LEADER 03610nam 2200577 450 001 9910463814903321 005 20200520144314.0 010 $a0-12-411528-4 035 $a(CKB)2670000000574943 035 $a(CaPaEBR)ebrary10990014 035 $a(SSID)ssj0001369427 035 $a(PQKBManifestationID)12586104 035 $a(PQKBTitleCode)TC0001369427 035 $a(PQKBWorkID)11288246 035 $a(PQKB)11668783 035 $a(MiAaPQ)EBC1832704 035 $a(CaSebORM)9780124114616 035 $a(Au-PeEL)EBL1832704 035 $a(CaPaEBR)ebr10990014 035 $a(CaONFJC)MIL659698 035 $a(OCoLC)894555128 035 $a(EXLCZ)992670000000574943 100 $a20141212h20152015 uy 0 101 0 $aeng 135 $aurcnu|||||||| 181 $ctxt 182 $cc 183 $acr 200 10$aBusiness intelligence guidebook $efrom data integration to analytics /$fRick Sherman ; foreword by Claudia Imhoff 205 $a1st edition 210 1$aWaltham, Massachusetts :$cMorgan Kaufmann,$d2015. 210 4$d©2015 215 $a1 online resource (551 p.) 300 $aBibliographic Level Mode of Issuance: Monograph 311 $a0-12-411461-X 311 $a1-322-28418-0 320 $aIncludes bibliographical references and index. 330 $aBetween the high-level concepts of business intelligence and the nitty-gritty instructions for using vendors? tools lies the essential, yet poorly-understood layer of architecture, design and process. Without this knowledge, Big Data is belittled ? projects flounder, are late and go over budget. Business Intelligence Guidebook: From Data Integration to Analytics shines a bright light on an often neglected topic, arming you with the knowledge you need to design rock-solid business intelligence and data integration processes. Practicing consultant and adjunct BI professor Rick Sherman takes the guesswork out of creating systems that are cost-effective, reusable and essential for transforming raw data into valuable information for business decision-makers. After reading this book, you will be able to design the overall architecture for functioning business intelligence systems with the supporting data warehousing and data-integration applications. You will have the information you need to get a project launched, developed, managed and delivered on time and on budget ? turning the deluge of data into actionable information that fuels business knowledge. Finally, you?ll give your career a boost by demonstrating an essential knowledge that puts corporate BI projects on a fast-track to success. Provides practical guidelines for building successful BI, DW and data integration solutions. Explains underlying BI, DW and data integration design, architecture and processes in clear, accessible language. Includes the complete project development lifecycle that can be applied at large enterprises as well as at small to medium-sized businesses Describes best practices and pragmatic approaches so readers can put them into action. Companion website includes templates and examples, further discussion of key topics, instructor materials, and references to trusted industry sources. 606 $aBusiness intelligence 608 $aElectronic books. 615 0$aBusiness intelligence. 