Results for 'Physics Research'

934 found
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  1. Epistemic Injustice in Research Evaluation: A Cultural Analysis of the Humanities and Physics in Estonia.Endla Lõhkivi, Katrin Velbaum & Jaana Eigi - 2012 - Studia Philosophica Estonica 5 (2):108-132.
    This paper explores the issue of epistemic injustice in research evaluation. Through an analysis of the disciplinary cultures of physics and humanities, we attempt to identify some aims and values specific to the disciplinary areas. We suggest that credibility is at stake when the cultural values and goals of a discipline contradict those presupposed by official evaluation standards. Disciplines that are better aligned with the epistemic assumptions of evaluation standards appear to produce more "scientific" findings. To restore epistemic (...)
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  2. How research programs come apart: The example of supersymmetry and the disunity of physics.Lucas Gautheron & Elisa Omodei - 2023 - Quantitative Science Studies 4 (3):671–699.
    According to Peter Galison, the coordination of different “subcultures” within a scientific field happens through local exchanges within “trading zones.” In his view, the workability of such trading zones is not guaranteed, and science is not necessarily driven towards further integration. In this paper, we develop and apply quantitative methods (using semantic, authorship, and citation data from scientific literature), inspired by Galison’s framework, to the case of the disunity of high-energy physics. We give prominence to supersymmetry, a concept that (...)
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  3. Explaining unification in physics internally.Kian Salimkhani - 2021 - Synthese 198 (6):5861–5882.
    In this paper I challenge two widespread convictions about unification in physics: unification is an aim of physics and unification is driven by metaphysical or metatheoretical presuppositions. I call these external explanations of why there is unification in physics. Against this, I claim that unification is a by-product of physical research and unification is driven by basic methodological strategies of physics alone. I call this an internal explanation of why there is unification in physics. (...)
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  4. Tangled physics: Knots strain intuitive physical reasoning.Chaz Firestone & Sholei Croom - 2024 - Open Mind.
    Whereas decades of research have cataloged striking errors in physical reasoning, a resurgence of interest in intuitive physics has revealed humans’ remarkable ability to successfully predict the unfolding of physical scenes. A leading interpretation intended to resolve these opposing results is that physical reasoning recruits a general-purpose mechanism that reliably models physical scenarios (explaining recent successes), but overly contrived tasks or impoverished and ecologically invalid stimuli can produce poor performance (accounting for earlier failures). But might there be tasks (...)
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  5. Einstein’s 1905 ‘Annus Mirabilis’: Reconciliation of the Basic Research Traditions of Classical Physics.Rinat M. Nugayev - 2019 - Axiomathes 29 (3):207-235.
    To make out in what way Einstein’s manifold 1905 ‘annus mirabilis’ writings hang together one has to take into consideration Einstein’s strive for unity evinced in his persistent attempts to reconcile the basic research traditions of classical physics. Light quanta hypothesis and special theory of relativity turn out to be the contours of a more profound design, mere milestones of implementation of maxwellian electrodynamics, statistical mechanics and thermodynamics reconciliation programme. The conception of luminiferous ether was an insurmountable obstacle (...)
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  6. Physics and Philosophy of Physics in the Work of Mario Bunge.Gustavo E. Romero - 2019 - In Michael Robert Matthews (ed.), Mario Bunge: A Centenary Festschrift. Springer. pp. 289-301.
    This brief review of Mario Bunge’s research on physics begins with an analysis of his masterpiece Foundations of Physics, and then it discusses his other contributions to the philosophy of physics. Following that is a summary of his more recent reactions to scientific discoveries in physics and a discussion of his position about non-locality in quantum mechanics, as well as his changing opinions on the nature of spacetime. The paper ends with a brief assessment of (...)
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  7. THE INCREASING PHYSICAL INACTIVITY OF TEENAGERS AGED 12-16 YEARS OLD OF SAINT JOSEPH COLLEGE.Louie Gula & Kevin Sumayang - 2022 - MEDIKORA 21 (1):1-11.
    This study aims to identify the following factors that affect the physical inactivity of the students in saint joseph college aged 12- 16 years old. It aims to understand the impact of this crisis and how to address this pressing issue. A descriptive- survey research design was utilized to document the respondents' behavior, demographics, and experiences correlated to the questions provided. The questionnaire includes 15-item questions that seek to gather information on their basic profile, current experiences, and behavior towards (...)
