Results for ' semiconductor'

97 found
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  1.  21
    Semiconductor Research Corporation: A Case Study in Cooperative Innovation Partnerships.Nathaniel Logar, Laura Diaz Anadon & Venkatesh Narayanamurti - 2014 - Minerva 52 (2):237-261.
    In the study of innovation institutions, it is important to consider how different institutional models can affect a research organization in conducting or funding successful work. As an industry collaborative, Semiconductor Research Corporation provides an example of a privately funded institution that leverages the inputs of several member companies, along with federal funding, to accomplish innovation in its mission area. SRC has several component programs, all attempting to find innovative solutions to semiconductor problems, but on different time scales, (...)
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  2.  18
    Semiconductor’s landscapes as sound-sculptured time-based visualizations.Inge Hinterwaldner - 2014 - Technoetic Arts 12 (1):15-38.
    The results of artistic experimentation with data sets from the natural sciences differ considerably with respect to quality and consistency. The British artist duo Semiconductor (Ruth Jarman and Joe Gerhardt) counts among those setting the standard. In its animations and videos, it explores, in an equally multifaceted and concise manner, how scientists affect our world-view with their respective pictorial languages and visualization strategies. Especially in domains that elude our natural sense of space and time, the researchers’ representations are inevitably (...)
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  3.  37
    Semiconductors, geopolitics and technological rivalry: The US CHIPS & Science Act, 2022.Michael A. Peters - 2023 - Educational Philosophy and Theory 55 (14):1642-1646.
    In 2021 global sales in semiconductors reached $556 billion, with the US accounting for 46% of the global market, yet as Zhi Su (2022) reports: ‘The share of modern semiconductor manufacturing capa...
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  4.  29
    Semiconductor dielectric function, excitons and the Penn model.Diego Julio Cirilo-Lombardo - 2015 - Philosophical Magazine 95 (9):1007-1015.
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  5.  32
    Oxide semiconductors: Order within the disorder.E. Fortunato, L. Pereira, P. Barquinha, I. Ferreira, R. Prabakaran, G. Gonçalves, A. Gonçalves & R. Martins - 2009 - Philosophical Magazine 89 (28-30):2741-2758.
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  6.  39
    The history of semiconductor electronics — a Kuhnian story?Joop Schopman - 1981 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 12 (2):297-302.
    Summary A pattern can be found in the history of semiconductor electronics, which largely appears to coincide with that of scientific revolutions as described by Thomas Kuhn1. However, the history of semiconductor electronics has some characteristics which suggest that Kuhn's model requires correction in important respects.
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  7.  11
    Diluted magnetic semiconductors: effects of positional disorder.Mona Berciu - 2006 - Philosophical Magazine 86 (13-14):1947-1972.
  8.  3
    The Case of Semiconductors.Ernest Braun, David Collingridge & Stuart Macdonald - 1981 - Bulletin of Science, Technology and Society 1 (1-2):173-201.
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  9.  16
    A new quaternary semiconductor compound : Ab initio study.Havva Bogaz Ozisik, Haci Ozisik & Engin Deligoz - forthcoming - Philosophical Magazine:1-12.
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  10.  8
    Thermal properties of chalcopyrite semiconductors.A. S. Verma - 2009 - Philosophical Magazine 89 (2):183-193.
  11.  7
    Microhardness of ternary chalcopyrite semiconductors.L. Garbato & A. Rucci - 1977 - Philosophical Magazine 35 (6):1685-1688.
  12.  10
    Microhardness of tetrahedrally bonded semiconductors.L. Garbato & A. Ruucci - 1977 - Philosophical Magazine 35 (6):1681-1684.
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  13.  2
    Substitutional doping in amorphous semiconductors the As-Si system.J. C. Knights - 1976 - Philosophical Magazine 34 (4):663-667.
  14.  8
    The history of semiconductor electronics — A kuhnian story?Joop Schopman - 1981 - Zeitschrift Für Allgemeine Wissenschaftstheorie 12 (2):297-302.
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  15.  26
    Pressure-induced semiconductor-metal transitions in amorphous Si and Ge.O. Shimomura, S. Minomura, N. Sakai, K. Asaumi, K. Tamura, J. Fukushima & H. Endo - 1974 - Philosophical Magazine 29 (3):547-558.