676 $a658.4/72 700 $aSherman$b Rick$0890818 702 $aImhoff$b Claudia 801 0$bMiAaPQ 801 1$bMiAaPQ 801 2$bMiAaPQ 906 $aBOOK 912 $a9910463814903321 996 $aBusiness intelligence guidebook$91989926 997 $aUNINA LEADER 08481nam 2200565 450 001 9910555178703321 005 20221105110225.0 010 $a1-119-56447-6 010 $a1-119-56446-8 010 $a1-119-56448-4 035 $a(CKB)4100000011949004 035 $a(MiAaPQ)EBC6938205 035 $a(Au-PeEL)EBL6938205 035 $a(EXLCZ)994100000011949004 100 $a20221105d2021 uy 0 101 0 $aeng 135 $aurcnu|||||||| 181 $ctxt$2rdacontent 182 $cc$2rdamedia 183 $acr$2rdacarrier 200 00$aCrustal magmatic system evolution $eanatomy, architecture, and physico-chemical processes /$fMatteo Masotta, Christoph Beier and Silvio Mollo, editors 210 1$aHoboken, New Jersey :$cAmerican Geophysical Union :$cWiley,$d[2021] 210 4$d©2021 215 $a1 online resource (254 pages) 225 1 $aGeophysical monograph 300 $aIncludes index. 311 $a1-119-56445-X 327 $aCover -- Title Page -- Copyright Page -- Contents -- List of Contributors -- Preface -- Part I Architecture of Crustal Magmatic Systems -- Chapter 1 Geothermobarometry of Mafic and Ultramafic Xenoliths: Examples From Hualalai and Mauna Kea Volcanoes, Hawaii -- 1.1. Introduction -- 1.2. Geological and Petrological Background -- 1.3. Revised Geothermobarometry of Mauna Kea and Hualalai Xenoliths -- 1.3.1. Rationale and Data Selection -- 1.3.2. Temperature Estimates -- 1.3.3. Pressure Estimates -- 1.4. Discussion -- 1.4.1. Comparisons with Previous Estimates and Implications of the Results -- 1.4.2. Geobarometry of Xenoliths as One of the Links between Petrology and Geophysics -- 1.5. Conclusions and Future Perspectives -- Acknowledgments -- References -- Chapter 2 Trace Element Geothermometry and Geospeedometry for Cumulate Rocks: Quantitative Constraints on Thermal and Magmatic Processes During Igneous Crust Formation -- 2.1. Introduction -- 2.2. A Trace Element Perspective for Decoding Thermal and Magmatic Records in Minerals -- 2.2.1. Equilibrium Exchange -- 2.2.2. Chemical Diffusion -- 2.3. Trace Element Geothermometry -- 2.3.1. Theoretical Basis -- 2.3.2. Trace Element Partitioning -- 2.3.3. Geothermometers for Mafic Cumulates -- 2.4. Trace Element Geospeedometry -- 2.4.1. Diffusion and Geospeedometry -- 2.4.2. Basic Idea of Geospeedometer Design -- 2.4.3. The Mg-REE Coupled Geospeedometer for Mafic Cumulates -- 2.5. A Case Study on Oceanic Crust Formation -- 2.6. Concluding Remarks -- Acknowledgments -- References -- Chapter 3 Magma Storage at Ocean Islands: Insights From Cape Verde -- 3.1. Introduction -- 3.2. The Cape Verde Archipelago -- 3.2.1. Geochronology of the Cape Verde Archipelago -- 3.2.2. The Geology of Santiago -- 3.2.3. The Geology of Fogo -- 3.2.4. The Geology of Brava -- 3.2.5. The Cadamosto Seamount. 327 $a3.2.6. Volcanic Eruptions and Hazards at Fogo -- 3.3. Magmatic Processes -- 3.4. Magma Storage in Southern Cape Verde -- 3.4.1. Controls on the Depth of Magma Storage -- 3.5. Insights Into the Shallower Magmatic System -- 3.6. Ocean Islands Globally -- 3.7. Conclusions and Recommendations -- Acknowledgments -- References -- Chapter 4 Anatomy of Intraplate Monogenetic Alkaline Basaltic Magmatism: Clues From Magma, Crystals, and Glass -- 4.1. Introduction -- 4.2. Origin of Intraplate Monogenetic Basaltic Systems -- 4.3. Insights From Whole?Rock Chemical Data -- 4.4. Insights From Crystal Compositions -- 4.5. Insights From Glass Compositions -- 4.6. Summary and Concluding Remarks -- Acknowledgments -- References -- Part II Experimental and Numerical Constraints on Magmatic Processes -- Chapter 5 Magma Differentiation and Contamination: Constraints From Experimental and Field