Auswahl der wissenschaftlichen Literatur zum Thema „Repacking“

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Zeitschriftenartikel zum Thema "Repacking"

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Szuromi, Phil. „Repacking rhodium“. Science 355, Nr. 6323 (26.01.2017): 364.4–365. http://dx.doi.org/10.1126/science.355.6323.364-d.

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&NA;, &NA;. „Repacking Your Bags“. Journal of Physician Assistant Education 14, Nr. 3 (2003): 188–89. http://dx.doi.org/10.1097/01367895-200314030-00035.

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Sandberg, W. „Repacking protein interiors“. Trends in Biotechnology 9, Nr. 1 (Januar 1991): 59–63. http://dx.doi.org/10.1016/0167-7799(91)90019-e.

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Sandberg, Warren S., und Thomas C. Terwilliger. „Repacking protein interiors“. Trends in Biotechnology 9, Nr. 2 (Februar 1991): 59–63. http://dx.doi.org/10.1016/0167-7799(91)90190-s.

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Pangestu, Dzulfikri, Ajrieh Setyawan und Hendro Hendro. „RANCANG BANGUN REPACKING DRUM 200 LITER KOROSI HASIL PENGELOLAAN LIMBAH RADIOAKTIF PADAT“. Reaktor : Buletin Pengelolaan Reaktor Nuklir 18, Nr. 1 (06.05.2021): 10. http://dx.doi.org/10.17146/bprn.2021.18.1.6274.

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RANCANG BANGUN REPACKING DRUM 200 LITER KOROSI HASIL PENGOLAHAN LIMBAH RADIOAKTIF PADAT TERKOMPAKSI. Telah dilakukan repacking drum 200 liter korosi hasil pengolahan limbah radioaktif padat terkompaksi di Pusat Teknologi Limbah Radioaktif (PTLR). Tujuan dari repacking adalah menjamin keselamatan radiasi dan penanganan lebih lanjut dari drum 200 liter yang mengalami korosi pada penyimpanan limbah di Interm Storage 2 (IS2) Pusat Teknologi Limbah Radioaktif. Tahapan awal dimulai dengan melakukan pendataan terhadap drum 200 liter yang mengalami korosi serta analisa fisik dimensi dari drum 200 liter menjadi produk repacking dalam bentuk shell beton. Desain gambar menggunakan software google sketch up dengan mengubah 3 buah drum 200 liter korosi menjadi shell beton yang memenuhi standar kualitas IAEA (International Atomic Energy Agency) dengan kuat tekan sebesar 20 – 50 N.mm2. Hasil desain gambar diperoleh bahwa repacking untuk 3 buah drum 200 liter korosi diperoleh dimensi dengan tinggi 120 cm dan diameter 138 cm. Untuk mencapai kuat tekan yang sesuai standar IAEA digunakan matriks semen camp beton K500 lengkap dengan besi bertulang. Hasil akhir kegiatan repacking drum 200 liter korosi diperoleh bahwa untuk satu buah proses menggunakan 3 buah drum 200 liter yang mengalami korosi dan kualitas beton dapat diterima karena sesuai dengan standar IAEA
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Gomes, M. A. F., und V. M. Oliveira. „Repacking of crumpled systems“. Philosophical Magazine Letters 78, Nr. 4 (Oktober 1998): 325–29. http://dx.doi.org/10.1080/095008398177913.

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Zidovska, Alexandra. „Repacking chromatin for therapy“. Nature Biomedical Engineering 1, Nr. 11 (November 2017): 858–59. http://dx.doi.org/10.1038/s41551-017-0161-2.

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Newman, Neil, Alexandre Fréchette und Kevin Leyton-Brown. „Deep optimization for spectrum repacking“. Communications of the ACM 61, Nr. 1 (27.12.2017): 97–104. http://dx.doi.org/10.1145/3107548.

