quality of the articles has decreased. Pressure on researchers and students for increasing scientific production may contribute to scientific misconduct. Cases of misconduct in science have been recently denounced in the country. Brazil has important institutions for controlling ethical and safety aspects of human research, (...)
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  18.  19
    Scientific controversies in teaching science: the case of Volta.Nahum Kipnis - 2001 - Science & Education 10 (1-2):33-49.
    This paper discusses a way of introducing a scientific controversy, which emphasizes objective aspects of such issues as multiple theoretical interpretation of phenomena, choosing a theory, insistence on the chosen theory, and others. The goal is to give students a better insight into the workings of science and provide guidelines for building theories in their own research.
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  19.  47
    Judging the plausibility of arguments in scientific texts: a student–scientist comparison.Sarah von der Mühlen, Tobias Richter, Sebastian Schmid, Elisabeth Marie Schmidt & Kirsten Berthold - 2016 - Thinking and Reasoning 22 (2):221-249.
    ABSTRACTThe ability to evaluate scientific claims and evidence is an important aspect of scientific literacy and requires various epistemic competences. Readers spontaneously validate presented information against their knowledge and beliefs but differ in their ability to strategically evaluate the soundness of informal arguments. The present research investigated how students of psychology, compared to scientists working in psychology, evaluate informal arguments. Using a think-aloud procedure, we identified the specific strategies students and scientists apply when judging the (...)
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  20.  37
    Scientific dishonesty--questionnaire to doctoral students in Sweden.T. Nilstun, R. Lofmark & A. Lundqvist - 2010 - Journal of Medical Ethics 36 (5):315-318.
    Scientific dishonesty’ implies the fabrication, falsification or plagiarism in proposing, performing or reviewing research or in reporting research results. A questionnaire was given to postgraduate students at the medical faculties in Sweden who attended a course in research ethics during the academic year 2008/2009 and 58% answered (range 29%–100%). Less than one-third of the respondents wrote that they had heard about scientific dishonesty in the previous 12 months. Pressure, concerning in what order the author (...)
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  21.  4
    Language and Scientific Research.Wenceslao J. Gonzalez (ed.) - 2021 - Springer Verlag.
    This book analyzes the role of language in scientific research and develops the semantics of science from different angles. The philosophical investigation of the volume is divided into four parts, which covers both basic science and applied science: I) The Problem of Reference and Potentialities of the Language in Science; II) Language and Change in Scientific Research: Evolution and Historicity; III) Scientific Language in the Context of Truth and Fiction; and IV) Language in Mathematics and (...)
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  22.  63
    A review of the types of scientific misconduct in biomedical research[REVIEW]Malhar N. Kumar - 2008 - Journal of Academic Ethics 6 (3):211-228.
    Biomedical research has increased in magnitude over the last two decades. Increasing number of researchers has led to increase in competition for scarce resources. Researchers have often tried to take the shortest route to success which may involve performing fraudulent research. Science suffers from unethical research as much time, effort and cost is involved in exposing fraud and setting the standards right. It is better for all students of science to be aware of the methods used (...)
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  23. Unethical Author Attribution.Anonymous M. D./PhD Student, Charles Weijer & Akira Akabayashi - 2003 - Cambridge Quarterly of Healthcare Ethics 12 (1):124-130.
    I am an M.D/Ph.D. student and work as a research assistant for the director of a division of the school of medicine who is an M.D. He assigned me to research a certain topic and gave me no guidelines or guidance as to how to do it. Nevertheless, I did the research and wrote it up. My supervisor liked the report and said that he thought it was so good that “I would like to offer you the (...)
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  24.  20
    Good Scientific Practice: Developing a Curriculum for Medical Students in Germany.Katharina Fuerholzer, Maximilian Schochow & Florian Steger - 2020 - Science and Engineering Ethics 26 (1):127-139.
