LEADER 00938nam0-2200337---450- 001 990009600580403321 005 20120903091928.0 010 $a978-0-415-46205-1 035 $a000960058 035 $aFED01000960058 035 $a(Aleph)000960058FED01 035 $a000960058 100 $a20120703d2010----km-y0itay50------ba 101 0 $aeng 102 $aGB 105 $ay-------001yy 200 1 $aJews and judaism in world history$fHoward N. Lupovitch 210 $aLondon ; New York$cRoutledge$d2010 215 $a258 p.$d24 cm 225 1 $aThemes in world history 610 0 $aEbrei$aStoria 610 0 $aGiudaismo$aStoria 676 $a909.04924$v22$zita 700 1$aLupovitch,$bHoward N.$0517117 801 0$aIT$bUNINA$gREICAT$2UNIMARC 901 $aBK 912 $a990009600580403321 952 $aXIV L 46$b46048$fFSPBC 959 $aFSPBC 996 $aJews and judaism in world history$9849933 997 $aUNINA LEADER 02557nam 2200625 450 001 9910459528003321 005 20200520144314.0 010 $a1-282-82172-5 010 $a9786612821721 010 $a1-4411-2537-X 035 $a(CKB)2670000000046698 035 $a(EBL)592472 035 $a(OCoLC)670412164 035 $a(SSID)ssj0000416021 035 $a(PQKBManifestationID)12174474 035 $a(PQKBTitleCode)TC0000416021 035 $a(PQKBWorkID)10420735 035 $a(PQKB)11692331 035 $a(MiAaPQ)EBC3002986 035 $a(MiAaPQ)EBC5309543 035 $a(MiAaPQ)EBC592472 035 $a(Au-PeEL)EBL5309543 035 $a(CaPaEBR)ebr11518511 035 $a(OCoLC)1027203654 035 $a(EXLCZ)992670000000046698 100 $a20180315h20102010 uy 0 101 0 $aeng 135 $aur|n|---||||| 181 $ctxt 182 $cc 183 $acr 200 10$aDishonest to God /$fMary Warnock 210 1$aLondon, [England] ;$aNew York, New York :$cContinuum,$d2010. 210 4$d©2010 215 $a1 online resource (179 p.) 300 $aIncludes index. 311 $a1-4411-4542-7 311 $a1-4411-2712-7 320 $aIncludes bibliographical references and index. 327 $aContents; Introduction; 1. Life, Death and Authority: A Legislative History - Part One; 2. Life, Death and Authority: A Legislative History - Part Two; 3. The Law and Moral Values; 4. Morality and Religion: Where Morality Comes From; 5. The Spirit of Man; Conclusion; Index 330 $aHere is a pugnacious book by a philosopher who often hits the headlines. The book reflects on the nature of religion and how it relates or ought to relate to the rest of life. Many people today are totally indifferent to religion but religion is far from dead. Indeed religions are intensely defended and aggressively pursued. Religion is a cause for dissension and death. This is beyond dispute. Mary Warnock is concerned with Christianity. She argues that to value religion as the essential foundation of morality is a profound and probably dangerous mistake. Warnock's overriding purpose is t 606 $aReligion and ethics 606 $aConduct of life 608 $aElectronic books. 615 0$aReligion and ethics. 615 0$aConduct of life. 676 $a201/.72 700 $aWarnock$b Mary$0283548 801 0$bMiAaPQ 801 1$bMiAaPQ 801 2$bMiAaPQ 906 $aBOOK 912 $a9910459528003321 996 $aDishonest to God$92209426 997 $aUNINA LEADER 10676nam 2200493 450 001 9910555149203321 005 20220927183230.0 010 $a3-527-82227-5 010 $a3-527-82228-3 010 $a3-527-82226-7 035 $a(CKB)4100000011248752 035 $a(MiAaPQ)EBC6531450 035 $a(Au-PeEL)EBL6531450 035 $a(OCoLC)1244620761 035 $a(EXLCZ)994100000011248752 100 $a20211016d2021 fy 0 101 0 $aeng 135 $aurcnu|||||||| 181 $ctxt$2rdacontent 182 $cc$2rdamedia 183 $acr$2rdacarrier 200 04$aThe global cable industry $ematerials, markets, products /$feditor, Gu?nter Beyer 210 