Results for 'Hydrogen'

289 found
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  1.  57
    Hydrogen bonding: Homing in on a tricky chemical concept.Paul Needham - 2013 - Studies in History and Philosophy of Science Part A 44 (1):51-65.
    The history of the hydrogen bond provides a good example of the of an important chemical concept. It illustrates the interplay between empirical and theoretical approaches to the problem of delimiting what has proved to be quite an elusive notion, with chemists whittling away at the particular sorts of case with a view to obtaining a precise, unitary concept. Even though there is a return to a more theoretically inspired notion in more recent research, empirical characterisations remain a feature (...)
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  2. Hydrogen over helium: A philosophical position.René Vernon - forthcoming - Foundations of Chemistry:1-22.
    Hydrogen is troublesome in any periodic table classification. This being so it may as well be placed in a position that confers desirable attributes to the arrangement of the elements, while notionally recognising its lineage to the group 1 alkali metals and the group 17 halogens. Since the noble gases bridge the halogens and the alkali metals, and hydrogen encompasses the transition from the alkali metals to the halogens, there is more to the idea of hydrogen over (...)
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  3.  4
    Hydrogen Highways: Lessons on the Energy Technology-Policy Interface.Bryan Haney, Daniel Tobin, John Byrne & Alex Waegel - 2006 - Bulletin of Science, Technology and Society 26 (4):288-298.
    The hydrogen economy has received increasing attention recently. Common reasons cited for investigating hydrogen energy options are improved energy security, reduced environmental impacts, and its contribution to a transition to sustainable energy sources. In anticipation of these benefits, national and local initiatives have been launched in the United States, creating pilot “roadmaps” and technology partnerships to explore hydrogen economy platforms. Although hydrogen can provide several positive improvements over a carbon- or uranium-based energy system, several problems are (...)
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  4.  42
    Hydrogen Fuel-Cell Vehicles, Energy Policy, and the Ethics of Expertise.Kevin C. Elliott - 2010 - Journal of Applied Philosophy 27 (4):376-393.
    Relatively few thinkers have attempted to develop a systematic ‘ethics of expertise’ (EOE) that can guide scientists and other technical experts in providing information to the public. This paper argues that the prima facie duty to disseminate information in a manner that does not damage the self-determination of decision makers could fruitfully serve as one of the core principles of an EOE. Moreover, this duty can be fleshed out in promising ways by drawing on the concept of informed consent, which (...)
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  5.  6
    Hydrogen production for ballooning during the French Revolution: An early example of chemical process development.Janis Langins - 1983 - Annals of Science 40 (6):531-558.
    (1983). Hydrogen production for ballooning during the French Revolution: An early example of chemical process development. Annals of Science: Vol. 40, No. 6, pp. 531-558.
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  6.  3
    The Hydrogen Economy as a Technological Bluff.Willem H. Vanderburg - 2006 - Bulletin of Science, Technology and Society 26 (4):299-302.
    The hydrogen economy is a technological bluff in its implied assurance that, despite the accelerating pace at which we are depleting the remaining half of our fossil fuels, our energy future is secure. Elementary thermodynamic considerations are developed to show that a hydrogen economy is about as feasible as a perpetual motion machine. Hydrogen is not an energy source but an energy carrier, and when produced renewably, it is an energy carrier to the second degree, with electricity (...)
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  7.  1
    Hydrogen in the Methanol Production Process.Peter Glavič & Anita Kovač Kralj - 2006 - Bulletin of Science, Technology and Society 26 (4):323-327.
    Hydrogen is a very important industrial gas in chemical processes. It is very volatile; therefore, it can escape from the process units and its mass balance is not always correct. In many industrial processes where hydrogen is reacted, kinetics are often related to hydrogen pressure. The right thermodynamic properties of hydrogen can be found for a process simulation and optimization; they can be estimated by the Grayson-Streed model. In the case studied, a methanol plant with a (...)
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  8.  15
    Hydrogen penetration in water-accelerated fatigue of rolling surfaces.L. Grunberg, D. T. Jamieson & D. Scott - 1963 - Philosophical Magazine 8 (93):1553-1568.
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  9.  14
    Hydrogen evolution during deposition of microcrystalline silicon by chemical transport.N. Pham, P. Roca I. Cabarrocas, A. Hadjadj, A. Beorchia, F. Kail & L. Chahed - 2008 - Philosophical Magazine 88 (3):297-311.
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  10.  19
    Hydrogen storage in Ti–Zr and Ti–Hf-based quasicrystals.K. F. Kelton, J. J. Hartzell, R. G. Hennig, V. T. Huett & Akito Takasaki - 2006 - Philosophical Magazine 86 (6-8):957-964.