Evidences -- 5.1. Introduction -- 5.2. Geological and Geochemical Inferences on Fractionation -- 5.3. Mechanisms of Liquid-Crystal Separation -- 5.3.1. Gravitational Collapse and Compaction -- 5.3.2. Crystallization in a Vertical (Non?Gravitational) TBL -- 5.4. Magma Contamination by Country-Rock Assimilation -- 5.4.1. Field Relations Supporting Assimilation and Magma Contamination -- 5.4.2. Experiments on Contamination -- 5.5. Concluding Remarks -- Acknowledgments -- References -- Chapter 6 Crystal and Volatile Controls on the Mixing and Mingling of Magmas -- 6.1. Introduction: Magma Mixing and Mingling and Volcanic Plumbing Systems -- 6.1.1. Chemical Mixing -- 6.1.2. Physical Mingling -- 6.2. Controls on Magma Mingling: Observations, Experiments, and Numerical Models -- 6.2.1. Field Observations -- 6.2.2. Analogue Experiments -- 6.2.3. High-Temperature and/or High-Pressure Experiments -- 6.2.4. Numerical Models. 327 $a6.3. Petrologic Constraints on Mingling Conditions: Petrographic Interpretations -- 6.3.1. Volcanic Systems -- 6.3.2. Phenocryst, Xenocryst, and Groundmass Textures and Chemistries -- 6.3.3. Interpretation of Textures and Chemistries -- 6.3.4. Conceptual Model of Magma Mixing and Mingling -- 6.4. Quantitative Modeling of Crystal and Volatile Controls on Mixing and Mingling -- 6.4.1. The Model of Andrews and Manga (2014) -- 6.4.2. The Model of Bergantz et al. (2015) -- 6.4.3. The Model of Montagna et al. (2015) -- 6.4.4. Comparison and Common Limitations -- 6.5. Conclusions and Outlook for Future Research -- Acknowledgments -- References -- Chapter 7 From Binary Mixing to Magma Chamber Simulator: Geochemical Modeling of Assimilation in Magmatic Systems -- 7.1. Introduction -- 7.2. The End-Member Modes of Magmatic Interaction -- 7.2.1. Defining Homogeneity in Mixtures -- 7.2.2. Terminology of Mixing in Magmatic Systems -- 7.2.3. Mixing Versus Assimilation -- 7.2.4. Defining the End?Member Modes of Magmatic Interaction -- 7.3. Overview of Geochemical Models of Assimilation -- 7.3.1. In Bunsen's Footsteps: Simple Binary Mixing Model -- 7.3.2. Assimilation Coupled With Fractional Crystallization: AFCDP -- 7.3.3. Integration of Thermodynamic Constraints Into Modeling Assimilation: EC-AFC -- 7.3.4. Phase Equilibria of Assimilation: MCS -- 7.3.5. Comparison of the Different Assimilation Models -- 7.3.6. MCS Applied to a Natural System: Flood Basalts From Antarctica -- 7.4. Summary -- Acknowledgments -- References -- Part III Timescales of Magma Dynamics -- Chapter 8 Elemental Diffusion Chronostratigraphy: Time-Integrated Insights Into the Dynamics of Plumbing Systems -- 8.1. Introduction -- 8.2. Geospeedometry: Approach and Limitations -- 8.3. Isothermal Versus Non-Isothermal Approach -- 8.4. The Temperature Conundrum. 327 $a8.5. Two Examples: Stromboli and Popocatépetl Volcanoes -- 8.6. Resolving Elemental Diffusion Stratigraphy -- 8.7. Uncertainties -- 8.8. Conclusions: A Way Forward -- Acknowledgments -- References -- Chapter 9 Interpreting Magma Dynamics Through a Statistically Refined Thermometer: Implications for Clinopyroxene Fe-Mg Diffusion Modeling and S ector Zoning at Stromboli -- 9.1. Introduction -- 9.2. Calibration and Test Data Sets -- 9.3. Parameterization of the Thermometer -- 9.4. Implications for Magma Dynamics at