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  16.  15
    Thermal conductivity of liquid semiconductor thallium-tellurium solutions.C. E. Mallon & M. Cutler - 1965 - Philosophical Magazine 11 (112):667-672.
  17.  11
    Pressure-induced semiconductor-metal transitions in amorphous InSb.O. Shimomura, K. Asaumi, N. Sakai & S. Minomura - 1976 - Philosophical Magazine 34 (5):839-849.
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  18.  8
    Magnetic properties of amorphous semiconductors.R. M. White & P. W. Anderson - 1972 - Philosophical Magazine 25 (3):737-751.
  19.  26
    Multicarrier Transport: Batteries, Semiconductors, Mixed Ionic-Electronic Conductors, and Biology. [REVIEW]Wayne M. Saslow - 2003 - Foundations of Physics 33 (12):1713-1734.
    Multicarrier systems, such as car batteries and semiconductors, have surprisingly complex transport properties. Even for steady-state transport, one can find counterexamples to standard assumptions about local electroneutrality, constancy in space of the electric field, linearity in space of the voltage, and the relationship between dissipation, voltage, and current. Moreover, unless recombination processes occur, boundaries impose conditions that can disturb the response far into the bulk to remove memory of the boundaries. Because the demands of the chemical reactions at the electrodes (...)
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  20.  11
    Hydrides as materials for semiconductor electronics.S. Zh Karazhanov, A. G. Ulyashin, P. Vajeeston & P. Ravindran - 2008 - Philosophical Magazine 88 (16):2461-2476.
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  21. Conduction in non-crystalline systems V. Conductivity, optical absorption and photoconductivity in amorphous semiconductors.E. A. Davis & N. F. Mott - 1970 - Philosophical Magazine 22 (179):0903-0922.
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  22.  12
    The metal-semiconductor transition in thallium-rich liquid Tl-Te alloys.Melvin Cutler - 1976 - Philosophical Magazine 33 (4):559-575.
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  23.  7
    Studies on the synthesis and characterization of Zn1−xCdxS and Zn1−xCdxS:Mn2+semiconductor quantum dots.R. Sakthi Sudar Saravanan, D. Pukazhselvan & C. K. Mahadevan - 2011 - Philosophical Magazine 91 (3):389-403.
    Quantum dots (3–4 nm) of Zn1− x Cd x S (both free of Mn2+ and with Mn2+ incorporated) were synthesized through a novel solvothermal-microwave irradiation technique. Detailed structural analysis of the Zn1− x Cd x S and Zn1− x Cd x S:Mn2+ (x = 0, 0.25, 0.5, 0.75 and 1) materials was carried out using powder X-ray diffraction technique. For all the compositions, the crystallite size was controlled to less than 1.5 nm. The optical energy gap for Zn1− x Cd (...)
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  24.  10
    Acoustic amplification in semiconductors and metals.A. B. Pippard - 1963 - Philosophical Magazine 8 (85):161-165.
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  25.  18
    Phase stability and ordering in diluted magnetic III–V semiconductors.V. Drchal, J. Kudrnovský, I. Turek, F. Máca & P. Weinberger - 2004 - Philosophical Magazine 84 (18):1889-1905.
  26.  9
    The effect of the static atomic displacements on the structure factors of weak reflections in cubic semiconductor alloys.Frank Glas - 2004 - Philosophical Magazine 84 (20):2055-2074.
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  27.  8
    Transmission electron microscopyin situinvestigation of dislocation behaviour in semiconductors and the influence of electronic excitation.S. Lavagne§, C. Levade & G. Vanderschaeve - 2006 - Philosophical Magazine 86 (29-31):4923-4940.
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  28.  29
    Effect of germanium addition on the physical properties of Se–Te glassy semiconductors. Mainika, Pankaj Sharma & Nagesh Thakur - 2009 - Philosophical Magazine 89 (33):3027-3036.
    The effect of germanium addition on the physical properties, i.e. density, molar volume, compactness, number of lone-pair electrons, average coordination number, heat of atomization, mean bond energy, cohesive energy and glass-transition temperature, of (Se80Te20)100− x Ge x (x = 0, 2, 4, 6) bulk glassy alloys was investigated. The density of the glassy alloys is found to decrease with increasing Ge content. The molar volume and compactness of the structure of the glass were determined from the measured density. The mean (...)