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  8. Physical-object ontology, verbal disputes, and common sense.Eli Hirsch - 2005 - Philosophy and Phenomenological Research 70 (1):67–97.
    Two main claims are defended in this paper: first, that typical disputes in the literature about the ontology of physical objects are merely verbal; second, that the proper way to resolve these disputes is by appealing to common sense or ordinary language. A verbal dispute is characterized not in terms of private idiolects, but in terms of different linguistic communities representing different positions. If we imagine a community that makes Chisholm's mereological essentialist assertions, and another community that makes Lewis's four-dimensionalist (...)
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  9. Physical Mathematics and The Fine-Structure Constant.Michael A. Sherbon - 2018 - Journal of Advances in Physics 14 (3):5758-64.
    Research into ancient physical structures, some having been known as the seven wonders of the ancient world, inspired new developments in the early history of mathematics. At the other end of this spectrum of inquiry the research is concerned with the minimum of observations from physical data as exemplified by Eddington's Principle. Current discussions of the interplay between physics and mathematics revive some of this early history of mathematics and offer insight into the fine-structure constant. Arthur Eddington's (...)
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  10. Space Emergence in Contemporary Physics: Why We Do Not Need Fundamentality, Layers of Reality and Emergence.Baptiste Le Bihan - 2018 - Disputatio 10 (49):71-95.
    ‘Space does not exist fundamentally: it emerges from a more fundamental non-spatial structure.’ This intriguing claim appears in various research programs in contemporary physics. Philosophers of physics tend to believe that this claim entails either that spacetime does not exist, or that it is derivatively real. In this article, I introduce and defend a third metaphysical interpretation of the claim: reductionism about space. I argue that, as a result, there is no need to subscribe to fundamentality, layers (...)
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  11. Quantum Physics Seen from a Perspective of the Humanities.Yusuke Kaneko - 2017 - The Basis: The Annual Bulletin of ResearchCenter for Liberal Education (Musashino University) 7:171-193.
    Although written in Japanese, an overall picture of quantum physics is drawn, which would surely be useful for beginners as well as researchers of the humanities.
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  12. ​​Our Fundamental Physical Space: An Essay on the Metaphysics of the Wave Function.Eddy Keming Chen - 2017 - Journal of Philosophy 114 (7):333-365.
    The mathematical structure of realist quantum theories has given rise to a debate about how our ordinary 3-dimensional space is related to the 3N-dimensional configuration space on which the wave function is defined. Which of the two spaces is our (more) fundamental physical space? I review the debate between 3N-Fundamentalists and 3D-Fundamentalists and evaluate it based on three criteria. I argue that when we consider which view leads to a deeper understanding of the physical world, especially given the deeper topological (...)
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  13. Explanation and Definition in Physics I 1.Lucas Angioni - 2001 - Apeiron 34 (4):307 - 320.
    I discuss Aristotle's anomalous terminology in Physics A.1 (involving "universals" and "particulars") and its coherence with Aristotle's notion of scientific demonstration.
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  14. Endurance work’: embodiment and the mind-body nexus in the physical culture of high-altitude mountaineering.Jacquelyn Allen-Collinson, Lee Crust & Christian Swann - 2018 - Sociology 52 (6):1324-1341.
    The 2015 Nepal earthquake and avalanche on Mount Everest generated one of the deadliest mountaineering disasters in modern times, bringing to media attention the physical-cultural world of high-altitude climbing. Contributing to the current sociological concern with embodiment, here we investigate the lived experience and social ‘production’ of endurance in this sociologically under-researched physical-cultural world. Via a phenomenological-sociological framework, we analyse endurance as cognitively, corporeally and interactionally lived and communicated, in the form of ‘endurance work’. Data emanate from in-depth interviews with (...)
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  15. Physical Signals and their Thermonuclear Astrochemical Potentials: A Review on Outer Space Technologies.Yang Immanuel Pachankis - 2022 - International Journal of Innovative Science and Research Technology 7 (5):669-674.