1$aWeinheim, Germany :$cWiley-VCH,$d[2021] 210 4$d©2021 215 $a1 online resource (xxv, 399 pages) 311 1 $a3-527-34627-9 327 $aCover -- Title Page -- Copyright -- Contents -- About the Editor -- Chapter 1 Overview of the Global Cable Industry - Markets and Materials -- 1.1 Demand for Polymeric Material -- 1.1.1 Main Companies Profile -- 1.1.1.1 Prysmian -- 1.1.1.2 Nexans -- 1.1.1.3 Southwire -- 1.1.1.4 Sumitomo Electric Industries -- 1.1.1.5 Furukawa Electric Co., Ltd. -- 1.1.1.6 LS Cable & -- System -- 1.1.1.7 Leoni AG -- 1.1.1.8 Hengtong Group -- 1.1.2 Global Demand -- 1.2 Asia and Australasia -- 1.2.1 Demand for Cable -- 1.2.2 Demand for Polymeric Material -- 1.3 Europe -- 1.3.1 Demand for Cables -- 1.3.2 Demand for Polymeric Materials -- 1.4 The Middle East and Africa -- 1.4.1 Demand for Cables -- 1.4.2 Demand for Polymeric Materials -- 1.5 North America -- 1.5.1 Demand for Cables -- 1.5.2 Demand for Polymeric Materials -- 1.6 South and Central America -- 1.6.1 Demand for Cables -- 1.6.2 Demand for Polymeric Materials -- Chapter 2 Thermoplastics for Cables -- 2.1 Introduction -- 2.2 Polyolefin Materials -- 2.2.1 Polyethylene -- 2.2.1.1 Manufacturing Processes -- 2.2.1.2 Cable Applications -- 2.2.2 Polypropylene (PP) -- 2.2.2.1 Manufacturing Processes -- 2.2.2.2 Applications -- 2.3 Chlorinated Polymers -- 2.3.1 Polyvinylchloride (PVC) -- 2.3.2 Chlorinated Polyethylene (CPE) -- 2.4 Fluoropolymers -- 2.4.1 Fluoro?Ethylene Propylene polymer -- 2.4.2 Polytetrafluoroethylene (PTFE), Ethylene Tetrafluoroethylene (ETFE), and Perfluoroalkoxy Polymer (PFA). -- 2.4.3 Ethylene Chlorotrifluoroethylene (ECTFE) -- 2.4.4 Polyvinyldifluoride (PVDF) -- 2.5 Polyamide (PA) -- 2.6 Polyesters -- 2.6.1 Polybutylphtherephtalate (PBT) -- 2.6.2 Polyester Elastomers -- 2.7 Thermoplastic Polyurethane -- References -- Chapter 3 Elastomers for Cables -- 3.1 Introduction -- 3.2 Rubber Compounds -- 3.2.1 Rubber -- 3.2.2 Fillers -- 3.2.3 Plasticizer -- 3.2.4 Stabilizers. 327 $a3.2.5 Classical Cross?linking Systems -- 3.2.5.1 Cross?linking with Sulfur Systems -- 3.2.5.2 Cross?linking with Peroxide Systems -- 3.2.5.3 Moving Die Rheometers (MDRs) -- 3.2.6 Other Cross?linking Systems -- 3.2.6.1 Cross?linking by Irradiation -- 3.2.6.2 Cross?linking with Silanes -- 3.3 Compounding -- 3.4 Extrusion -- 3.5 Cross?linking/Vulcanization -- 3.5.1 Vulcanization in Saturated Hot Water Steam -- 3.5.2 Vulcanization in Liquid Salt Mixtures under Pressure -- 3.5.3 Electron Beam Cross?linking -- References -- Chapter 4 Extrusion of Cables -- 4.1 Historical Introduction to Cable Extrusion -- 4.2 Extruder in Cable Lines -- 4.2.1 Description of the Single Screw Extruder -- 4.2.1.1 Different Functional Screw Zones -- 4.2.1.2 Description of a Screw Geometry -- 4.2.2 Feeding Zone of the Extrusion Screw -- 4.2.2.1 Friction?Based Feeding Mechanism -- 4.2.2.2 Simple Modeling of the Feeding Zone -- 4.2.2.3 Improvement of the Feeding Zone: Use of Helical Grooved Barrel -- 4.2.3 Thin Film Plastification -- 4.2.3.1 Melting on the Backside of Flight -- 4.2.3.2 Initiation of Liquid Film -- 4.2.3.3 Melt Flow Rate in the Liquid Film -- 4.2.3.4 Influence of Different Parameters on Melting Length -- 4.2.3.5 Thin Film Melting with the Help of a Barrier