LEADER 00965nam0-22003251i-450 001 990000482860403321 005 20180426152523.0 035 $a000048286 035 $aFED01000048286 035 $a(Aleph)000048286FED01 100 $a20020821d1973----km-y0itay50------ba 101 1 $aita$ceng 105 $aa-------001yy 200 1 $aManutenibilita'$eun fattore fondamentale dell'efficienza di un sistema$fA. S. Goldman, T. B. Slattery 210 $aMilano$cISEDI$dc1973 215 $a313 p.$cill.$d23 cm 225 1 $aCollana scientifica$iSerie di scienze dei sistemi$v3 610 0 $aManutenibilità 676 $a620.00'45 700 1$aGoldman,$bA. S.$0491642 701 1$aSlattery,$bT. B.$0491177 801 0$aIT$bUNINA$gRICA$2UNIMARC 901 $aBK 912 $a990000482860403321 952 $a10 E II 321$b10584$fDINEL 952 $aD2/16$b4632$fDINTR 959 $aDINEL 959 $aDINTR 996 $aManutenibilita$9332334 997 $aUNINA LEADER 04060 am 2200577 n 450 001 9910342955203321 005 20191002 010 $a2-85653-869-X 024 7 $a10.4000/books.mnhn.3912 035 $a(CKB)4100000009609480 035 $a(FrMaCLE)OB-mnhn-3912 035 $a(oapen)https://directory.doabooks.org/handle/20.500.12854/61907 035 $a(PPN)240758919 035 $a(EXLCZ)994100000009609480 100 $a20191024j|||||||| ||| 0 101 0 $afre 135 $auu||||||m|||| 181 $ctxt$2rdacontent 182 $cc$2rdamedia 183 $acr$2rdacarrier 200 13$aLa Vénus hottentote $eEntre Barnum et Muséum /$fClaude Blanckaert 210 $aParis $cPublications scientifiques du Muséum$d2019 215 $a1 online resource (478 p.) 311 $a2-85653-701-4 330 $aOriginaire du cap de Bonne-Espérance, la Vénus hottentote, de son vrai nom Sarah Baartman, fut présentée au public comme «?le plus merveilleux phénomène de la nature?» dès son arrivée à Londres en 1810. Affublée d?un fessier hors de proportion (stéatopygie), elle fut ainsi chosifiée comme « monstre » de son vivant. À partir de septembre 1814, elle défraya la chronique parisienne avant de mourir dans les derniers jours de l?année suivante. Son corps, entièrement moulé puis disséqué au Jardin des plantes, allait un temps rejoindre les collections d?anatomie comparée du Muséum national d?Histoire naturelle. Prise pour type de race « sauvage », la Vénus hottentote n?en perdit pas tout prestige. Ses représentations s?avérant toujours contemporaines de ses usages scientifiques et sociaux, elle parut indistinctement un sujet d?enquête toujours révisable au crible des connaissances et la victime idéale, sollicitée, d?un exorcisme de masse. Au centenaire de sa mort, elle restait une célébrité. Dans le périmètre du Muséum, elle passa des galeries d?anatomie à celles d?anthropologie avant que son moulage, devenu sculpture ethnographique, en vint à exemplifier dans les vitrines du Musée de l?Homme la survivance des « Vénus » stéatopyges de la lointaine préhistoire. Les différents chapitres de ce livre offrent des clés de lecture des imaginaires collectifs, tant savants que populaires, sans nier les zones d?ombre qui entourent la biographie de Sarah Baartman. Ils mettent en évidence les «?métamorphoses?» complexes de la Vénus hottentote au fil de ses appropriations naturalistes, morales et juridiques, depuis les premiers témoignages des professeurs du Muséum qui l?examinèrent en mars 1815 (Georges Cuvier, Henri de Blainville) jusqu?aux débats du Sénat qui préludèrent à la restitution puis à la cérémonie nationale d?inhumation de ses restes, en août 2002, en présence du président d?Afrique du Sud Thabo Mbeki. 606 $aWomen, Khoikhoi$zEurope$xHistory$y19th century$vCongresses 606 $aWomen, Khoikhoi$vBiography$vCongresses 606 $aWomen, Khoikhoi$zEurope$xSocial conditions$vCongresses 606 $aMuseum exhibits$xMoral and ethical aspects$zEurope$xHistory$vCongresses 606 $aRacism in museum exhibits$zEurope$xHistory$y19th century$vCongresses 610 $aethnologie 610 $asciences de l'homme 610 $ahistoire des sciences 615 0$aWomen, Khoikhoi$xHistory 615 0$aWomen, Khoikhoi 615 0$aWomen, Khoikhoi$xSocial conditions 615 0$aMuseum exhibits$xMoral and ethical 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/$fedited by Lin Chen 205 $a1st ed. 2024. 210 1$aCham :$cSpringer Nature Switzerland :$cImprint: Springer,$d2024. 215 $a1 online resource (272 pages) 225 1 $aGreen Energy and Technology,$x1865-3537 311 08$a9783031679865 311 08$a3031679865 327 $aPart 1 Solar Photovoltaic Power Generation and Solar Energy Applications -- Chapter 1 Installations of Solar PV to Prevent CO2 Emissions for Schools in the Hampshire -- Chapter 2 Energy Evaluation of Photovoltaic Integration in Student Building with Different PV Technologies -- Chapter 3 Technical-economic Modeling of a microgrid incorporating renewable photovoltaic energy -- Chapter 4 Indoor Solar Thermal Cook Stove Design -- Chapter 5 Solar energy performance prediction with regression algorithm in machine learning based on weather conditions: A case study -- Part 2 Renewable Energy Technology and Energy