    The article reviews on the technical attributes on current technologies deployed in outer space and those that are being developed and mass produced. The article refutes the Chinese state-controlled Xinhua News’ propaganda several years ago on objecting America’s deployment of nuclear technologies in outer space with rigorous scientific evidence. Furthermore, the article warns on the dangers of physical signals applied in outer space technologies that can threaten the solar system, especially the Mozi quantum satellite with photon beams. The article concludes (...)
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  16. Understanding Physics: ‘What?’, ‘Why?’, and ‘How?’.Mario Hubert - 2021 - European Journal for Philosophy of Science 11 (3):1-36.
    I want to combine two hitherto largely independent research projects, scientific understanding and mechanistic explanations. Understanding is not only achieved by answering why-questions, that is, by providing scientific explanations, but also by answering what-questions, that is, by providing what I call scientific descriptions. Based on this distinction, I develop three forms of understanding: understanding-what, understanding-why, and understanding-how. I argue that understanding-how is a particularly deep form of understanding, because it is based on mechanistic explanations, which answer why something happens (...)
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  17. Physical contiguism.Marvin Eli Kirsh - unknown
    An ‘ism”, ‘physical contiguism’ is introduced from a perspective of retrospection on the evolution of ideas, science and philosophy to expose a speculated trend in the course of human reasoning as it cannot be but argued to be but both perception dependant and species specific and without an established means for conceptual grounding relative to these factors.
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  18. Physics is Part of Culture and the Basis of Technology.Stephan Hartmann & Jürgen Mittelstrass - 2000 - In DPG (ed.), Physics - Physics Research: Topics, Significance and Prospects. DPG.
    Fundamental aspects of modern life owe their existence to the achievements of scientific reason. In other words, science is an integral element of the modern world and simultaneously the epitome of the rational nature of a technical culture that makes up the essence of the modern world. Without science, the modern world would lose its very nature and modern society its future. Right from the start, physics forms the core of European scientific development. It is the original paradigm of (...)
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  19. Lived Experiences of Out-of-Field Senior High School Teachers Teaching Physical Science.Leizl F. Abrantes & Anna Larissa A. Bargamento - 2024 - International Journal of Multidisciplinary Educational Research and Innovation 2 (1):117- 143.
    This study investigated the experiences of Physical Science teachers who were not specialized in their field. Twelve out-of-field Physical Science teachers, selected via purposive sampling from the Schools Division of Baybay City, participated in the transcendental phenomenological study. For data collection and subsequent thematic analysis using Colaizzi's seven steps, in-depth semi-structured interviews were utilized. Five metaphors describe the study's findings in the form of emergent themes. The first theme is the Chameleon teacher described as an adaptable teacher, analogous to a (...)
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  20. What are physical objects?Ned Markosian - 2000 - Philosophy and Phenomenological Research 61 (2):375-395.
    The concept of a physical object has figured prominently in the history of philosophy, and is probably more important now than it has ever been before. Yet the question What are physical objects?, i.e., What is the correct analysis of the concept of a physical object?, has received surprisingly little attention. The purpose of this paper is to address this question. I consider several attempts at answering the question, and give my reasons for preferring one of them over its rivals. (...)
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  21. Estimating the Impact of Physical Climate Risks on Firm Defaults: A Supply-Chain Perspective.Jan De Spiegeleer, Ruben Kerkhofs, Gregory van Kruijsdijk & Wim Schoutens - 2024 - The Global Research Alliance for Sustainable Finance and Investment.
    In this research, an agent-based model was developed to study the propagation of physical climate shocks through supply chain networks. By combining supply chain and financial models, the study examines the effects of climate shocks on firms’ production capacities and their subsequent impacts on firm default risk. A comprehensive mathematical framework is presented for the simulation of physical risks, their subsequent up- and downstream impacts along the supply chain, and the translation of physical impacts into an increased level of (...)
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  22. Physics Quest: Digital Game-Based Lessons for Seventh Grade.Maricel Gaviño & John Vincent Aliazas - 2024 - International Journal for Science and Advance Research in Technology 10 (2):82-93.
    This study sought to create a digital game-based physics lesson for seventh-grade students. It sought answers to respondents' least mastered competencies in physics by identifying their preferred game-based learning activity and determining their level of critical thinking, creative thinking, and problem-solving. A descriptive-developmental design was used in the study of selected learners from 129 grade 7 students, carried out at Bukal Sur National High School in Candelaria, Quezon, during the academic year 2022-2023. The study's findings revealed that the (...)
