143 resultados para PDP


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Eu~(3+)XRDUVVUV1. Sc_2Si_2O_7Y_3PO_7Eu~(3+)Y_3PO_7:EuUV618nmSc_2Si_2O_7:EuVUV611nm615nm627nm2. VUVEu~(3+)CaYBO_4:Eu~(3+)Y_4Mg(SiO_4)_3O:Eu~(3+)Y_3BO_6:Eu~(3+) Y_3PO_7:Eu~(3+)Sr_3Al_2O_6:Eu~(3+)Y~(3+)4f5d3. VUVEu~(3+)YPO_4-YVO_44. Y_3BO_6:Eu~(3+)Sr_3Al_2O_6:Eu~(3+)Eu~(3+)

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PDP-PDPPDPPDP- PDPPDPPDPYGdBO_3LaGdPO4YGdVO4YPVO_4LoBSIOSXRDIRSEMXPSTG-DTAPDPVUV1Y,GdBO_3RE~(3+)REEuThVUVsEM100-200nmXPSY,GdBO_3RE~(3+)VUV110-175nmB3G"B-OGGY,GdBO3:RE3Gd3RE3PDPEu3Th3GdB03Y,GdBO3Eu~(3+)2GPDPL aGdPo4RE3REEuTb2HPO4pH5240oC3SEMLaP04Eu3+GdPO4Eu3+Gd3LaGdPO4KE3RE=EuTbVUVGd3Gd3Gd3LaGdPO4Eu3+Gd3Eu3+xPsLaPO4GdP04LaP04O22PGdPo4O2-2pGd34fLaGdPO4RE3VUV3Y,GdVO4Eu3+VUV120-170nmvO43200nm2PO4fY5d20onmEu3VO43-Gd3YGdVO4E"vLJ'vGGd3vo43+Eu3+Y,GdVO4Eu3+Y,Gdvo4EusVO_4~(3-)Eu~(3+)VO_4~(3-)vuvGd~(3+)VO_4~(3-)UVEu~(3+)Gd34YPvO4Eu3"pH12.52406YPVo4Eu3XRDSEMYPVO4Eu3VO3-4YPO4Eu3+100-150nmYVO4Eu3+400-450nmYP VO4:Eu3+VUVEu3+VO3-4~5D_0~7F_2~5D_0~7F_1VO_4~(3-_VO4YPVO4Eus"VUVYP,VO4Eu35LaBSIOSSEM2-3mLaBSiO_5Eu~(3+)1300-400cm~(-1)BO_4SiO_4LaBSiO_5:Re~(3+)RE=EuSmThvuvVUV125-200nmBO_4125-165nmSiO4165-183nmLaBSiO_5RE~(3+)REEuSmTb254nm

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147nm,Y,GdBO_3:Eu,Zn_2SiO_4:MnBa,Sr,MgOnAl_2O_3:MnBa,MgOnAl_2O_3:Eu~(2+),,,,

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This is a mosaic description of PDP-6 LISP, intended for readers familiar with the LISP 1.5 Programmer's Manual or who have used LISP on some other computer. Many of the features, such as the display, are subject to change. Thus, consult a PDP-6 system programmer for any differences which may exist between LISP of Oct. 14, 1966 and present LISP on the system tape.

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Programa de Desarrollo Personal relacionado con la inteligencia emocional y su importancia en el equilibrio afectivo personal y la socializacin de los nios y jvenes. A travs de diversas actividades se trabaja la potenciacin del autoconcepto, la autoestima y la autoeficacia, la motivacin intrnseca y el control emocional y de la ansiedad, la comunicacin, el conocimiento de uno mismo y de los dems, la comprensin, la empata y dems afectos, y la cooperacin con los dems a la hora de actuar y relacionarse para la superacin de problemas que se presentan en la vida diaria.

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A large percentage of the industrial SMEs has an organizational structure for product development too far from the adequate practices and models, elaborated by renowned authors with expertise in the theme of product development. On the other hand, the authors state that SMEs obtain considerable advantages by adopting a model of product development process (PDP) management. Healt is one of the most innovative sectors in the world, and countries like Brazil and Colombia are transitioning from a system that cares for contagious infecttions diseases where the drug product is the main form of treatment - to a system that cares for chronic degenerative conditions - where the equipment, including hospital furniture, has more relevance to the treatment. This change is offering better opportunities of specialized markets to hospital furniture SMEs that adopt an adquate PDF model. The present study proposes a first outline of a model of PDP management for industrial metal-mechanical SMEs that develop and manufacture hospital furniture, from a review of models proposed for great mechanical area.

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PDP++ is a freely available, open source software package designed to support the development, simulation, and analysis of research-grade connectionist models of cognitive processes. It supports most popular parallel distributed processing paradigms and artificial neural network architectures, and it also provides an implementation of the LEABRA computational cognitive neuroscience framework. Models are typically constructed and examined using the PDP++ graphical user interface, but the system may also be extended through the incorporation of user-written C++ code. This article briefly reviews the features of PDP++, focusing on its utility for teaching cognitive modeling concepts and skills to university undergraduate and graduate students. An informal evaluation of the software as a pedagogical tool is provided, based on the authors classroom experiences at three research universities and several conference-hosted tutorials.

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A model of Drosophila circadian rhythm generation was developed to represent feedback loops based on transcriptional regulation of per, Clk (dclock), Pdp-1, and vri (vrille). The model postulates that histone acetylation kinetics make transcriptional activation a nonlinear function of [CLK]. Such a nonlinearity is essential to simulate robust circadian oscillations of transcription in our model and in previous models. Simulations suggest that two positive feedback loops involving Clk are not essential for oscillations, because oscillations of [PER] were preserved when Clk, vri, or Pdp-1 expression was fixed. However, eliminating positive feedback by fixing vri expression altered the oscillation period. Eliminating the negative feedback loop in which PER represses per expression abolished oscillations. Simulations of per or Clk null mutations, of per overexpression, and of vri, Clk, or Pdp-1 heterozygous null mutations altered model behavior in ways similar to experimental data. The model simulated a photic phase-response curve resembling experimental curves, and oscillations entrained to simulated light-dark cycles. Temperature compensation of oscillation period could be simulated if temperature elevation slowed PER nuclear entry or PER phosphorylation. The model makes experimental predictions, some of which could be tested in transgenic Drosophila.

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National Highway Traffic Safety Administration, East Liberty, Ohio

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Thesis (M.S.)--University of Illinois at Urbana-Champaign.

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Thesis (M. S.)--University of Illinois at Urbana-Champaign.

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Includes bibliographical references.