Zone -- 4.2.3.6 Barrier Zone, Its Advantages, and Its Drawbacks -- 4.2.4 Metering Zone -- 4.2.4.1 Representation of the Metering Zone -- 4.2.4.2 1D Analysis -- 4.2.5 Example of Results for 1D Model Including the Three Zones of the Screw -- 4.2.5.1 Influence of Friction Coefficients on the Screw Characteristics -- 4.2.5.2 Interaction Between Compression and Friction in the Feeding Zone -- 4.3 Accessories for Extruders -- 4.3.1 Mixing Zones -- 4.3.1.1 Observed Defaults -- 4.3.1.2 Devices Selection Criteria -- 4.3.1.3 Example of Results for Finathene HDPE -- 4.3.2 Melt Filtration Systems -- 4.3.3 Melt Gear Pumps. 327 $a4.4 Extrusion Heads or Dies -- 4.4.1 Description of the Extrusion Head -- 4.4.1.1 Extrusion Head Function -- 4.4.2 Distributors -- 4.4.2.1 Head with Coat Hanger Type Distribution Channels -- 4.4.2.2 Distribution Function Through Flattened Distribution Channels -- 4.4.2.3 Distributor with Helical Channels -- 4.4.3 Diameter Adaptation Function (Tooling) -- 4.4.3.1 Tube Tooling, DDR -- 4.4.3.2 Tube Tooling, DRB -- 4.4.4 Relation Between Pressure and Average Temperature Increase in an Extrusion Head -- 4.5 Cooling -- 4.5.1 Cooling Length Analytical Calculation for Fine Wires -- 4.5.2 Cooling Length Finite Difference Calculation for a Wire of Radius > -- 1?mm with Copper Core and PE Insulation -- 4.6 Quality -- 4.6.1 The Quality Parameter and Its Measurement -- 4.6.1.1 Diameter and Product Circularity Measurement -- 4.6.1.2 Concentricity Measurement -- 4.6.1.3 Insulation Defects Measurements (Cable or Wire) -- 4.6.1.4 Capacity Measurement (Telecommunication Wire) -- 4.6.1.5 Sheathing Wall Thickness Measurement -- 4.6.1.6 Periodicity of Measurement Analysis -- 4.6.2 Common Production Defects, Causes, and Remedies -- References -- Chapter 5 Foam Extrusion -- 5.1 Motivation -- 5.2 Physical Basics -- 5.3 Selection of Polymer -- 5.4 Selection of Blowing Agents -- 5.5 Extrusion Equipment -- 5.5.1 Extruder and Screw -- 5.5.2 Dosing Station -- 5.5.3 Gas Injection -- 5.5.4 Melt Transport from Screw to Die -- 5.5.5 Cooling Trough -- 5.5.6 Measurement Devices -- 5.6 Processing -- 5.6.1 Extrusion and Die Setup -- 5.6.2 Process Control Modes -- 5.6.3 PBA Handling -- 5.6.4 Maximum Void and Bubble Size -- 5.6.5 Inline Analysis by FFT -- Glossary -- References -- Chapter 6 Flame Retardancy of Cables -- 6.1 Introduction -- 6.2 Flame Propagation Tests for Wires and Cables -- 6.3 Smoke, Corrosivity, and Toxicity Tests for Wires and Cables. 327 $a6.4 Circuit Integrity and Functional Integrity for Security Cables -- 6.5 Laboratory Tests for the Flammability of Wire and Cable Materials -- 6.6 Polymers for Flame?Retardant Wires and Cables -- 6.7 Flame Retardants for Flame?Retardant Wires and Cables -- 6.8 Flame?Retardant PVC -- 6.8.1 Flame Retardants for PVC and Flame?Retardant PVC Cable Formulations -- 6.8.1.1 Phthalate?Based Plasticizers and Other Plasticizers -- 6.8.1.2 Antimony Trioxide -- 6.8.1.3 Brominated Phthalate Plasticizers -- 6.8.1.4 Chlorinated Paraffins -- 6.8.1.5 Aluminum Hydroxide (ATH) and Magnesium Hydroxide (MDH) -- 6.8.1.6 Zinc Borate -- 6.8.1.7 Phosphate Plasticizers -- 6.8.1.8 Smoke Suppressants -- 6.8.1.9 Nanocomposites -- 6.9 Flame?Retardant Polyolefins -- 6.9.1 Flame