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  23. Primitive Ontology and the Structure of Fundamental Physical Theories.Valia Allori - 2013 - In Alyssa Ney & David Albert (eds.), The Wave Function: Essays on the Metaphysics of Quantum Mechanics. , US: Oxford University Press USA. pp. 58-75.
    For a long time it was believed that it was impossible to be realist about quantum mechanics. It took quite a while for the researchers in the foundations of physics, beginning with John Stuart Bell [Bell 1987], to convince others that such an alleged impossibility had no foundation. Nowadays there are several quantum theories that can be interpreted realistically, among which Bohmian mechanics, the GRW theory, and the many-worlds theory. The debate, though, is far from being over: in what (...)
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  24. (1 other version)Has Science Established that the Cosmos is Physically Comprehensible?Nicholas Maxwell - 2013 - In Recent Advances in Cosmology. Nova Science Publishers. pp. 1-56.
    Most scientists would hold that science has not established that the cosmos is physically comprehensible – i.e. such that there is some as-yet undiscovered true physical theory of everything that is unified. This is an empirically untestable, or metaphysical thesis. It thus lies beyond the scope of science. Only when physics has formulated a testable unified theory of everything which has been amply corroborated empirically will science be in a position to declare that it has established that the cosmos (...)
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  25. Physical approach to possession and use.Sergei Vasiljev - manuscript
    In this study, the starting point is the well-known physical laws applied to human social life. On the basis of natural laws human actions are considered and through the prism of physical laws such concepts as use and possession are defined. A parallel is drawn between such a representation of these concepts and those conflicting views that are available in the literature regarding the concept of property. To complete the definitions of use and possession nature is introduced as a fictitious (...)
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  26. Psychological Momentum: Intuitive Physics and Naive Beliefs.Keith Markman & Corey Guenther - 2007 - Personality and Social Psychology Bulletin 33 (6):800-812.
    The present research examines psychological momentum (PM), a perceived force that lay intuition suggests influences performance. PM theory is proposed to account for how momentum perceptions arise, and four studies demonstrate the influence of lay intuitions about PM on expectations regarding performance outcomes. Study 1 establishes that individuals share intuitions about the types of events that precipitate PM, and Study 2 finds that defeating a rival increases momentum perception. Study 3 provides evidence for the lay belief that as more (...)
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  27. On a new mathematical framework for fundamental theoretical physics.Robert E. Var - 1975 - Foundations of Physics 5 (3):407-431.
    It is shown by means of general principles and specific examples that, contrary to a long-standing misconception, the modern mathematical physics of compressible fluid dynamics provides a generally consistent and efficient language for describing many seemingly fundamental physical phenomena. It is shown to be appropriate for describing electric and gravitational force fields, the quantized structure of charged elementary particles, the speed of light propagation, relativistic phenomena, the inertia of matter, the expansion of the universe, and the physical nature of (...)
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  28. Symmetry in Physics: Proportion and Harmony to the term of Metalanguage.Ruth Castillo - 2018 - Dissertation, Universidad Central de Venezuela
    SYMMETRY IN PHYSICS: FROM PROPORTION AND HARMONY TO THE TERM OF METALENGUAJE -/- Ruth Castillo Universidad Central de Venezuela -/- The revolutionary changes in physics require a careful exploration of the way in which concepts depend on the theoretical structure in which they are immerse. A historical reconstruction allows us to show how the notion of symmetry evolves from the definition as proportion and harmony to its consideration within the language of contemporary physics, as a linguistic meta-theoretical (...)
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  29. Superluminal and Instantaneous Physics.Florentin Smarandache - 2014 - Columbus, OH, USA: Educational Publisher.
    This book is a selection from the papers of the First International Conference on Superluminal Physics as New Fields of Research held at the University of New Mexico, Gallup Campus, USA, in July 2012. The editor have selected seven papers proposed by the following authors and co co-authors Kaizhe Guo Guo, Chongwu Guo Guo, Chen Jianguojianguo, Dong Jingfeng Jingfeng, Mi Haijiang Haijiang, Changwei Hu Hu, Yang Shijiashijia, Guli, and Fu Yuhua Yuhua.