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Wang, Shuaian, Xiaobo Qu, Tingsong Wang und Wen Yi. „Optimal Container Routing in Liner Shipping Networks Considering Repacking 20 ft Containers into 40 ft Containers“. Journal of Advanced Transportation 2017 (2017): 1–9. http://dx.doi.org/10.1155/2017/8608032.

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The volume of a 40 ft container is twice as large as that of a 20 ft container. However, the handling cost (loading, unloading, and transshipment) of a 40 ft container is much lower than twice the corresponding handling cost of two 20 ft containers. Enlightened by this observation, we propose a novel container routing with repacking problem in liner shipping, where two 20 ft containers can be repacked to a 40 ft container in order to reduce the handling cost. We develop a mixed-integer linear programming model that formulates the routing decisions and the repacking decisions in a holistic manner. An illustrative example is reported to demonstrate the applicability of the model. Results show that the benefit of repacking is the most significant when containers are transshipped several times.
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Liu, Chien-Yu, Kuo-Chan Huang, Yi-Hsuan Lee und Kuan-Chou Lai. „Efficient Resource Allocation Mechanism for Federated Clouds“. International Journal of Grid and High Performance Computing 7, Nr. 4 (Oktober 2015): 74–87. http://dx.doi.org/10.4018/ijghpc.2015100106.

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This study proposes a novel efficient resource allocation mechanism for federated clouds, which takes the communication overhead into consideration, to improve system throughput and reduce resource repacking overhead in the auto-scaling mechanism. In general, when the amount of service requests increases, more and more resources are allocated to satisfy these requests. However, single cloud cannot provide unlimited services with limited physical resources; therefore, the federation of multiple clouds may be one possible solution. In the federated cloud environment, when the workload changes, the resource allocation mechanism could adopt vertical/horizontal scaling fashions to repack the required resource into virtual machines. In the vertical scaling approach, the resource allocation mechanism allocates more resources into virtual machines for improving virtual machine's capability. In the horizontal scaling approach, the resource allocation mechanism allocates more virtual machines for enhancing the virtual cluster's capability. However, frequent resource repacking may reduce the system performance. Therefore, in order to improve system throughput and reduce repacking overhead, the proposed mechanism captures the execution pattern of applications by the profiling system and the resource status by the monitoring system, and then allocates resources for configuring the virtual cluster. Performance for NAS Parallel Benchmarks is evaluated. Experimental results show that the authors' approach could reduce repacking overhead and improve system throughput by comparing two previous works.
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Dissertationen zum Thema "Repacking"

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Tollefson, Mallory RaNae. „Accelerated many-body protein side-chain repacking using gpus: application to proteins implicated in hearing loss“. Thesis, University of Iowa, 2017. https://ir.uiowa.edu/etd/6006.

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With recent advances and cost reductions in next generation sequencing (NGS), the amount of genetic sequence data is increasing rapidly. However, before patient specific genetic information reaches its full potential to advance clinical diagnostics, the immense degree of genetic heterogeneity that contributes to human disease must be more fully understood. For example, although large numbers of genetic variations are discovered during clinical use of NGS, annotating and understanding the impact of such coding variations on protein phenotype remains a bottleneck (i.e. what is the molecular mechanism behind deafness phenotypes). Fortunately, computational methods are emerging that can be used to efficiently study protein coding variants, and thereby overcome the bottleneck brought on by rapid adoption of clinical sequencing. To study proteins via physics-based computational algorithms, high-quality 3D structural models are essential. These protein models can be obtained using a variety of numerical optimization methods that operate on physics-based potential energy functions. Accurate protein structures serve as input to downstream variation analysis algorithms. In this work, we applied a novel amino acid side-chain optimization algorithm, which operated on an advanced model of atomic interactions (i.e. the AMOEBA polarizable force field), to a set of 164 protein structural models implicated in deafness. The resulting models were evaluated with the MolProbity structure validation tool. MolProbity “scores” were originally calibrated to predict the quality of X-ray diffraction data used to generate a given protein model (i.e. a 1.0 Å or lower MolProbity score indicates a protein model from high quality data, while a score of 4.0 Å or higher reflects relatively poor data). In this work, the side-chain optimization algorithm improved mean MolProbity score from 2.65 Å (42nd percentile) to nearly atomic resolution at 1.41 Å (95th percentile). However, side-chain optimization with the AMOEBA many-body potential function is computationally expensive. Thus, a second contribution of this work is a parallelization scheme that utilizes nVidia graphical processing units (GPUs) to accelerate the side-chain repacking algorithm. With the use of one GPU, our side-chain optimization algorithm achieved a 25 times speed-up compared to using two Intel Xeon E5-2680v4 central processing units (CPUs). We expect the GPU acceleration scheme to lessen demand on computing resources dedicated to protein structure optimization efforts and thereby dramatically expand the number of protein structures available to aid in interpretation of missense variations associated with deafness.
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Richter, Vojtěch. „Konstrukce podvozku terénní buggy“. Master's thesis, Vysoké učení technické v Brně. Fakulta strojního inženýrství, 2021. http://www.nusl.cz/ntk/nusl-445153.

