Auswahl der wissenschaftlichen Literatur zum Thema „APICS“

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Zeitschriftenartikel zum Thema "APICS"

1

Brodnicki, Thomas, Michelle Ashton, Colleen Elso, et al. "Apics deficiency reveals a role for a long noncoding RNA in dendritic cell function and autoimmunity (BA3P.203)." Journal of Immunology 192, no. 1_Supplement (2014): 44.9. http://dx.doi.org/10.4049/jimmunol.192.supp.44.9.

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Abstract Although in vitro observations indicate that long noncoding RNAs (lncRNAs) regulate innate immune responses, their effect upon immune tolerance in vivo has not been defined. We have identified a novel gene of unknown function for which sequence variation is associated with autoimmune diabetes in the nonobese diabetic (NOD) mouse strain. Bioinformatics and expression analyses indicate this gene encodes a lncRNA that is induced by Toll-like receptor (TLR) activation, localizes to the nucleus and cytoplasm of dendritic cells, and binds to proteins within these cellular compartments. Moreover, sequence variation for this gene is associated with altered TLR-mediated cytokine production. Hence this gene was named Apics for Attenuator of Pattern recognition receptor-Induced Cytokine Secretion. To further investigate the function of this lncRNA, we established a C57BL/6 (B6) knockout mouse strain for Apics and discovered that Apics-deficient dendritic cells exhibit enhanced TLR-mediated cytokine production. Apics-deficient B6 mice also exhibit increased susceptibility to autoimmunity in two disease models: experimental autoimmune encephalomyelitis and experimental anti-neutrophil cytoplasmic antibody-associated vasculitis. Our study suggests that lncRNAs, such as Apics, can serve as TLR-inducible repressors that regulate the magnitude of innate immune responses to reduce the risk for developing autoimmune disease.
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2

Ogle and Frohlich. "APICS: Request for Proposals." Transportation Journal 57, no. 4 (2018): iii. http://dx.doi.org/10.5325/transportationj.57.4.iii.

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3

Lummus, Rhonda R. "The role of APICS in professionalizing operations management." Journal of Operations Management 25, no. 2 (2006): 336–45. http://dx.doi.org/10.1016/j.jom.2006.11.004.

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4

Pulido Castelblanco, Angela Patricia, Juliana Acosta Fonseca, Dayhanna Fernández García, and Angie Guacaneme Monroy. "Comparación de las competencias logísticas del gestor de la cadena de suministros en la Escuela Militar de Cadetes “General José María Córdova” y el modelo internacional APICS." Brújula Semilleros de Investigación 8, no. 16 (2020): 16–28. http://dx.doi.org/10.21830/23460628.30.

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El Ejército Nacional de Colombia requiere mejorar de forma continua su función logística para responder al constante crecimiento de sus operaciones y superar los desafíos que enfrenta en el cumplimiento de sus funciones constitucionales. Con la intención de contribuir en esta misión, el objetivo de este estudio es identificar conceptualmente las competencias de los gestores de la cadena de suministros de la Escuela Militar de Cadetes “General José María Córdova” (ESMIC). Como metodología se aplicaron técnicas de revisión y análisis documental para comparar el modelo internacional de competencias APICS (American Production and Inventory Control Society) con la formación que el programa de Administración Logística le brinda al estudiante como gestor de la cadena de suministros del Ejército Nacional de Colombia. El resultado del análisis evidencia que la ESMIC cumple con el 92,3 % del total de las competencias que propone el modelo APICS y se concluye que el porcentaje restante se puede incluir dentro de los saberes específicos que oferta el programa de Administración Logística de la institución.
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5

Powell, Paul C., and Charles I. Zigelman. "Formal Manufacturing Approaches to Modern Shipbuilding." Journal of Ship Production 5, no. 03 (1989): 188–99. http://dx.doi.org/10.5957/jsp.1989.5.3.188.

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This paper describes how a formal manufacturing environment, as defined by the American Production and Inventory Control Society (APICS), compares with modern shipbuilding techniques. Formal manufacturing, through a product-based build strategy, provides a framework for integrating contract scheduling, design development, material purchasing, inventory control, production capacity planning, and production control. An understanding of formal manufacturing provides a foundation for understanding modern shipbuilding techniques.
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6

Eshkenazi. "APICS Introduction: Advancing the Global Supply Chain End-to-End." Transportation Journal 54, no. 4 (2015): iv. http://dx.doi.org/10.5325/transportationj.54.4.iv.

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7

Amritha, G., G. Kanimozhi, K. Mohana Sundaram, L. Natrayan, and Kiran Ramaswamy. "Modified High Gain DC-DC Converter with APICs for Microgrid." Mathematical Problems in Engineering 2022 (October 5, 2022): 1–9. http://dx.doi.org/10.1155/2022/7582036.