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  30. Fundamental Physics and the Fine-Structure Constant.Michael A. Sherbon - 2017 - International Journal of Physical Research 5 (2):46-48.
    From the exponential function of Euler’s equation to the geometry of a fundamental form, a calculation of the fine-structure constant and its relationship to the proton-electron mass ratio is given. Equations are found for the fundamental constants of the four forces of nature: electromagnetism, the weak force, the strong force and the force of gravitation. Symmetry principles are then associated with traditional physical measures.
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  31. The Fundamental Principles of Existence and the Origin of Physical Laws.Attila Grandpierre - 2002 - Ultimate Reality and Meaning 25 (2):127-147.
    Our concept of the universe and the material world is foundational for our thinking and our moral lives. In an earlier contribution to the URAM project I presented what I called 'the ultimate organizational principle' of the universe. In that article (Grandpierre 2000, pp. 12-35) I took as an adversary the wide-spread system of thinking which I called 'materialism'. According to those who espouse this way of thinking, the universe consists of inanimate units or sets of material such as atoms (...)
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  32. What is the environment in environmental health research? Perspectives from the ethics of science.David M. Frank - 2021 - Studies in History and Philosophy of Science Part A 88 (C):172-180.
    Environmental health research produces scientific knowledge about environmental hazards crucial for public health and environmental justice movements that seek to prevent or reduce exposure to these hazards. The environment in environmental health research is conceptualized as the range of possible social, biological, chemical, and/or physical hazards or risks to human health, some of which merit study due to factors such as their probability and severity, the feasibility of their remediation, and injustice in their distribution. This paper explores the (...)
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  33. Why Biology is Beyond Physical Sciences?Bhakti Niskama Shanta & Bhakti Vijnana Muni - 2016 - Advances in Life Sciences 6 (1):13-30.
    In the framework of materialism, the major attention is to find general organizational laws stimulated by physical sciences, ignoring the uniqueness of Life. The main goal of materialism is to reduce consciousness to natural processes, which in turn can be translated into the language of math, physics and chemistry. Following this approach, scientists have made several attempts to deny the living organism of its veracity as an immortal soul, in favor of genes, molecules, atoms and so on. However, advancement (...)
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  34. The Generalized Darwinian Research Programme.Nicholas Maxwell - 2009 - In From Knowledge to Wisdom. pp. 269-275.
    The generalized Darwinian research programme accepts physicalism, but holds that all life is purposive in character. It seeks to understand how and why all purposiveness has evolved in the universe – especially purposiveness associated with what we value most in human life, such as sentience, consciousness, person-to-person understanding, science, art, free¬dom, love. As evolution proceeds, the mechanisms of evolution themselves evolve to take into account the increasingly important role that purposive action can play - especially when quasi-Lamarckian evolution by (...)
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  35. From Einstein's Physics to Neurophilosophy: On the notions of space, time and field as cognoscitive conditions under Kantian-Husserlian approach in the General Relativity Theory.Ruth Castillo - forthcoming - Bitácora-E.
    The current technoscientific progress has led to a sectorization in the philosophy of science. Today the philosophy of science isn't is informal interested in studying old problems about the general characteristics of scientific practice. The interest of the philosopher of science is the study of concepts, problems and riddles of particular disciplines. Then, within this progress of philosophy of science, neuroscientific research stands out, because it invades issues traditionally addressed by the humanities, such as the nature of consciousness, action, (...)
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  36. Studying marginalised physical sciences.Sean F. Johnston - 2007 - ‘Writing the History’ of the Physical Sciences After 1945: State of the Art, Questions, and Perspectives, Strasbourg, 8-9 June 2007.
    The second half of the twentieth century offers distinct perspectives for the historian of science. The role of the State, the expansion of certain industries and the cultural engagement with science were all transformed. The foregrounding of certain strands of physical science in the public and administrative consciousness – nuclear physics and planetary science, for example – had a complement: the ‘backgrounding’ or institutional neglect of a number of other fields. My work in the history of the physical sciences (...)
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  37. Social Connectedness in Physical Isolation: Online Teaching Practices That Support Under-Represented Undergraduate Students’ Feelings of Belonging and Engagement in STEM.Ian Thacker, Viviane Seyranian, Alex Madva, Nicole T. Duong & Paul Beardsley - 2022 - Education Sciences 12 (2):61-82.