Stromboli -- 9.4.1. Modeling Magma Storage Timescales -- 9.4.2. Interpreting Hourglass Sector Zoning -- 9.5. Final Remarks -- Acknowledgments -- References -- Chapter 10 Insights Into Processes and Timescales of Magma Storage and Ascent From Textural and Geochemical Investigations: Case Studies From High?Risk Neapolitan Volcanoes (Italy) -- 10.1. Introduction -- 10.2. Volcanological Background of Neapolitan Area -- 10.3. Magma Evolution in Crustal Reservoirs -- 10.3.1. Magma Storage Processes and Timescales for Neapolitan Volcanoes -- 10.4. Magma Ascent in Volcanic Conduit -- 10.4.1. Degassing and Crystallization of Ascending Alkaline Neapolitan Magmas -- 10.5. Conclusions: Implications for Future Hazards -- Acknowledgments -- References -- Index -- EULA. 410 0$aGeophysical monograph. 606 $aMagmas 606 $aMagmatism 606 $aVolcanoes 608 $aElectronic books. 615 0$aMagmas. 615 0$aMagmatism. 615 0$aVolcanoes. 676 $a552.2 702 $aMasotta$b Matteo$f1984- 702 $aBeier$b Christoph$f1977- 702 $aMollo$b Silvio$f1975- 801 0$bMiAaPQ 801 1$bMiAaPQ 801 2$bMiAaPQ 906 $aBOOK 912 $a9910555178703321 996 $aCrustal Magmatic System Evolution$92817414 997 $aUNINA LEADER 01075nam0 22002771i 450 001 UON00310256 005 20231205104051.732 100 $a20080410d1975 |0itac50 ba 101 $ajpn 102 $aJP 105 $a|||| 1|||| 200 1 $aYonen jidai$fMuro Saisei 210 $aTokyo$cShueisha$d1975 215 $a300 p.$d21 cm 410 1$1001UON00051708$12001 $aJunyahan Nihon no Bungaku$v42 606 $aLetteratura giapponese$xNarrativa$xSec. 20.$3UONC000232$2FI 620 $aJP$dTo?kyo?$3UONL000031 686 $aGIA VI BA$cGiappone - Letteratura moderna e contemporanea - Testi$2A 700 0$aMURO Saisei$3UONV025957$0635599 712 $aShu?eisha$3UONV246778$4650 801 $aIT$bSOL$c20260220$gRICA 899 $aSIBA - SISTEMA BIBLIOTECARIO DI ATENEO E ARCHIVIO STORICO$2UONSI 912 $aUON00310256 950 $aSIBA - SISTEMA BIBLIOTECARIO DI ATENEO E ARCHIVIO STORICO$dSI GIA VI BA 001 (42) $eSI SA 9932 7 001 (42) 996 $aYonen jidai$91282364 997 $aUNIOR LEADER 06029nam 2201669z- 450 001 9910367743603321 005 20210212 010 $a3-03921-591-4 035 $a(CKB)4100000010106281 035 $a(oapen)https://directory.doabooks.org/handle/20.500.12854/59473 035 $a(oapen)doab59473 035 $a(oapen)59473 035 $a(EXLCZ)994100000010106281 100 $a20202102d2019 |y 0 101 0 $aeng 135 $aurmn|---annan 181 $ctxt$2rdacontent 182 $cc$2rdamedia 183 $acr$2rdacarrier 200 10$aSmart and Functional Polymers 210 $cMDPI - Multidisciplinary Digital Publishing Institute$d2019 215 $a1 online resource (306 p.) 311 08$a3-03921-590-6 330 $aThis book is based on the Special Issue of the journal Molecules on "Smart and Functional Polymers". The collected research and review articles focus on the synthesis and characterization of advanced functional polymers, polymers with specific structures and performances, current improvements in advanced polymer-based materials for various applications, and the opportunities and challenges in the future. The topics cover the emerging synthesis and characterization technology of smart polymers, core?shell structure polymers, stimuli-responsive polymers, anhydrous electrorheological materials fabricated from conducting polymers, reversible polymerization systems, and biomedical polymers for drug delivery and disease theranostics. In summary, this book provides a comprehensive overview of the latest synthesis approaches, representative structures and performances, and various applications of smart and functional polymers. It will serve as a useful reference for all researchers and readers interested in polymer sciences and technologies. 