    German medical schools have not yet sufficiently introduced students to the field of good scientific practice. In order to prevent scientific misconduct and to foster scientific integrity, courses on GSP must be an integral part of the curriculum of medical students. Based on a review of the literature, teaching units and materials for two courses on GSP were developed and tested in a pilot course. The pilot course was accompanied by a pre-post evaluation that assessed (...)
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  25.  16
    A new framework for teaching scientific reasoning to students from application-oriented sciences.Wybo Houkes & Krist Vaesen - 2021 - European Journal for Philosophy of Science 11 (2):1-16.
    About three decades ago, the late Ronald Giere introduced a new framework for teaching scientific reasoning to science students. Giere’s framework presents a model-based alternative to the traditional statement approach—in which scientific inferences are reconstructed as explicit arguments, composed of (single-sentence) premises and a conclusion. Subsequent research in science education has shown that model-based approaches are particularly effective in teaching science students how to understand and evaluate scientific reasoning. One limitation of Giere’s framework, however, (...)
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  26. Scientific dishonesty—a nationwide survey of doctoral students in Norway.Bjørn Hofmann, Anne Ingeborg Myhr & Søren Holm - 2013 - BMC Medical Ethics 14 (1):3-.
    Background: The knowledge of scientific dishonesty is scarce and heterogeneous. Therefore this study investigates the experiences with and the attitudes towards various forms of scientific dishonesty among PhD-students at the medical faculties of all Norwegian universities.MethodAnonymous questionnaire distributed to all post graduate students attending introductory PhD-courses at all medical faculties in Norway in 2010/2011. Descriptive statistics. Results: 189 of 262 questionnaires were returned (72.1%). 65% of the respondents had not, during the last year, heard or read (...)
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  27.  6
    Supporting women’s research in predominantly undergraduate institutions: Experiences with a National Science Foundation ADVANCE Institutional Transformation Award.Vita C. Rabinowitz & Virginia Valian - 2022 - Frontiers in Psychology 13.
    This paper describes the Gender Equity Project at Hunter College of the City University of New York, funded by the U. S. NSF ADVANCE Institutional Transformation Award program. ADVANCE supports system-level strategies to promote gender equity in the social and natural sciences, but has supported very few teaching-intensive institutions. Hunter College is a teaching-intensive institution in which research productivity among faculty is highly valued and counts toward tenure and promotion. We created the GEP to address the particular challenges that (...)
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  28.  3
    Philosophical Bases of Scientific Ethics in Adherence to Scientific Method.David Alfaro Siqueiros Beltrones - 2022 - International Journal of Philosophy 10 (4):153.
    Considerations on scientific ethics for science student are exposed which are required in order to achieve an adequate formation consistent with the intelectual nature of the pursued scientific investiture. This situation is analyzed from the philosophy of science perspective which in this case is strongly supported on the empirical basis of scientific praxis. The philosophical bases for understanding ethics are explained remarking the influence of various philosophical doctrines or schools of thought and underlyning the confusion between moral (...)
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  29.  14
    Franciscan Scientific Efforts in Ljubljana.Stanislav Južnič - 2011 - Franciscan Studies 69:491-507.
    In lieu of an abstract, here is a brief excerpt of the content:1. IntroductionThe scientific efforts of Jesuits were the hot topics of the history of science. It was said that you could find a Jesuit behind most of the scientific accomplishments of the seventeenth or eighteenth centuries. The idea was not far from the truth because Athanasius Kircher of Rudjer Josip Bošković proved to be among the best. But Jesuit studies seem to have passed their peak and (...)
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  30. Graduate Socialization in the Responsible Conduct of Research: A National Survey on the Research Ethics Training Experiences of Psychology Doctoral Students.Lindsay G. Feldman, Adam L. Fried & Celia B. Fisher - 2009 - Ethics and Behavior 19 (6):496-518.
    Little is known about the mechanisms by which psychology graduate programs transmit responsible conduct of research (RCR) values. A national sample of 968 current students and recent graduates of mission-diverse doctoral psychology programs completed a Web-based survey on their research ethics challenges, perceptions of RCR mentoring and department climate, whether they were prepared to conduct research responsibly, and whether they believed psychology as a discipline promotes scientific integrity. Research experience, mentor RCR instruction and modeling, (...)