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This thesis is focused on the front and rear suspension of the off-road buggy. For the front suspension is compared the concept with and without pushrod with respect to the kinematics parameters and the damping parameters. For the rear axle, there are three concepts that is compared, especially multilink suspension, double wishbone, and swing axle. Finally, structural design and dimensioning for front axle is performed.
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Gonçalves, Bruno Miguel Silvério. „Melhoria de fluxos no armazém de componentes da Bosch Termotecnologia S.A“. Master's thesis, Universidade de Aveiro, 2015. http://hdl.handle.net/10773/15627.

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Mestrado em Engenharia e Gestão Industrial
A gestão de um armazém de componentes de uma qualquer empresa produtiva é uma das principais tarefas a desempenhar no seio desta, pois a mesma afecta toda a cadeia de abastecimento de entrega do produto final, sendo o armazém de componentes o início da cadeia interna. Qualquer dificuldade que surja no desenrolar das actividades associadas poderá causar impactos prejudiciais nos processos consequentes. A melhoria do principal processo do armazém, correspondente à satisfação dos pedidos de material dos processos a jusante, é algo que trará benefícios a toda a cadeia, ao mesmo tempo que são melhoradas as condições de trabalho, eliminando o desperdício e tornando o processo mais eficiente. Não obstante deste processo, ainda existe a necessidade de recolher e gerir informações referentes aos diferentes processos do armazém da maneira mais rápida possível, para actuar de acordo com as necessidades. A falta de informação relativamente ao estado de um processo também poderá influenciar os processos seguintes de forma negativa. O projecto aqui apresentado foi realizado no armazém de componentes da Bosch Termotecnologia S.A., em Aveiro, tendo como objectivo mostrar a importância da movimentação de material e também de informação dentro desta área, criando ao mesmo tempo a melhoria tanto dos fluxos de material como dos fluxos de informação. Serão apresentadas diferentes implementações que foram desenvolvidas com o intuito de criar melhoria nos fluxos: a criação de novos fluxos de informação para o processo de recepção de material, com o intuito de recolher informação que até agora não era perceptível, para depois actuar na melhoria do processo; a criação de áreas dedicadas dentro da área de picking, de modo a atingir uma redução no número de colaboradores afectos ao processo de picking; a implementação de uma célula de repacking, de modo a remover esta actividade do processo de picking; bem como todas as actividades realizadas com o objectivo de implementar as melhorias propostas.
The process of managing a components warehouse of a production company is one of the most critical activities within the company itself that will affect the whole supply chain of the final product, being the components warehouse the beginning of the internal chain. Any difficulty that may occur on the correspondent activities may cause damaging impact on the forward processes. The continuous improvement of the most important process in the warehouse, the picking of components to fulfill orders from the production process, will bring benefits to the whole supply chain, while the work conditions are improved and waste eliminated, improving the efficiency of the process. Despite the importance of this specific process, there is the necessity of gathering information for all processes in the fastest way, to know how to act according to the needs. The lack of information could also bring negative consequences on other processes. The project here presented was developed in the components warehouse in Bosch Termotecnologia S.A., in Aveiro, being its purpose to show the importance of material and information movement, while improving the material and information flows. Different activities developed with the objective to improve those flows will be presented. The creation of new information flows on the receiving process, to gather information until this point not noticeable, to later on improve the process; the creation of areas for zone picking, to achieve a reduction in the number of workers associated to the process; the implementation of a repacking cell, to remove this activity from the picking process; and also all the activities linked to the priors, with the objective of achieving the proposed improvements.
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Stokes, Doug. „Repackaging repression : US policy toward Colombia“. Thesis, University of Bristol, 2003. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.399855.