606 $aChemistry$2bicssc 610 $a?-NaYF4 610 $aadministration routes 610 $aalbumin 610 $aamphiphilic copolymer 610 $aamphiphilicity 610 $aand antimicrobial activity) 610 $aand energy conversion 610 $aand purification 610 $aand tissue engineering 610 $aantidiabetic 610 $aantitumor 610 $aapplications 610 $abiomedical devices 610 $abreast cancer 610 $acancer chemotherapy 610 $acastor oil 610 $acatalyst 610 $achemical activation 610 $achemical resistance 610 $achemotherapy 610 $achitosan 610 $aclinical translation 610 $aco-delivery systems 610 $aCO2 610 $acochlear hair cell 610 $acomposite 610 $aconducting polymer 610 $acontrolled drug delivery 610 $acontrolled polymerization 610 $acore-shell nanoparticles 610 $acore-shell structure 610 $acore/shell particles 610 $adegradability 610 $adiabetes therapy 610 $adiverse therapeutic areas 610 $adrug delivery 610 $adrug release 610 $aelectronics 610 $aelectrorheological 610 $aemulsion polymerization 610 $aendophytic exopolysaccharide 610 $afine-tuning 610 $afluoropolymers 610 $afunctional polymers for diagnosis 610 $afunctional polymers used in food science 610 $agel 610 $agentamicin 610 $aglucose sensitivity 610 $aglutaraldehyde 610 $aGlycopolymer 610 $ahearing loss 610 $aheterogeneous catalysis 610 $ahydrogels 610 $ahydrolyzable polyurea 610 $ahydrophobic drug delivery 610 $ahydrophobicity 610 $aimaging 610 $amelt-shear organization 610 $amicelle 610 $amolecular sieve 610 $amulti-drug resistance 610 $ananomedicine 610 $anucleic acid delivery 610 $apaclitaxel 610 $aparticle processing 610 $aperfluoroaryl azides 610 $apH responsive 610 $apH responsive polymers 610 $aphase change 610 $aphase transition 610 $aphenylboronic acid 610 $apoly(methacrylamide)s 610 $apolyamino acids 610 $apolyaniline 610 $apolycaprolactone-diol 610 $apolyether imidazole ionic liquid 610 $apolymer-based medical devices 610 $apolymer-based supramolecular chemistry 610 $apolymeric nanoparticles 610 $apolymerization dispersion method 610 $apolymerization or post-polymerization modification methods 610 $apolymers for fabrication 610 $apolymers for industrial catalysis 610 $apolymers for information storage 610 $apolymers for sensing 610 $apolymers for water or effluent treatment 610 $apolymers with biological activity (e.g. 610 $apolyurethanes 610 $apolyvinyl alcohol 610 $apost-polymerization functionalization 610 $arare earth upconversion nanoparticles 610 $arenewable polymer materials used for agriculture 610 $areversible polymerization 610 $asaffron 610 $aself-healing polymers 610 $aseparation 610 $ashape memory polymers 610 $asmart fluid 610 $asolvent responsiveness 610 $aStaudinger reaction 610 $astimuli-responsive polymers 610 $astimuli-sensitive polymers 610 $asustainable polymers 610 $asynergistic effect 610 $atargeted drug delivery 610 $atumor imaging 610 $aversatile platform 610 $aviscoelastic 610 $aVitamin E 615 7$aChemistry 700 $aLi$b Mingqiang$4auth$01323391 702 $aDing$b Jianxun$4auth 702 $aLi$b Yang$4auth 906 $aBOOK 912 $a9910367743603321 996 $aSmart and Functional Polymers$93035488 997 $aUNINA