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  31.  36
    Reflections on the preservation of recent scientific heritage in dispersed university collections.Nicholas Jardine - 2013 - Studies in History and Philosophy of Science Part A 44 (4):735-743.
    The bulk of the significant recent scientific heritage of universities is not to be found in accredited science museums or collections employed in research. Rather it is located in a wide variety of more informal collections, assemblages and accumulations. The selection and documentation of such materials is very often unsystematic and many of them are vulnerable to changes of staff, relocation and, above all, shortage of space. Following a survey of views on the values of the recent material (...)
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  32.  43
    Scientific misconduct and findings against graduate and medical students.Debra M. Parrish - 2004 - Science and Engineering Ethics 10 (3):483-491.
    Allegations of scientific misconduct against graduate students appear to have unique attributes in the detection, investigation, processes used and sanctions imposed vis-à-vis other populations against which misconduct is alleged and found. An examination of the cases closed by the Department of Health and Human Services’ Office of Research Integrity and the National Science Foundation reveals that most of the allegations made against graduate and medical students are for falsification and fabrication. Further, additional processes are used in (...)
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  33.  9
    Education Support by Research in Local Transportation History.Frank Schindler & Juraj Štefanovič - 2016 - Creative and Knowledge Society 6 (1):1-12.
    Aim of the article is to present our research dealing with virtual reality modeling and education activities. It involves a chain of development steps: taking pictures of objects, collecting information, creation of 3D models and panoramas, setting up the interactive virtual reality environment along with educational support and testing the user experience with students. Methodology/methods of work: the creation of 3D models and panoramas is done by taking pictures of real objects and using them as textures. The education (...)
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  34.  11
    In Dialogue: Response to Frede V. Nielsen's?Didactology as a Field of Theory and Research in Music Education?Sophie Haroutunian-Gordon - 2005 - Philosophy of Music Education Review 13 (1):95-98.
    In lieu of an abstract, here is a brief excerpt of the content:Philosophy of Music Education Review 13.1 (2005) 95-98 [Access article in PDF] Response to Frede V. Nielsen's "Didactology as a Field of Theory and Research in Music Education" Sophie Haroutunian-Gordon Northwestern University Let me begin by acknowledging what is about to become obvious: I am not a musicologist, music educator, or a philosopher of music education. I am, however, a philosopher of education and a devoted student of (...)
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  35.  29
    Towards a Philosophically Guided Schema for Studying Scientific Explanation in Science Education.Sahar Alameh & Fouad Abd-El-Khalick - 2018 - Science & Education 27 (9):831-861.
    Stemming from the realization of the importance of the role of explanation in the science classroom, the Next Generation Science Standards call for appropriately supporting students to learn science, argue from evidence, and provide explanations. Despite the ongoing emphasis on explanations in the science classroom, there seems to be no well-articulated framework that supports students in constructing adequate scientific explanations, or that helps teachers assess student explanations. Our motivation for this article is twofold: First, we think that (...)
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  36.  11
    Educating students and future researchers about academic misconduct and questionable collaboration practices.Thomas Edward Gladwin - 2018 - International Journal for Educational Integrity 14 (1).
    Academic education largely concerns knowledge and skills. Where there is attention to ethics, this tends to focus on study-related misconduct such as plagiarising assignments and, more recently, methodological misconduct. The current paper argues that it is also essential to teach students about social misconduct in science, with a focus on questionable collaboration practices. First, this would increase future early career researchers’ ability to succeed and avoid academic snares. Enhancing this ability would appear to be an ethical responsibility going hand-in-hand (...)
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  37.  2
    Classical authors and “scientificresearch in the early years of the Manchester Literary and Philosophical Society, 1781–1800.Heather Ellis - 2022 - Intellectual History Review 32 (3):473-501.
