Books on the topic 'Data Analysis Workflow'

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1

Long, J. Scott. The workflow of data analysis using Stata. College Station, Tex: Stata Press, 2009.

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2

The workflow of data analysis using Stata. College Station, Tex: Stata Press, 2009.

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3

Business process modeling: Software engineering, analysis and applications. Hauppauge, N.Y: Nova Science Publishers, 2010.

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4

Ould, Martyn A. Business process management: A rigorous approach. Tampa, FL: Meghan-Kiffer Press, 2005.

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5

Miura, Kota. Bioimage Data Analysis Workflows. Cham: Springer Nature, 2020.

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6

Miura, Kota, and Nataša Sladoje, eds. Bioimage Data Analysis Workflows. Cham: Springer International Publishing, 2020. http://dx.doi.org/10.1007/978-3-030-22386-1.

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7

Tova, Milo, ed. Business processes: A database perspective. [San Rafael, Calif.]: Morgan & Claypool, 2012.

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8

Miura, Kota, and Nataša Sladoje, eds. Bioimage Data Analysis Workflows ‒ Advanced Components and Methods. Cham: Springer International Publishing, 2022. http://dx.doi.org/10.1007/978-3-030-76394-7.

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9

Garg, Harish. Mastering Exploratory Analysis with pandas: Build an end-to-end data analysis workflow with Python. Packt Publishing, 2018.

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10

(Editor), Ian J. Taylor, Ewa Deelman (Editor), Dennis B. Gannon (Editor), and Matthew Shields (Editor), eds. Workflows for e-Science: Scientific Workflows for Grids. Springer, 2006.

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11

Business Process Management: A Rigorous Approach. British Computer Society, 2005.

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12

Enterprise Businessprocess And Information Systems Modeling 11th International Workshop Bpmds 2010 And 15th International Conference Emmsad 2010 Held At Caise 2010 Hammamet Tunisia June 78 2010 Proceedings. Springer, 2010.

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13

Miura, Kota, and Nataša Sladoje. Bioimage Data Analysis Workflows. Springer, 2019.

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14

Miura, Kota, and Natasa Sladoje. Bioimage Data Analysis Workflows - Advanced Components and Methods. Springer International Publishing AG, 2021.

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15

Geschftsprozessintegration Mit Sap Fallstudien Zur Steuerung Von Wertschpfungsprozessen Entlang Der Supply Chain. Springer, 2010.

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16

Panai, Roberto. Machine Learning and Data Analysis with Dask: Independently Manage a Dask Cluster and Leverage Your Analytics and Data Science Workflows. Packt Publishing, Limited, 2021.

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17

Martich, Daniel, and Jody Cervenak. Integration of information technology in the ICU. Oxford University Press, 2016. http://dx.doi.org/10.1093/med/9780199600830.003.0007.

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As we look to the evolving health care industry with improved care quality, health outcomes, and cost parameters, the demands of the critical care environment require a transformation. Technology, process, and people are at the centre of this transformation. The power is in the knowledge that can be achieved and the process improvements that can be made through automation. Five major areas of technology evolution include workflow automation, information exchange, clinical decision support, and predictive modelling, remote monitoring, and data analytics. If designed properly, technology can result in doing things differently (better) and doing different things. Information exchange is required for quality and efficient critical care information delivery. Data analytics will use information for comparative effectiveness, registry reporting, population management, and research study recruiting.
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18

Skupio, Rafał. Zastosowanie nieinwazyjnych pomiarów rdzeni wiertniczych do zwiększenia informacji na temat parametrów skał zbiornikowych. Instytut Nafty i Gazu - Państwowy Instytut Badawczy, 2022. http://dx.doi.org/10.18668/pn2022.237.

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The research carried out in the monograph aimed to create a measurement and interpretation system which is to obtain reliable results of well logging with the accuracy of laboratory measurements. Continuous core measurements allow for the generation of logging results without the impact of the borehole and facilitate the depth matching of the core to well log data. Four main chapters can be distinguished in this work: research methodology with a description of the devices used; partial results of core measurements made on various types of rocks; a proposal for a research system, and comprehensive data interpretation for selected boreholes. The methodological part concerned the description of the equipment for continuous measurements of cores in the field of natural gamma radioactivity (K, U, Th) with the application for bulk density measurements using the gamma-gamma method, X-ray fl uorescence spectrometers (XRF) for measuring the chemical composition of rocks and computed tomography (CT) for imaging of the core structure as well as determination of radiological density in Hounsfi eld units (HU). Rock studies were carried out on material representing formations of diff erent lithologies, such as shales, sandstones, limestones, dolomites, anhydrite, siltstones and heterolithic sandstone-siltstone-claystone complexes. The results of measurements made using individual methods have been described in detail and compared with the results of laboratory measurements and well logging data. Test measurements with data processing and interpretation were made on the cores from five boreholes (T-1, O-4, Pt-1, L-7, P-5H), whereas a comprehensive interpretation of the results was carried out for three other boreholes (J-1, P-4, T-2). The new methodology of spectral gamma measurements made it possible to obtain precise concentrations of potassium, uranium and thorium in rocks with high and low radioactivity. The results made it possible to standardise the archival gamma-ray logs made with the Russian-type probes from imp/min to API standard units and to obtain data on the content of K, U, and Th in the core intervals. Using the Cs-137 source in the device for the gamma equipment made it possible to carry out measurements of the bulk density in g/cm3 units. The lithological interpretation based on XRF measurements and mineralogical-chemical models allowed to obtain logs with increased resolution and a more signifi cant number of minerals than was the case with the interpretation of the well logging. In addition, it has been shown that the XRF measurement methodology can be used during the geosteering procedure. The results of the core tests using the CT computed tomography method were presented in combined images and continuous curves of density in HU units. The experience and the presentation of the full scope of measurement and interpretation workflow allowed to propose a procedure for conducting a full range of analyses, considering various types of material provided for research. The procedure considers the full range of analyses as well as the measurements of selected parameters depending on the client’s needs. Keywords: petrophysics, core analyses, XRF spectrometry, computed tomography, gamma profiling, lithological interpretation
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