  11.  3
    Hydrogen nuclei of the primary cosmic radiation.C. J. Waddington - 1961 - Philosophical Magazine 6 (68):965-970.
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  12.  2
    Hydrogen affinity of B.C.C. molybdenum‐rhenium alloys.D. W. Jones - 1964 - Philosophical Magazine 9 (100):709-711.
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  13.  13
    Hydrogen-plasma etching of hydrogenated amorphous silicon: a study by a combination of spectroscopic ellipsometry and trap-limited diffusion model.F. Kaïl, A. Fontcuberta I. Morral, A. Hadjadj, P. Roca I. Cabarrocas & A. Beorchia - 2004 - Philosophical Magazine 84 (6):595-609.
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  14.  21
    Hydrogen interactions with quasicrystalline Al–Pd–Mn surfaces.R. Bastasz, J. A. Whaley, T. A. Lograsso & C. J. Jenks - 2006 - Philosophical Magazine 86 (6-8):855-862.
  15.  10
    Hydrogen bonding in the Raman O–H stretching band of propylene glycol in nanometre-confined space: surface interactions and finite-size effects.V. Crupi, F. Longo, D. Majolino, P. Migliardo & V. Venuti - 2007 - Philosophical Magazine 87 (3-5):705-714.
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  16.  18
    Simulation of the Hydrogen Ground State in Stochastic Electrodynamics-2: Inclusion of Relativistic Corrections.Theodorus M. Nieuwenhuizen & Matthew T. P. Liska - 2015 - Foundations of Physics 45 (10):1190-1202.
    In a recent paper the authors studied numerically the hydrogen ground state in stochastic electrodynamics within the the non-relativistic approximation. In quantum theory the leading non-relativistic corrections to the ground state energy dominate the Lamb shift related to the photon cloud that should cause the quantum-like behaviour of SED. The present work takes these corrections into account in the numerical modelling. It is found that they have little effect; the self-ionisation that occurs without them remains present. It is speculated (...)
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  17.  13
    Hydrogen accumulation at stacking faults by de-channelling in aluminium.G. J. Thomas & J. A. Venables - 1969 - Philosophical Magazine 19 (158):325-327.
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  18.  12
    Hydrogen-induced strain localisation in oxygen-free copper in the initial stage of plastic deformation.Yuriy Yagodzinskyy, Evgenii Malitckii, Filip Tuomisto & Hannu Hänninen - forthcoming - Philosophical Magazine:1-14.
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  19.  36
    Hydrogen-induced softening in nanocrystalline Ni investigated by nanoindentation.Yakai Zhao, Moo-Young Seok, Dong-Hyun Lee, Jung-A. Lee, Jin-Yoo Suh & Jae-il Jang - forthcoming - Philosophical Magazine:1-9.
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  20.  27
    Helium/hydrogen synergistic effect in reduced activation ferritic/martensitic steel investigated by slow positron beam.Te Zhu, Shuoxue Jin, Liping Guo, Yuanchao Hu, Eryang Lu, Jianping Wu, Baoyi Wang, Long Wei & Xingzhong Cao - 2016 - Philosophical Magazine 96 (3):253-260.
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  21.  15
    Hydrogen bonding in condensed-phase alcohols: some keys to understanding their structure and dynamics.M. A. González, F. J. Bermejo, E. Enciso & C. Cabrillo - 2004 - Philosophical Magazine 84 (13-16):1599-1607.
  22.  7
    Hydrogen Oxygenovich: Crafting Russian as a language of science in the late nineteenth century.Michael D. Gordin - 2015 - History of Science 53 (4):417-437.
    Until the 1860s, science in Russia was principally conducted in Latin, French, and German. In the years leading up to and following the creation of the Russian Chemical Society in 1868, Russian chemists – treated in this article as both a representative sample of Russian scientists and also practitioners of the flagship science of the period – debated both the merits of developing a nomenclature that would enable Russian to “hold” modern inorganic and organic chemistry, and the practicability of doing (...)
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  23. Hydrogen sulfide distribution in bottom and pore waters during an anoxic period in Lake Nakaumi, Japan.Saburo Sakai, Masaru Nakaya & Katsumi Takayasu - 2004 - Laguna 11:65-68.
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  24.  17
    ‘Public’ Science: Hydrogen Balloons and Lavoisier's Decomposition of Water.Mi Gyung Kim - 2006 - Annals of Science 63 (3):291-318.
    Summary The balloon mania between 1783 and 1785 put an extraordinary strain on the Paris Academy of Sciences, threatening its status as the highest tribunal of European science. Faced with repeated royal directives and public frenzy, the Academy manoeuvred carefully to steer the research toward the hydrogen balloon and thereby to maintain its scientific superiority. Antoine-Laurent Lavoisier seized this moment when the promise of ?the empire of airs? brought science to the centre of public attention to push his theoretical (...)