    While a clear distinction was drawn between “classical learning” and “modern science” at Oxford and Cambridge Universities in the early nineteenth century, we see no such contrast being made in other spaces of knowledge making, such as the Manchester Literary and Philosophical Society. Drawing on Bacon's insistence that his inductive method should apply across all fields of knowledge, early members of the Society interpreted “science” as referring to any systematic inquiry utilising an empirical approach. An investigation of the ways in (...)
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  38.  14
    Off-time higher education as a risk factor in identity formation.War Konrad Educational Research Institute, Radosław Kaczan & Małgorzata Rękosiewicz - 2013 - Polish Psychological Bulletin 44 (3):299-309.
    One of the important determinants of development during the transition to adulthood is the undertaking of social roles characteristic of adults, also in the area of finishing formal education, which usually coincides with beginning fulltime employment. In the study discussed in this paper, it has been hypothesized that continuing full-time education above the age of 26, a phenomenon rarely observed in Poland, can be considered as an unpunctual event that may be connected with difficulties in the process of identity formation. (...)
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  39.  8
    An Assessment of Research-Doctorate Programs in the United States: Mathematical and Physical Sciences.Lyle V. Jones, Gardner Lindzey, Porter E. Coggeshall & Conference Board of the Associated Research Councils - 1982 - National Academies Press.
    The quality of doctoral-level chemistry (N=145), computer science (N=58), geoscience (N=91), mathematics (N=115), physics (N=123), and statistics/biostatistics (N=64) programs at United States universities was assessed, using 16 measures. These measures focused on variables related to: program size; characteristics of graduates; reputational factors (scholarly quality of faculty, effectiveness of programs in educating research scholars/scientists, improvement in program quality during the last 5 years); university library size; research support; and publication records. Chapter I discusses prior attempts to assess quality in (...)
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  40.  19
    Primary studentsscientific reasoning and discourse during cooperative inquiry-based science activities.Robyn M. Gillies, Kim Nichols, Gilbert Burgh & Michele Haynes - 2013 - International Journal of Educational Research 63:127–140.
    Teaching children to ask and answer questions is critically important if they are to learn to talk and reason effectively together, particularly during inquiry-based science where they are required to investigate topics, consider alternative propositions and hypotheses, and problem-solve together to propose answers, explanations, and prediction to problems at hand. This study involved 108 students (53 boys and 55 girls) from seven, Year 7 teachers’ classrooms in five primary schools in Brisbane, Australia. Teachers were randomly allocated by school to (...)
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  41.  37
    A Room with a View of Integrity and Professionalism: Personal Reflections on Teaching Responsible Conduct of Research in the Neurosciences.Emily Bell - 2015 - Science and Engineering Ethics 21 (2):461-469.
    Neuroscientists are increasingly put into situations which demand critical reflection about the ethical and appropriate use of research tools and scientific knowledge. Students or trainees also have to know how to navigate the ethical domains of this context. At a time when neuroscience is expected to advance policy and practice outcomes, in the face of academic pressures and complex environments, the importance of scientific integrity comes into focus and with it the need for training at the (...)
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  42.  13
    Response to Frede V. Nielsen's "Didactology as a Field of Theory and Research in Music Education".Sophie Haroutunian-Gordon - 2005 - Philosophy of Music Education Review 13 (1):95-98.
    In lieu of an abstract, here is a brief excerpt of the content:Philosophy of Music Education Review 13.1 (2005) 95-98 [Access article in PDF] Response to Frede V. Nielsen's "Didactology as a Field of Theory and Research in Music Education" Sophie Haroutunian-Gordon Northwestern University Let me begin by acknowledging what is about to become obvious: I am not a musicologist, music educator, or a philosopher of music education. I am, however, a philosopher of education and a devoted student of (...)
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  43. Insight into scientific-research in indian universities and the institutes of technology.R. Ahmed, M. Rakesh, N. Awashi & S. Kanta - 1992 - Minerva 30 (1):62-100.