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Green, Joshua Lumpkin. „Digital Blackface: The Repackaging of the Black Masculine Image“. Oxford, Ohio : Miami University, 2006. http://rave.ohiolink.edu/etdc/view?acc%5Fnum=miami1154371043.

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Islam, Md Nazrul. „Repackaging ayurveda in post-colonial India revivalism and global commodification /“. Thesis, Click to view the E-thesis via HKUTO, 2008. http://sunzi.lib.hku.hk/hkuto/record/B39848991.

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Pietruszewski, Megan L. „Repackaging the Reach of Dreams| News Coverage of DACA Rescindment by Three National Newspapers on Twitter“. Thesis, Michigan Technological University, 2018. http://pqdtopen.proquest.com/#viewpdf?dispub=10791647.

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This thesis examines the frames used by three news organizations to cover the rescindment of the Deferred Action for Childhood Arrivals (DACA) program. The rescindment of DACA was a pivotal transition period open to new immigration policy, and frames used in the news coverage of DACA are important as frames influence public opinion and possible future immigration policy. This study uses corpus linguistic methods and Van Gorp’s inductive framing analysis to explore how a complex political decision like DACA rescindment is covered in condensed news stories on Twitter as well as in full-length news articles. The Executive Critique frame, which places blame on President Trump as the problem of DACA rescindment, is the most common frame of both full-length news articles and Tweeted news articles. The Public Resistance frame, showing opposition to DACA rescindment by members of the public, is used more often in Tweeted news articles than in full-length news articles likely because of the salient visuals accompanying Tweeted news stories. Because visuals play a role in framing, journalists should capitalize on the potential of visuals in Tweeted news stories and balance using Human Interest frames and political frames like the Executive Critique frame. Using visuals to show DACA as human issue that promotes common ground, rather than as a divisive political issue, could be more productive in advancing comprehensive immigration reform, which failed in the six-month window President Trump gave to phase-out the DACA program.

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Wilson, Stephanie E. „Mesopelagic zooplankton feeding ecology and effects on particle repackaging and carbon transport in the subtropical and subarctic North Pacific Ocean“. W&M ScholarWorks, 2008. http://www.vims.edu/library/Theses/Wilson08.pdf.

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Abahamye, Aloysius. „Cost comparison between repackaging bulk oral solid medicines and purchasing manufacturer-prepared patient-ready packs in the public sector in South Africa“. Thesis, Nelson Mandela Metropolitan University, 2014. http://hdl.handle.net/10948/d1020596.