Retardants for Polyolefins and HFFR Cable Formulations -- 6.9.1.1 Aluminum Hydroxide (ATH) and Magnesium Hydroxide (MDH) -- 6.9.1.2 Zinc Borate and Polysiloxanes -- 6.9.1.3 Nanocomposites -- 6.9.1.4 Ceramifiable Compounds -- 6.10 CPR (Construction Products Regulation) -- References -- Chapter 7 CPR Testing of Cables -- 7.1 Introduction -- 7.2 FIPEC Program -- 7.2.1 FIPEC Approach -- 7.2.1.1 Real?Scale Scenario -- 7.2.1.2 Cable Selection -- 7.2.1.3 Real?Scale Fire Tests -- 7.2.1.4 Full?Scale Fire Test -- 7.2.1.5 Capability Study -- 7.2.1.6 Correlation Between Real? and Large?Scale Test -- 7.3 Construction Product Regulation (CPR) Framework -- 7.3.1 EN 13 501?6 -- 7.3.2 EN ISO 1716 -- 7.3.3 EN 60332?1?2 -- 7.3.4 EN 50399 -- 7.3.5 EN ISO 61034?1 (Apparatus) and ?2 (Test Procedure) -- 7.3.6 EN 60754?2 -- References -- 7.A Measure of the Heat Release Rate (HRR) by Oxygen Consumption Technique -- 7.A.1 Measure of the Heat Release Rate (HRR) by Oxygen Consumption Technique -- 7.A.1.1 Burning of Methane -- 7.A.1.2 Determination of theMass Flow Rate (m? a) -- 7.A.1.3 Smoke Opacity. 327 $a7.A.1.4 Calculation of FIGRA and SMOGRA Index -- Chapter 8 Crosslinking Technologies -- 8.1 Introduction -- 8.2 Crosslinking, Curing, Vulcanizing -- 8.3 Crosslinking Processes -- 8.4 The Silane?Crosslinking Process -- 8.4.1 The Sioplas® Process -- 8.4.2 The Monosil® Process -- 8.4.3 Silane Copolymers -- 8.4.4 Reactivity of the Silane Crosslinking Process -- 8.4.5 Advantages and Disadvantages of Silane Crosslinking -- 8.5 The Peroxide Crosslinking Process (CV Curing) -- 8.5.1 Polymer Selection for Peroxide Crosslinking -- 8.5.2 Advantages and Disadvantages of Continuous Vulcanization -- 8.6 e?Beam Crosslinking -- 8.6.1 Awareness of e?Beams in Our Daily Life -- 8.6.2 The Principle of an e?Beam -- 8.6.3 Creating a High Voltage e?Beam -- 8.6.4 Scan Horn and Beam Window -- 8.6.5 Under?Beam Handling System (UBHS) -- 8.6.6 Control System -- 8.6.7 Safety -- 8.6.7.1 Radiation and Radioactivity -- 8.6.7.2 Bremsstrahlung or X?rays -- 8.6.7.3 Shielding and Radioactivity -- 8.6.7.4 Other Safety Systems -- 8.6.7.5 Ozone -- 8.6.7.6 IAEA -- 8.6.8 Most Important Parameters During e?Beam Crosslinking -- 8.6.8.1 Voltage -- 8.6.8.2 Amperage -- 8.6.8.3 Radiation Dose -- 8.6.9 Capacity of an e?Beam -- 8.6.9.1 Functional Capacity -- 8.6.9.2 Efficiency -- 8.6.9.3 Dose -- 8.6.10 Temperature Rise -- 8.6.11 Compound Design -- 8.6.11.1 Polymers -- 8.6.12 Costs Indications of e?Beam Crosslinking -- 8.6.12.1 Annual Costs -- 8.6.12.2 Annual Throughput and Costs per Kilograms -- 8.6.13 Advantages and Disadvantages of e?Beam Crosslinking -- 8.7 Conclusions -- Further Reading -- Silane Crosslinking -- Peroxide Crosslinking -- Electron?Beam Crosslinking -- Hot?Set?Elongation -- Chapter 9 Nuclear Power Station Cables -- 9.1 Development of Nuclear Power in the World -- 9.1.1 Development Stage of Nuclear Power in the World. 327 $a9.1.2 Current Status of Nuclear Power Development All Over the World. 606 $aElectric cables 608 $aElectronic books. 615 0$aElectric cables. 676 $a621.31934 702 $aBeyer$b Gu?nter$f1952- 801 0$bMiAaPQ 801 1$bMiAaPQ 801 2$bMiAaPQ 906 $aBOOK 912 $a9910555149203321 996 $aThe global cable industry$92816291 997 $aUNINA