Results for 'TETRAHEDRA'

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  1. subregular tetrahedra.John Corcoran - 2008 - Bulletin of Symbolic Logic 14 (3):411-2.
    This largely expository lecture deals with aspects of traditional solid geometry suitable for applications in logic courses. Polygons are plane or two-dimensional; the simplest are triangles. Polyhedra [or polyhedrons] are solid or three-dimensional; the simplest are tetrahedra [or triangular pyramids, made of four triangles]. -/- A regular polygon has equal sides and equal angles. A polyhedron having congruent faces and congruent [polyhedral] angles is not called regular, as some might expect; rather they are said to be subregular—a word coined (...)
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  2.  13
    Double tetrahedra in quenched gold.J. A. Eades & J. M. Rojo - 1968 - Philosophical Magazine 18 (155):1093-1096.
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  3.  24
    Tetrahedra, motion, and virtue.Joan Kung - 1985 - Noûs 19 (1):17-27.
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  4.  3
    Vacancy tetrahedra in copper due to electron irradiation in the high-voltage microscope.M. Ipohorski & M. S. Spring - 1970 - Philosophical Magazine 22 (180):1279-1283.
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  5.  15
    Mechanisms of stacking fault tetrahedra destruction by gliding dislocations in quenched gold.Y. Matsukawa, Y. N. Osetsky, R. E. Stoller & S. J. Zinkle - 2008 - Philosophical Magazine 88 (4):581-597.
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  6.  25
    Stacking-fault tetrahedra in deformed face-centred cubic metals.M. H. Loretto, L. M. Clarebrough & R. L. Segall - 1965 - Philosophical Magazine 11 (111):459-465.
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  7.  25
    Annealing of stacking-fault tetrahedra in gold.M. J. Yokota & J. Washburn - 1967 - Philosophical Magazine 16 (141):459-466.
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  8.  18
    Stacking-fault tetrahedra in annealed f.c.c. metals and alloys.L. M. Clarebrough - 1974 - Philosophical Magazine 30 (6):1295-1312.
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  9.  22
    Irradiation-induced stacking fault tetrahedra in fcc metals.R. Schäublin, Z. Yao, N. Baluc & M. Victoria - 2005 - Philosophical Magazine 85 (4-7):769-777.
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  10.  13
    Irradiation-induced stacking fault tetrahedra in fcc metals.R. Schäublin *, Z. Yao, N. Baluc & M. Victoria - 2005 - Philosophical Magazine 85 (4-7):769-777.
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  11.  9
    Direct observations of the annealing of stacking-fault tetrahedra in gold using high voltage electron microscopy.H. L. Fraser, M. H. Loretto & R. E. Smallman - 1973 - Philosophical Magazine 28 (5):1043-1056.
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  12.  26
    An Application of Logic to Combinatorial Geometry: How Many Tetrahedra are Equidecomposable with a Cube?Vladik Kreinovich & Olga Kosheleva - 1994 - Mathematical Logic Quarterly 40 (1):31-34.
    The main result of this paper were announced in Kosheleva — Kreinovich [7, 8]; for other algorithmic aspects of Hilbert's Third Problem see Kosheleva [6]. The authors are greatly thankful to Alexandr D. Alexandrov , Vladimir G. Boltianskii and Patrick Suppes for valuable discussions, and to the anonymous referee for important suggestions. This work was partially supported by an NSF grant No. CDA-9015006.
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  13.  29
    A dislocation dynamics study of the strength of stacking fault tetrahedra. Part I: interactions with screw dislocations.E. Martinez, J. Marian, A. Arsenlis, M. Victoria & J. M. Perlado - 2008 - Philosophical Magazine 88 (6):809-840.
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  14.  13
    Alpha-irradiation-induced removal of stacking-fault tetrahedra in quenched gold.R. M. J. Cotterill & M. W. Jones - 1964 - Philosophical Magazine 10 (105):535-549.
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  15.  9
    Calculations for the stability of voids, stacking-fault tetrahedra, and dislocation loops in nickel.R. A. Johnson - 1967 - Philosophical Magazine 16 (141):553-564.
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  16.  7
    The effect of multiple quenching on the stability and growth of defect tetrahedra.I. A. Johnston, P. S. Dobson & R. E. Smallman - 1968 - Philosophical Magazine 17 (150):1289-1293.