    The COVID-19 outbreak spurred unplanned closures and transitions to online classes. Physical environments that once fostered social interaction and community were rendered inactive. We conducted interviews and administered surveys to examine undergraduate STEM students’ feelings of belonging and engagement while in physical isolation, and identified online teaching modes associated with these feelings. Surveys from a racially diverse group of 43 undergraduate students at a Hispanic Serving Institution (HSI) revealed that interactive synchronous instruction was positively associated with feelings of interest and (...)
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  38. Has science established that the universe is physically comprehensible?Nicholas Maxwell - 2013 - In Anderson Travena & Brady Soren (eds.), Recent Advances in Cosmology. Nova Science. pp. 1-56.
    Most scientists would hold that science has not established that the cosmos is physically comprehensible – i.e. such that there is some as-yet undiscovered true physical theory of everything that is unified. This is an empirically untestable, or metaphysical thesis. It thus lies beyond the scope of science. Only when physics has formulated a testable unified theory of everything which has been amply corroborated empirically will science be in a position to declare that it has established that the cosmos (...)
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  39.  45
    Raně novověká mosaická fyzika: První představitelé a jejich komeniánští pokračovatelé [Early Modern Mosaic Physics: The First Representatives and their Comenian Successors].Jan Čížek - 2024 - Praha: Togga.
    The idea of the emergence of modern science as a clearly defined, clear, basically linear process, initiated by Copernicus and completed by Newton, is nowadays rather a shorthand, which we encounter at best in textbooks or popularization texts. However, it remains a research challenge to accurately map the subsoil from which modern science sprung. Although we are familiar with the main strands of development - those that prevailed and became successful - in their shadows still lie some influential and (...)
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  40. The Engineering Knowledge Research Program.Terry Bristol - 2018 - In Albrecht Fritzsche & Sascha Julian Oks (eds.), The Future of Engineering: Philosophical Foundations, Ethical Problems and Application Cases. Cham: Springer Verlag.
    The engineering knowledge research program is part of the larger effort to articulate a philosophy of engineering and an engineering worldview. Engineering knowledge requires a more comprehensive conceptual framework than scientific knowledge. Engineering is not ‘merely’ applied science. Kuhn and Popper established the limits of scientific knowledge. In parallel, the embrace of complementarity and uncertainty in the new physics undermined the scientific concept of observer-independent knowledge. The paradigm shift from the scientific framework to the broader participant engineering framework (...)
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  41. Online Teaching in Physics Using Just-In-Time Teaching (JiTT), Academic Achievement, and Conceptual Understanding of Grade 9 Students (2nd edition).Benjamin M. Maala - 2023 - International Journal of Multidisciplinary Educational Research and Innovation 1 (2):24-39.
    This study determined the effect of online teaching in Physics using the Just-in-Time Teaching (JiTT) strategy on the academic achievement and conceptual understanding of Grade 9 students. One intact class was subjected to a single-group pretest/posttest pre-experimental research design. Purposive sampling was applied, and selected 48 Grade 9 students for this study. The data gathered were interpreted quantitatively from the validated physics achievement test (PAT) and from the adopted energy-momentum concept test (EMCT), while, the learning experiences survey (...)
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  42. Realism in Context: The Examples of Lifeworld and Quantum Physics.Gregor Schiemann - 2009 - Human Affairs 19 (2):211-222.
    Lifeworld realism and quantum-physical realism are taken as experience-dependent conceptions of the world that become objects of explicit reflection when confronted with context-external discourses. After a brief sketch of the two contexts of experience—lifeworld and quantum physics—and their realist interpretations, I will discuss the quantum world from the perspective of lifeworld realism. From this perspective, the quantum world—roughly speaking—has to be either unreal or else constitute a different reality. Then, I invert the perspective and examine the lifeworld from the (...)
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  43. A small step towards unification of economics and physics.Subhendu Bhattacharyya - 2021 - Mind and Society 20 (1):69-84.
    Unification of natural science and social science is a centuries-old, unmitigated debate. Natural science has a chronological advantage over social science because the latter took time to include many social phenomena in its fold. History of science witnessed quite a number of efforts by social scientists to fit this discipline in a rational if not mathematical framework. On the other hand a tendency among some physicists has been observed especially since the last century to recast a number of social phenomena (...)