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In an attempt to have medicines available in patient-ready packs (PRPs) prior to the dispensing process, the provincial medicine depots in South Africa have, for many years, been repackaging bulk medicines into PRPs. Notwithstanding the fact that bulk medicine packages may have been the only packages available from the manufacturers to service the Primary Health Care (PHC) sector, the main aim of this process was to ensure that medicines were available in PRPs for dispensing to patients, thus, minimising the time spent on each prescription by the pharmacist, pharmacist’s assistant or Nurse. Currently, some medicines are being procured in PRPs from the manufacturers, whereas others are still procured in bulk packs which must be repackaged into PRPs. After a thorough literature search, it was established that, up until this point in time, no studies have been performed to compare costs of repackaged medicines from bulk packs with costs of medicines procured from manufacturers in PRPs. There was very scanty literature comparing the use of medicines procured either in PRPs or bulk packs. However, literature on cost comparison between repackaging and purchasing of commercially available manufacturer-prepared PRPs was not identified.
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Garbuz, Cristina. „Pharmaceutical Trademarks : What should we know about them?“ Thesis, Uppsala universitet, Juridiska institutionen, 2017. http://urn.kb.se/resolve?urn=urn:nbn:se:uu:diva-323928.

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Bücher zum Thema "Repacking"

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1957-, Shapiro David A., Hrsg. Repacking your bags: Lighten your load for the good life. 3. Aufl. San Francisco: Berrett-Koehler Publishers, 2012.

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1957-, Shapiro David A., Hrsg. Repacking your bags: Lighten your load for the rest of your life. 2. Aufl. San Francisco: Berrett-Koehler, 2002.

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1957-, Shapiro David A., Hrsg. Repacking your bags: Lighten your load for the rest of your life. San Francisco: Berrett-Koehler, 1995.

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1957-, Shapiro David A., Hrsg. Repacking your bags: How to live with a new sense of purpose. New York: MJF Books, 1999.

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Subhasis, Chaudhuri, und SpringerLink (Online service), Hrsg. Video Analysis and Repackaging for Distance Education. New York, NY: Springer New York, 2012.

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Ram, A. Ranjith, und Subhasis Chaudhuri. Video Analysis and Repackaging for Distance Education. New York, NY: Springer New York, 2012. http://dx.doi.org/10.1007/978-1-4614-3837-3.

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Unesco. Regional Office for Education in Asia and the Pacific. Manual for repackaging of information on population education. Bangkok: Unesco Regional Office for Education in Asia and the Pacific, 1986.

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Lissu, Tundu Antiphas. Repackaging authoritarianism: NGO policy reform and the freedom of association and expression in Tanzania. Dar es Salaam, Tanzania: Lawyers' Environmental Action Team, 2000.

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Foster, David. Repackaging Republican appeals: The use of propaganda by conservative presidential candidates in the years from 1968 through 2012. Champaign, IL: Common Ground Pub. LLC, 2013.

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Saracevic, Tefko. A course in information consolidation: A handbook for education and training in analysis, synthesis and repackaging of information. Paris: General Information Programme and UNISIST, United Nations Educational, Scientific and Cultural Organization, 1985.

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Buchteile zum Thema "Repacking"

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Haltinner, Kristin. „Repacking the White Privilege Knapsack“. In Teaching Race and Anti-Racism in Contemporary America, 195–205. Dordrecht: Springer Netherlands, 2013. http://dx.doi.org/10.1007/978-94-007-7101-7_18.

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Hermenier, Fabien, Sophie Demassey und Xavier Lorca. „Bin Repacking Scheduling in Virtualized Datacenters“. In Principles and Practice of Constraint Programming – CP 2011, 27–41. Berlin, Heidelberg: Springer Berlin Heidelberg, 2011. http://dx.doi.org/10.1007/978-3-642-23786-7_5.

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Harris, Anna. „Repackaging sensations“. In A Sensory Education, 131–49. Abingdon, Oxon; New York, NY: Routledge, 2021. | Series: Sensory studies: Routledge, 2020. http://dx.doi.org/10.4324/9781003084341-11.

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Ram, A. Ranjith, und Subhasis Chaudhuri. „Instructional Media Repackaging“. In Video Analysis and Repackaging for Distance Education, 11–19. New York, NY: Springer New York, 2012. http://dx.doi.org/10.1007/978-1-4614-3837-3_2.

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Buhler, Stephen M. „Reviving Juliet, Repackaging Romeo“. In Shakespeare after Mass Media, 243–64. New York: Palgrave Macmillan US, 2002. http://dx.doi.org/10.1007/978-1-137-09277-9_11.