     
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  44.  8
    Design Principles for Promoting Students’ Social Scientific Reasoning About Social Problems.Thomas Klijnstra, Gerhard L. Stoel, Gerard J. F. Ruijs, Geerte M. Savenije & Carla A. M. van Boxtel - forthcoming - Journal of Social Studies Research.
    Social scientific reasoning (SSR) is essential to social science education and to a democratic society as a whole. Students are challenged to analyze and reason about social problems such as social inequality, crime, and poverty. However, students experience difficulties with SSR. This study addresses the research question: Which design principles can guide teachers in designing lessons that promote social scientific reasoning? In this design-based research, four social science teachers employed a conceptualization of SSR and (...)
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  45.  8
    An Assessment of Research-Doctorate Programs in the United States: Biological Sciences.Lyle V. Jones, Gardner Lindzey, Porter E. Coggeshall & Conference Board of the Associated Research Councils - 1982 - National Academies Press.
    The quality of doctoral-level biochemistry (N=139), botany (N=83), cellular/molecular biology (N=89), microbiology (N=134), physiology (N=101), and zoology (N=70) programs at United States universities was assessed, using 16 measures. These measures focused on variables related to: (1) program size; (2) characteristics of graduates; (3) reputational factors (scholarly quality of faculty, effectiveness of programs in educating research scholars/scientists, improvement in program quality during the last 5 years); (4) university library size; (5) research support; and (6) publication records. Chapter I discusses (...)
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  46.  29
    Conflict of Interest in Scientific Research in China: A Socio-ethical Analysis of He Jiankui’s Human Genome-editing Experiment.Jing-Bao Nie, Guangkuan Xie, Hua Chen & Yali Cong - 2020 - Journal of Bioethical Inquiry 17 (2):191-201.
    Extensive conflicts of interest at both individual and institutional levels are identifiable in scientific research and healthcare in China, as in many other parts of the world. A prominent new case from China is He Jiankui’s experiment that produced the world’s first gene-edited babies and that raises numerous ethical, political, socio-cultural, and transnational questions. Serious financial and other COI were involved in He’s genetic adventure. Using He’s infamous experiment as a case study, this paper explores the wider issue (...)
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  47.  23
    Improving student success in chemistry through cognitive science.JudithAnn R. Hartman, Eric A. Nelson & Paul A. Kirschner - 2022 - Foundations of Chemistry 24 (2):239-261.
    Chemistry educator Alex H. Johnstone is perhaps best known for his insight that chemistry is best explained using macroscopic, submicroscopic, and symbolic perspectives. But in his writings, he stressed a broader thesis, namely that teaching should be guided by scientific research on how the brain learns: cognitive science. Since Johnstone’s retirement, science’s understanding of learning has progressed rapidly. A surprising discovery has been when solving chemistry problems of any complexity, reasoning does not work: students must apply very-well-memorized (...)
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  48.  8
    Scientific Research in World War II: What Scientists Did in the War - Edited by Ad Maas and Hans Hooijmaijers.Peter Barker - 2009 - Centaurus 51 (4):324-326.
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  49. The evaluation of scientific research in democratic societies: Kitcher, Rawls and the approach of scientific significant truths.Ignacio Mastroleo - 2011 - Revista Redbioética/UNESCO 2 (4):43-60.
    This paper critically assesses the model of evaluation of scientific research for democratic societies defended by Philip Kitcher. The “significant truth” approach proposes a viable alternative to two classic images of science: that of the “critics”, who believe that science always serves the interests of the powerful and that of the “faithful”, who argue that the pursuit of scientific knowledge is always valuable and necessary. However, the democratic justification of Kitcher’s proposal is not compatible with the ethical (...)
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  50.  22
    The Postmodern University?: Contested Visions of Higher Education in Society.Anthony Smith, Frank Webster & Society for Research Into Higher Education - 1997 - Open University Press.
    Higher education has been changing radically in recent years, with increasing numbers of students, and complaints about declining standards. This volume brings together leading intellectuals from the US and UK to examine the issues involved.
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