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  44. Breathing battles and sensory embodiment in sports and physical cultures.Jacquelyn Allen-Collinson - 2022 - Corps 20 (1).
    Within the sociology of sport, phenomenologically-inspired perspectives on sensory embodiment have emerged in recent years. This corpus includes investigations into the senses in water-based sports such as scuba diving (Merchant, 2011), performance swimming (Allen-Collinson et al., 2021 ; McNarry et al., 2021) and in land-based sports such as distance running (Allen-Collinson et al., 2018, 2021 ; Allen-Collinson & Jackman, 2021), and cycling (Hammer, 2015 ; Spinney, 2006). In this article, I draw upon phenomenological sociology (Allen-Collinson, 2009) and ‘sensory work’, to (...)
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  45. Different researchers’ opinion based survey: On the insights and the beliefs’ regarding the existence of God in various religions to the atheistic belief with ‘no presence of God at all’.Deep Bhattacharjee - manuscript
    If this can be seen as a long way from the beginning of the ancient history, where humans have envisioned different new things and then invented them to make their life’s working smoother and easier, then it can be found that they have attributed their discoveries to various aspects and names of Gods and tried to signify their belief in the form of portraying the God’s powers through the nature of their discovery. Rather, in much modern times, when humans have (...)
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  46. Reflexivity and bracketing in sociological phenomenological research: Researching the competitive swimming lifeworld.Gareth McNarry, Jacquelyn Allen-Collinson & Adam Evans - 2019 - Qualitative Research in Sport, Exercise and Health 11 (1):38-51.
    In this article, following on from earlier debates in the journal regarding the ‘thorny issue’ of epochē and bracketing in sociological phenomenological research, we consider more generally the challenges of engaging in reflexivity and bracketing when undertaking ethnographic ‘insider’ research, or research in familiar settings. We ground our discussion and illustrate some of the key challenges by drawing on the experience of undertaking this research approach with a group of competitive swimmers, who were participating in a (...)
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  47. Gravity, Metaphysics or Physics ?Alfonso Leon Guillen Gomez - 2013 - International Journal of Fundamental Physical Sciences 3 (4):68 - 74.
    Gravity is the foundation of the current physical paradigm. Due to that gravity is strongly linked to the curvature of space-time, we research that it lacks of a valid physical concept of space-time, nevertheless that from the science philosophy, via substantivalism, it has tried respond. We found that is due to that the gnoseological process applied from the general relativity, necessarily us leads to metaphysic because ontologically space-time is a metaphysical entity. Thus, we arrive to the super substantivalism that (...)
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  48. Is Time a Physical Unit?Yang I. Pachankis - 2022 - Science Set Journal of Physics 1 (1):1-4.
    The article approaches the epistemological question on the concept of time from an anthropological psychology perspective. The differentiation between imminent perceptions and existence beyond imminent perception has been the earliest conceptualization of time found so far in the traces of human civilizations. The research differentiated psychological time from modern physics and astronomy as the basic hypothesis in the inquiries on the concept of time in physics and modern astronomy – is the physical unit of time an ontological (...)
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  49. Does it matter where you read? Situating narrative in physical environment.Anezka Kuzmicova - 2016 - Communication Theory 26 (3):290-308.
    While language use in general is currently being explored as essentially situated in immediate physical environment, narrative reading is primarily regarded as a means of decoupling one’s consciousness from the environment. In order to offer a more diversified view of narrative reading, the article distinguishes between three different roles the environment can play in the reading experience. Next to the traditional notion that environmental stimuli disrupt attention, the article proposes that they can also serve as a prop for mental imagery (...)
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  50. A Phenomenological Study on the Lived Experiences of Physics Students in Laboratory Classes.Cara Luz Buar - 2022 - Universal Journal of Educational Research 1 (2):10-18.
    Classes in higher education often consist of both lecture and laboratory time for the subject of physics. An example of experience-based learning would be doing experiments in the classroom. Kolb's theory of experiential learning posits that learning is a process that involves the generation of knowledge via the accumulation of experience. However, due to the fact that doing experiments in a laboratory takes much more time and money than other methods of instruction, the usage of labs in the classroom (...)
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