Efficiency Optimization -- Chapter 6 Technical-economic evaluation of a stand-alone hybrid renewable energy system with different dispatch strategies -- Chapter 7 Recent Tools and their Roles towards High-share Renewable Energy in the Climate-Changing World -- Chapter 8 Assessment of wind and wave climate dynamics in the Mediterranean and Black Seas for renewable energy potential analysis -- Chapter 9 Evaluation of the Performance of an Activated Carbon?s family for Biogas Upgrading using the Adsorption Performance Indicator -- Chapter 10 Estimation of Power Consumption in Screw Gas Compressor installed on Natural Gas Power Plant -- Chapter 11 An Approach for Voltage Drop Improvement in Distribution Line using High Voltage Capacitor Bank -- Chapter 12 Numerical Analysis of the Flow Phenomena inside the Vortex Tube with Different Turbulence Models -- Chapter 13 Technical-economic implementation of a control and supervision system in air conditioning systems through BACnet for energy efficiency in buildings -- Chapter 14 State of Decision Making in the Baltic States: Nuclear Energy Past and for the Future -- Chapter 15 The Transition to 100% Renewable Energy Versus the Global Temperature Scenarios: A Perspective Analysis -- Part 3 Energy Materials and Energy Storage Technology -- Chapter 16 Research on the Performance of Positive Electrode Modified with Fluorinated Carbon Based on Silver Coating -- Chapter 17 Research on the Positive Electrode Performance of Lithium Battery Based on the Mixture of Carbon Fluoride and the Manganese Dioxide -- Chapter 18 Effects of C-rate on the thermal behavior of commercial lithium-ion pouch cells with different aging histories for a successful second-life transition -- Chapter 19 Research on preparation process of graphene oxide of negative electrode materials -- Chapter 20 Energy storage capacity of microencapsulated phase change materials -- Chapter 21 Energy Storage in the Smart Grid: a Multi-Agent Deep Reinforcement Learning Approach -- Part 4 Carbon Capture and Sustainable Development -- Chapter 22 Exploration on the Key Factors to the Successful Implementation of Carbon Capture and Storage (CCS) Projects Based on a CCS Project Inventory -- Chapter 23 Energy-Food Commodity Prices Movement and Equation in Kyoto (2006) Perspective: Factor Analysis and Non-Linear Framework -- Chapter 24 Sustainable Construction Materials from Industrial By-products -- Chapter 25 Towards Sustainable CO2 Reduction and Brine Utilization: Investigating Alkaline-Enhanced Solvay Processes. 330 $aThis book offers a comprehensive exploration of the latest novel and fundamental advances in clean energy resources and systems, energy economics, and energy policy. Designed to help steer the course toward a cleaner, more sustainable energy landscape, it presents case studies on clean energy technology, explores sustainable methods for increasing energy efficiency, and examines current concepts and solutions to global energy storage and energy-saving issues. Topics covered include: Clean coal and fossil fuels; Green power production and cogeneration; CO2 capture, storage, and utilization; Biomass, wind, and nuclear energy engineering; Hydrogen and fuel cell technology. Trends in Clean Energy Research is an essential guide to current research for scientists, practitioners, engineers, students, and researchers. Presents cutting-edge research on clean energy technologies and systems; Examines solutions to global energy storage issues; Includes case studies. Chapter ?State of Decision-Making in the Baltic States: Nuclear Energy Past and for the Future? is available open access under a Creative Commons Attribution 4.0 International License via link.springer.com. 410 0$aGreen Energy and Technology,$x1865-3537 606 $aRenewable energy sources 606 $aEnergy policy 606 $aEnergy policy 606 $aWater-power 606 $aEnergy storage 606 $aNuclear engineering 606 $aCogeneration of electric power and heat 606 $aFossil fuels 606 $aRenewable Energy 606 $aEnergy Policy, Economics and Management 606 $aHydroenergy 606 $aMechanical and Thermal Energy Storage 606 $aNuclear Energy 606 $aFossil Fuel 615 0$aRenewable energy sources. 615 0$aEnergy policy. 615 0$aEnergy policy. 615 0$aWater-power. 615 0$aEnergy storage. 615 0$aNuclear engineering. 615 0$aCogeneration of electric power and heat. 615 0$aFossil fuels. 615 14$aRenewable Energy. 615 24$aEnergy Policy, Economics and Management. 615 24$aHydroenergy. 615 24$aMechanical and Thermal Energy Storage. 615 24$aNuclear Energy. 615 24$aFossil Fuel. 676 $a621.042 700 $aChen$b Lin$0374086 801 0$bMiAaPQ 801 1$bMiAaPQ 801 2$bMiAaPQ 906 $aBOOK 912 $a9910888601303321 996 $aTrends in Clean Energy Research$94241733 997 $aUNINA