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Cronin, Mike. „Repackaging history and mobilizing Easter 1916“. In Routledge International Handbook of Irish Studies, 461–70. Abingdon, Oxon ; New York: Routeldge, 2021.: Routledge, 2020. http://dx.doi.org/10.4324/9780367259228-43.

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Guo, Junxia, Dongdong Liu, Rilian Zhao und Zheng Li. „WLTDroid: Repackaging Detection Approach for Android Applications“. In Web Information Systems and Applications, 579–91. Cham: Springer International Publishing, 2020. http://dx.doi.org/10.1007/978-3-030-60029-7_52.

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Guan, Quanlong, Heqing Huang, Weiqi Luo und Sencun Zhu. „Semantics-Based Repackaging Detection for Mobile Apps“. In Lecture Notes in Computer Science, 89–105. Cham: Springer International Publishing, 2016. http://dx.doi.org/10.1007/978-3-319-30806-7_6.

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Lutchman, Chitram, Kevan Lutchman, Ramakrishna Akula, Charles Lyons und Waddah S. Ghanem Al Hashmi. „Repackaging Multiple Management System into an OEMS“. In Operations Excellence Management System (OEMS), 59–66. Boca Raton, FL : CRC Press/Taylor & Francis Group, 2019.: CRC Press, 2019. http://dx.doi.org/10.1201/b22439-4.

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Ram, A. Ranjith, und Subhasis Chaudhuri. „Media for Distance Education“. In Video Analysis and Repackaging for Distance Education, 1–9. New York, NY: Springer New York, 2012. http://dx.doi.org/10.1007/978-1-4614-3837-3_1.

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Konferenzberichte zum Thema "Repacking"

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Hadji, Makhlouf, und Paul Laborgère. „A virtual machine repacking in clouds“. In the 2014 ACM SIGCOMM workshop. New York, New York, USA: ACM Press, 2014. http://dx.doi.org/10.1145/2627566.2627580.

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Sun, Xin, Jiajia Han, Hua Dai und Qinyuan Li. „An Active Android Application Repacking Detection Approach“. In 2018 13th APCA International Conference on Automatic Control and Soft Computing (CONTROLO). IEEE, 2018. http://dx.doi.org/10.1109/controlo.2018.8439807.

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Diessel, Oliver, und Hossam ElGindy. „Partial FPGA rearrangement by local repacking (abstract)“. In the 1998 ACM/SIGDA sixth international symposium. New York, New York, USA: ACM Press, 1998. http://dx.doi.org/10.1145/275107.275160.

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Consuegra, Mario E., Giri Narasimhan und Raju Rangaswami. „Vector repacking algorithms for power-aware computing“. In 2013 International Green Computing Conference (IGCC). IEEE, 2013. http://dx.doi.org/10.1109/igcc.2013.6604490.

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Sun, Xin, Jiajia Han, Hua Dai und Qinyuan Li. „An Active Android Application Repacking Detection Approach“. In 2018 10th International Conference on Communication Software and Networks (ICCSN). IEEE, 2018. http://dx.doi.org/10.1109/iccsn.2018.8488263.

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Odaker, Thomas, Markus Wiedemann, Christoph Anthes und Dieter Kranzlmüller. „Texture analysis and repacking for improved storage efficiency“. In VRST '16: 22th ACM Symposium on Virtual Reality Software and Technology. New York, NY, USA: ACM, 2016. http://dx.doi.org/10.1145/2993369.2996332.

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Chen, Jianxin, Ling Gong, Peng Zeng und Yuhang Yang. „Several Repacking Algorithms For Data Aggregation in Wireless Sensor Network“. In 2006 IEEE International Conference on Information Acquisition. IEEE, 2006. http://dx.doi.org/10.1109/icia.2006.305799.