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  29.  67
    States in the gap and recombination in amorphous semiconductors.N. F. Mott, E. A. Davis & R. A. Street - 1975 - Philosophical Magazine 32 (5):961-996.
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  30.  3
    Doping effects on metallic and semiconductor single-wall carbon nanotubes.F. Buonocore - 2007 - Philosophical Magazine 87 (7):1097-1105.
  31.  17
    Chemical bonding and structure of the semiconductor compounds.R. J. Caveney - 1968 - Philosophical Magazine 17 (149):943-949.
  32.  4
    Crystallization of isolated amorphous zones in semiconductors.I. Jenčič, E. P. Hollar & I. M. Robertson - 2003 - Philosophical Magazine 83 (22):2557-2571.
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  33.  5
    Carrier-wavelength effect on screening in semiconductors.David Redfield & Martin A. Afromowitz - 1969 - Philosophical Magazine 19 (160):831-833.
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  34.  7
    Photovoltaic effect in unipolar multivalley semiconductors.I. N. Volovichev, O. Yu Titov & Yu G. Gurevich - forthcoming - Philosophical Magazine:1-10.
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  35.  21
    Field-dependent carrier transport in non-crystalline semiconductors.J. M. Marshall & G. R. Miller - 1973 - Philosophical Magazine 27 (5):1151-1168.
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  36.  14
    In situdeformation of micro-objects as a tool to uncover the micro-mechanisms of the brittle-to-ductile transition in semiconductors: the case of indium antimonide.L. Thilly, R. Ghisleni, C. Swistak & J. Michler - 2012 - Philosophical Magazine 92 (25-27):3315-3325.
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  37.  15
    Resonant tunnelling lifetime in the semiconductor superlattice.Arif Khan, P. K. Mahapatra, S. P. Bhattacharya & S. Noor Mohammad - 2004 - Philosophical Magazine 84 (6):547-563.
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  38.  11
    The electrical properties of liquid semiconductors.J. E. Enderby & C. J. Simmons - 1969 - Philosophical Magazine 20 (163):125-134.
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  39.  11
    The formation and elimination of helical dislocations in semiconductors.M. S. Abrahams, J. Blanc & C. J. Buiocchi - 1971 - Philosophical Magazine 23 (184):795-809.
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  40.  8
    Binding energy of the biexcitons in isotropic semiconductors.J. Adamowski, S. Bednarek & M. Suffczyński - 1972 - Philosophical Magazine 26 (1):143-151.
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  41.  19
    The spin-orbit interaction in metals and semiconductors.A. O. E. Animalu - 1966 - Philosophical Magazine 13 (121):53-69.
  42.  5
    Remark on the seebeck coefficient of polar semiconductors.J. Appel - 1961 - Philosophical Magazine 6 (61):167-169.
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  43.  20
    An analysis of phonon emission as controlled by the combined interaction with the acoustic and piezoelectric phonons in a degenerate III–V compound semiconductor using an approximated Fermi–Dirac distribution at low lattice temperatures.A. Basu, B. Das, T. R. Middya & D. P. Bhattacharya - forthcoming - Philosophical Magazine:1-16.
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  44.  27
    The atomic and electronic structure of dislocations in Ga-based nitride semiconductors.I. Belabbas, P. Ruterana, J. Chen & G. Nouet - 2006 - Philosophical Magazine 86 (15):2241-2269.
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  45.  10
    From materials science to applications of amorphous, microcrystalline and nanocrystalline silicon and other semiconductors.Arun Madan & Rodrigo Martins - 2009 - Philosophical Magazine 89 (28-30):2431-2434.
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  46.  8
    A trap-limited model for dispersive transport in semiconductors.J. M. Marshall - 1977 - Philosophical Magazine 36 (4):959-975.
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  47.  15
    Vibrational spectra and topological structure of tetrahedrally bonded amorphous semiconductors.P. E. Meek - 1976 - Philosophical Magazine 33 (6):897-908.
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  48.  26
    Memory Effect on Adaptive Decision Making with a Chaotic Semiconductor Laser.Takatomo Mihana, Yuta Terashima, Makoto Naruse, Song-Ju Kim & Atsushi Uchida - 2018 - Complexity 2018:1-8.
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  49.  8
    The scattering of phonons by bound electrons in a semiconductor.I. C. Pyle - 1961 - Philosophical Magazine 6 (65):609-616.
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