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  17.  19
    Elastic model for arrays of stacking fault tetrahedra produced under electron irradiation.L. P. Kubin, A. Rocher, M. O. Ruault & B. Jouffrey - 1976 - Philosophical Magazine 33 (2):293-303.
  18.  16
    A dislocation dynamics study of the strength of stacking fault tetrahedra. Part II: interactions with mixed and edge dislocations.E. Martinez, J. Marian & J. M. Perlado - 2008 - Philosophical Magazine 88 (6):841-863.
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  19.  7
    The annealing of stacking-fault tetrahedra in gold.R. L. Segall, L. M. Clarebrough & M. H. Loretto - 1966 - Philosophical Magazine 14 (127):53-63.
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  20.  20
    On the growth of annealing of stacking-fault tetrahedra in gold.K. C. Jain & R. W. Siegel - 1972 - Philosophical Magazine 26 (3):637-647.
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  21.  15
    Temperature dependence of the vacancy sink efficiency of stacking-fault tetrahedra in quenched gold.K. C. Jain & R. W. Siegel - 1972 - Philosophical Magazine 25 (1):105-115.
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  22.  13
    Closed and open-ended stacking fault tetrahedra formation along the interfaces of Cu–Al nanolayered metals.Ruizhi Li & Huck Beng Chew - 2015 - Philosophical Magazine 95 (25):2747-2763.
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  23.  11
    The formation of intrinsic stacking-fault tetrahedra in deformed F.C.C. alloys.M. H. Loretto & A. Pavey - 1968 - Philosophical Magazine 17 (147):553-559.
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  24.  29
    Molecular dynamics studies of the interaction ofa/6 ⟨112⟩ Shockley dislocations with stacking fault tetrahedra in copper. Part I: Intersection of SFT by an isolated Shockley. [REVIEW]M. Niewczas & R. G. Hoagland - 2009 - Philosophical Magazine 89 (7):623-640.
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  25.  12
    Molecular dynamic studies of the interaction of a/6⟨112⟩ Shockley dislocations with stacking fault tetrahedra in copper. Part II: Intersection of stacking fault tetrahedra by moving twin boundaries. [REVIEW]M. Niewczas & R. G. Hoagland - 2009 - Philosophical Magazine 89 (8):727-746.
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  26. Group Field Theories and Phase Transitions: Revisiting the Problem of Spacetime Emergence.M. Forgione - manuscript
    With the present paper I maintain that the group field theory (GFT) approach to quantum gravity can help us clarify and distinguish the problems of spacetime emergence from the questions about the nature of the quanta of space. I will show that the mechanism of phase transition suggests a form of indifference between scales (or phases) and that such an indifference allows us to black-box questions about the nature of the ontology of the fundamental levels of the theory. I consider (...)
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  27. Matters of Size, Texture, and Resilience: The Varieties of Elemental Forms in Plato's Timaeus.István Bodnár - 2008 - Rhizai. A Journal for Ancient Philosophy and Science 5:9-34.
    Timaeus after assigning four regular solids – tetrahedra, octahedra, icosahedra and cubes – to fire, air, water and earth, respectively, submits at 57d–e that different kinds of gaseous, liquid or solid materials, and their interactions and intertransformations require that the four solids occur in different sizes. The paper discusses two different strategies for the generation of these differences in size: the traditional one, which allows that the triangles that are the fundamental building blocks of these solids do occur in (...)
     
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  28.  12
    Elastic and structural properties of vanadium–lithium–borate glasses.M. A. Sidkey, A. Abd El-Moneim, M. S. Gaafar, N. S. Abd El-Aal, L. Abd El-Latif & I. M. Youssof - 2008 - Philosophical Magazine 88 (11):1705-1722.
    The ternary xV2O5–(40 − x)Li2O–60B2O3 glass system, where x = 1, 2, 3, 4 and 6 mol%, was prepared by normal quenching. Ultrasonic velocities and attenuation were measured at room temperature using a pulse-echo technique. Various parameters, such as elastic moduli, micro-hardness, Poisson's ratio and Debye temperature, were determined from the measured densities and velocities. The composition dependence of these parameters, in addition to the glass-transition temperature, suggested that vanadium ions were incorporated into these glasses as a network modifier, resulting (...)
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