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Bettancourt, Rolando E., und Jon M. Peha. „Freeing TV spectrum with LPLT single frequency networks: Repacking irregularly distributed broadcasters“. In 2017 IEEE International Symposium on Dynamic Spectrum Access Networks (DySPAN). IEEE, 2017. http://dx.doi.org/10.1109/dyspan.2017.7920769.

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Yang, Renhua. „Discussion on Teaching Reform of the Course “Fundamentals of Automobile Repacking Design”“. In Proceedings of the 2019 3rd International Seminar on Education, Management and Social Sciences (ISEMSS 2019). Paris, France: Atlantis Press, 2019. http://dx.doi.org/10.2991/isemss-19.2019.33.

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10

Bu, Lei, Haitao Gong, Chuanzhong Yin und Ruijie Bian. „Evaluation Index System of Transshipment and Repacking Solutions in Railway Container Terminals“. In Third International Conference on Transportation Engineering (ICTE). Reston, VA: American Society of Civil Engineers, 2011. http://dx.doi.org/10.1061/41184(419)405.

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Berichte der Organisationen zum Thema "Repacking"

1

Newby, J. Safety assessment of building 800 low-level waste repacking. Office of Scientific and Technical Information (OSTI), Januar 1997. http://dx.doi.org/10.2172/10146631.

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2

Hallman, D. EVALUATION OF FIRE HAZARDS WHILE REPACKAGING PLUTONIUM-CONTAMINATED SCRAP IN HB-LINE. Office of Scientific and Technical Information (OSTI), Dezember 2003. http://dx.doi.org/10.2172/890154.

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3

M.W.Sullivan, J.Ruminer und I.Cuesta. Seismic Vulnerability Assessment Waste Characterization Reduction and Repackaging Building, TA-50-69. Office of Scientific and Technical Information (OSTI), Februar 2003. http://dx.doi.org/10.2172/811960.

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4

Huxford, T. J., R. H. Jr Cooper, L. E. Davis, A. B. Fuller, W. A. Gabbard, R. B. Smith, K. P. Guay und L. C. Smith. A facility design for repackaging ORNL CH-TRU legacy waste in Building 3525. Office of Scientific and Technical Information (OSTI), Juli 1995. http://dx.doi.org/10.2172/82479.

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5

Sorensen, J. H., und B. M. Vogt. Description of Survey Data Regarding the Chemical Repackaging Plant Accident West Helena, Arkansas. Office of Scientific and Technical Information (OSTI), März 1999. http://dx.doi.org/10.2172/5889.

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6

Hoffman, Jenifer, David Prochnow, Paul Smith, Jonathan Teague und Douglas Veirs. Updates to Risk Ranking Algorithm for Repackaging Prioritization of LANL Nuclear Material Storage Containers. Office of Scientific and Technical Information (OSTI), Juli 2014. http://dx.doi.org/10.2172/1148961.

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7

Unknown. INTERNATIONAL UNION OF OPERATING ENGINEERS NATIONAL HAZMAT PROGRAM - HANDSS-55 TRANSURANIC WASTE REPACKAGING MODULE. Office of Scientific and Technical Information (OSTI), August 2001. http://dx.doi.org/10.2172/792081.

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8

Stephens, Gregory Mark. Final Report for the Restart of the Waste Characterization, Reduction and Repackaging Facility (WCRRF) Contractor Readiness Assessment (CRA). Office of Scientific and Technical Information (OSTI), Februar 2017. http://dx.doi.org/10.2172/1345129.

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9

Schriner, J. A. Project report: Tritiated oil repackaging highlighting the ISMS process. Historical radioactive and mixed waste disposal request validation and waste disposal project. Office of Scientific and Technical Information (OSTI), August 1998. http://dx.doi.org/10.2172/674560.

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10

JOHNSON, L. E. Calculation note for Consequences of a fire in the sorting and repackaging glovebox in room 636 of bldg 2736-ZB Plutonium Finishing Plant. Office of Scientific and Technical Information (OSTI), August 1999. http://dx.doi.org/10.2172/797739.

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