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  25.  56
    Concerning the position of hydrogen in the periodic table.Lawrence J. Sacks - 2006 - Foundations of Chemistry 8 (1):31-35.
    The placement of hydrogen in the periodic table has unique implications for fundamental questions of chemical behavior. Recent arguments in favor of placing hydrogen either separately at the top of the table or as a member of the carbon family are shown to have serious defects. A Coulombic model, in which all compounds of hydrogen are treated as hydrides, places hydrogen exclusively as the first member of the halogen family and forms the basis for reconsideration of (...)
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  26.  35
    What Does Hydrogen Bonding Say About the Nature of the Chemical Bond?Paul Needham - 2013 - In Vassilios Karakostas & Dennis Dieks (eds.), EPSA 2011: Perspectives and Foundational Problems in Philosophy of Science. New York, USA: Springer. pp. 321--330.
    The status of the chemical bond has long been a controversial issue with the increasing distance between quantum chemists’ theoretical understanding of molecular stability and the ideas of experimental chemists. Some aspects of the development of the concept of a hydrogen bond are discussed with a view to assessing its import on the general question.
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  27.  99
    Chunk and permeate II: Bohr’s hydrogen atom.M. Bryson Brown & Graham Priest - 2015 - European Journal for Philosophy of Science 5 (3):297-314.
    Niels Bohr’s model of the hydrogen atom is widely cited as an example of an inconsistent scientific theory because of its reliance on classical electrodynamics together with assumptions about interactions between matter and electromagnetic radiation that could not be reconciled with CED. This view of Bohr’s model is controversial, but we believe a recently proposed approach to reasoning with inconsistent commitments offers a promising formal reading of how Bohr’s model worked. In this paper we present this new way of (...)
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  28.  31
    Public Acceptance of Hydrogen in the Netherlands: Two Surveys That Demystify Public Views on a Hydrogen Economy.Kas Hemmes & J. Leslie Zachariah-Wolff - 2006 - Bulletin of Science, Technology and Society 26 (4):339-345.
    Interest in a hydrogen economy has grown significantly in the past decade. However, the success of old technologies that are being re-engineered to work on hydrogen, as well as the creation of new hydrogenbased technologies, hinges upon public interest in and demand for such technologies. With increasing investments in the research and development of hydrogen technologies, there exists a need to monitor public attitudes toward hydrogen to ensure its success as an alternative energy carrier. To address (...)
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  29.  13
    On the effect of hydrogen on the elastic moduli and acoustic loss behaviour of Ti-6Al-4V.S. L. Driver, N. G. Jones, H. J. Stone, D. Rugg & M. A. Carpenter - forthcoming - Philosophical Magazine:1-17.
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  30.  10
    ‘Public’ Science: Hydrogen Balloons and Lavoisier's Decomposition of Water.Mi Kim - 2006 - Annals of Science 63 (3):291-318.
    Summary The balloon mania between 1783 and 1785 put an extraordinary strain on the Paris Academy of Sciences, threatening its status as the highest tribunal of European science. Faced with repeated royal directives and public frenzy, the Academy manoeuvred carefully to steer the research toward the hydrogen balloon and thereby to maintain its scientific superiority. Antoine-Laurent Lavoisier seized this moment when the promise of ‘the empire of airs’ brought science to the centre of public attention to push his theoretical (...)
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  31.  9
    Enviro-Friendly Hydrogen Generation From Steel Mill-Scale via Metal-Steam Reforming.Sathees Kesavan & Abdul-Majeed Azad - 2006 - Bulletin of Science, Technology and Society 26 (4):305-313.
    An economically viable and environmental friendly method of generating hydrogen for fuel cells is by the reaction of certain metals with steam, called metalsteam reforming (MSR). This technique does not generate any toxic by-products nor contributes to the undesirable greenhouse effect. From the standpoint of favorable thermodynamics, total environmental benignity, and attractive economics, iron appears to be the metal of choice for such a process. An inexpensive source of iron for the MSR is the steel industry's mill-scale waste via (...)
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  32.  20
    Tomorrow's Energy: Hydrogen, Fuel Cells, and the Prospects for a Cleaner Planet.Peter Hoffmann & Byron Dorgan - 2012 - MIT Press.
    In this new edition of his pioneering book "Tomorrow's Energy," Peter Hoffmann makes the case for hydrogen as the cornerstone of a new energy economy.
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  33.  12
    A general model for hydrogen trapping at the inclusion-matrix interface and its relation to crack initiation.W. Qin & J. A. Szpunar - 2017 - Philosophical Magazine 97 (34):3296-3316.