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This paper proposes a nonisolated high voltage gain DC-DC converter. The active–passive inductor cells (APICs) makes the converter topology expandable, and it also helps in providing a high gain quality at lower duty cycles. The proposed converter is suitable for high gain applications mainly necessitating microgrid as well as integration of renewable energy sources into the existing grid infrastructure. The merits of the converter can be attributed to the ability to achieve high gain and low current stress and switching losses on power electronic switches. The proposed converter is analyzed in both continuous and discontinuous modes of operation, the efficiency is calculated and simulation results substantiate the operation of the converter.
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8

Reinhardt, B., R. Buras, L. Bugliaro, S. Wilbert, and B. Mayer. "Determination of circumsolar radiation from Meteosat Second Generation." Atmospheric Measurement Techniques Discussions 6, no. 3 (2013): 5835–79. http://dx.doi.org/10.5194/amtd-6-5835-2013.

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Abstract. Reliable data on circumsolar radiation, which is caused by scattering of sun light by cloud or aerosol particles, is becoming more and more important for the resource assessment and design of concentrating solar technologies (CSTs). However, measuring circumsolar radiation is demanding and only very limited data sets are available. As a step to bridge this gap, we have developed a method to determine circumsolar radiation from cirrus cloud properties retrieved by the geostationary satellites of the Meteosat Second Generation (MSG) family. The method takes output from the COCS algorithm to generate a cirrus mask from MSG data, then uses the retrieval algorithm APICS to obtain the optical thickness and the effective radius of the detected cirrus, which in turn are used to determine the circumsolar radiation from a pre-calculated lookup table. The lookup table was generated from extensive calculations using a specifically adjusted version of the Monte Carlo radiative transfer model MYSTIC and by developing a fast yet precise parameterization. APICS was also improved such that it determines the surface albedo, which is needed for the cloud property retrieval, in a self-consistent way instead of using external data. Furthermore it was extended to consider new ice particle shapes to allow for an uncertainty analysis concerning this parameter. We found that the nescience of the ice particle shape leads to an uncertainty of up to 50%. A validation with ground based measurements of circumsolar radiation show good agreement with the new "Baum v3.5" ice particle shape parameterization. For the circumsolar ratio (CSR) the validation yields a mean absolute deviation (MAD) of 0.10, a bias of 11% and a Spearman rank correlation rrank, CSR of 0.54. If measurements with sub-scale cumulus clouds within the relevant satellite pixels are manually excluded, the results improve to MAD = 0.07, bias = −3% and rrank, CSR = 0.71.
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Bugliaro, L., T. Zinner, C. Keil, et al. "Validation of cloud property retrievals with simulated satellite radiances: a case study for SEVIRI." Atmospheric Chemistry and Physics 11, no. 12 (2011): 5603–24. http://dx.doi.org/10.5194/acp-11-5603-2011.

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Abstract. Validation of cloud properties retrieved from passive spaceborne imagers is essential for cloud and climate applications but complicated due to the large differences in scale and observation geometry between the satellite footprint and the independent ground based or airborne observations. Here we illustrate and demonstrate an alternative approach: starting from the output of the COSMO-EU weather model of the German Weather Service realistic three-dimensional cloud structures at a spatial scale of 2.33 km are produced by statistical downscaling and microphysical properties are associated to them. The resulting data sets are used as input to the one-dimensional radiative transfer model libRadtran to simulate radiance observations for all eleven low resolution channels of MET-8/SEVIRI. At this point, both cloud properties and satellite radiances are known such that cloud property retrieval results can be tested and tuned against the objective input "truth". As an example, we validate a cloud property retrieval of the Institute of Atmospheric Physics of DLR and that of EUMETSAT's Climate Monitoring Science Application Facility CMSAF. Cloud detection and cloud phase assignment perform well. By both retrievals 88% of the pixels are correctly classified as clear or cloudy. The DLR algorithm assigns the correct thermodynamic phase to 95% of the cloudy pixels and the CMSAF retrieval to 84%. Cloud top temperature is slightly overestimated by the DLR code (+3.1 K mean difference with a standard deviation of 10.6 K) and to a very low extent by the CMSAF code (−0.12 K with a standard deviation of 7.6 K). Both retrievals account reasonably well for the distribution of optical thickness for both water and ice clouds, with a tendency to underestimation. Cloud effective radii are most difficult to evaluate but the APICS algorithm shows that realistic histograms of occurrences can be derived (CMSAF was not evaluated in this context). Cloud water path, which is a combination of the last two quantities, is slightly underestimated by APICS, while CMSAF shows a larger scattering.
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10

Li, Bingguang, Bojun Liu, Vanthuan Nguyen, and Binshan Lin. "A study of the development of APICS Body of Knowledge and CPIM certification in China." International Journal of Management in Education 1, no. 1/2 (2007): 152. http://dx.doi.org/10.1504/ijmie.2007.014384.

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