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  34.  67
    Where to put hydrogen in a periodic table?Michael Laing - 2006 - Foundations of Chemistry 9 (2):127-137.
    A modification of the regular medium-form periodic table is presented in which certain elements are placed in more than one position. H is included at the top of both the alkali metals and the halogens; He is above Be and above Ne. The column of noble gases is duplicated as Groups O and 18. The elements of the second and third periods are duplicated above the transition metals. This arrangement displays more patterns and connections between the elements than are seen (...)
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  35.  11
    Energy levels of the hydrogen atom due to a generalized Dirac equation.Ulrich Bleyer - 1993 - Foundations of Physics 23 (7):1025-1048.
    The consequences of a generalized Dirac equation are discussed for the energy levels of the hydrogen atom. Apart from the usual generalizations of the Dirac equation by adding new interaction terms, we generalize the anticommutation rule of the Dirac matrices, which leads to spin-dependent propagation properties. Such a theory can be looked at as a model theory for testing Lorentz invariance or as an outcome of pregeometric dynamical induction schemes for space-time structure.For special examples of generalized Dirac matrices including (...)
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  36.  24
    Role of hydrogen in stress corrosion cracking of austenitic stainless steels.B. T. Lu, L. J. Qiao, J. L. Luo & K. W. Gao - 2011 - Philosophical Magazine 91 (2):208-228.
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  37.  20
    Precipitation and trapping of hydrogen in copper.W. R. Wampler, T. Schober & B. Lengeler - 1976 - Philosophical Magazine 34 (1):129-141.
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  38.  22
    Photoionization microscopy of Rydberg hydrogen atom near a dielectric surface.Qiang Chen & Dehua Wang - 2015 - Philosophical Magazine 95 (33):3712-3726.
  39.  23
    Effects of hydrogen and impurities on void nucleation in copper: simulation point of view.M. G. Ganchenkova, Y. N. Yagodzinskyy, V. A. Borodin & H. Hänninen - 2014 - Philosophical Magazine 94 (31):3522-3548.
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  40.  4
    High-efficiency hydrogenated amorphous/crystalline Si heterojunction solar cells.Qi Wang - 2009 - Philosophical Magazine 89 (28-30):2587-2598.
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  41.  16
    Influence of hydrogenation on the microstructure and crystallization of Zr-Cu-Ni-Al-Y metallic glass.R. M. Wang & D. Eliezer - 2003 - Philosophical Magazine 83 (22):2545-2556.
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  42.  32
    Effect of hydrogen on mechanical properties of nitrided austenitic steels.C. M. Lepienski, N. K. Kuromoto, J. F. P. Souza, C. E. Foerster, F. C. Serbena & S. L. R. Silva - 2006 - Philosophical Magazine 86 (33-35):5407-5418.
  43.  9
    Characterization of Hydrogenated Amorphous Silicon and Hydrogenated and Fluorinated Amorphous Silicon Carbid-Hetero-Junction by in-situ X-ray Photoelectron Spectroscopy.Y. Matsuzaki, T. Ohtaki, M. Fujishima, Y. Yoshida & M. Kawasaki - 1989 - Philo. Mag. B 60:35-49.
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  44.  6
    Nanoindentation of hydrogenated amorphous silicon.B. Pantchev, P. Danesh & J. Wiezorek - 2010 - Philosophical Magazine 90 (30):4027-4039.
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  45.  40
    Fundamental Aspects of the Hydrogen Economy.Piotr Tomczyk - 2009 - World Futures 65 (5-6):427-435.
  46.  21
    A generalised model of hydrogen diffusion in metals with multiple trap types.Jesús Toribio & Viktor Kharin - 2015 - Philosophical Magazine 95 (31):3429-3451.
  47.  26
    Computational modelling of hydrogen embrittlement in welded structures.O. Barrera & A. C. F. Cocks - 2013 - Philosophical Magazine 93 (20):2680-2700.
  48.  23
    Mobile effect of hydrogen on intergranular decohesion of iron: first-principles calculations.Masatake Yamaguchi, Jun Kameda, Ken-Ichi Ebihara, Mitsuhiro Itakura & Hideo Kaburaki - 2012 - Philosophical Magazine 92 (11):1349-1368.
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  49.  23
    Permeation of hydrogen through metals.R. Ash & R. M. Barrer - 1959 - Philosophical Magazine 4 (47):1197-1206.
  50.  26
    Detection of hydrogen in neutron-irradiated nickel using positron lifetime spectroscopy.C. He, T. Yoshiie, Q. Xu, K. Sato, S. Peneva & T. D. Troev - 2009 - Philosophical Magazine 89 (14):1183-1195.
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