LEADER 05402nam 22006494a 450 001 9910143403403321 005 20170809162027.0 010 $a1-280-31135-5 010 $a9786610311354 010 $a0-470-23188-2 010 $a0-471-75203-7 010 $a0-471-75202-9 035 $a(CKB)1000000000355094 035 $a(EBL)244305 035 $a(OCoLC)71516847 035 $a(SSID)ssj0000103105 035 $a(PQKBManifestationID)11108591 035 $a(PQKBTitleCode)TC0000103105 035 $a(PQKBWorkID)10061345 035 $a(PQKB)11167560 035 $a(MiAaPQ)EBC244305 035 $a(EXLCZ)991000000000355094 100 $a20050408d2006 uy 0 101 0 $aeng 135 $aur|n|---||||| 181 $ctxt 182 $cc 183 $acr 200 10$aAnalytical troubleshooting of process machinery and pressure vessels$b[electronic resource] $eincluding real-world case studies /$fAnthony Sofronas 210 $aHoboken, N.J. $cJohn Wiley & Sons$dc2006 215 $a1 online resource (374 p.) 300 $aDescription based upon print version of record. 311 $a0-471-73211-7 320 $aIncludes bibliographical references (p. 345-347) and index. 327 $aANALYTICAL TROUBLESHOOTING OF PROCESS MACHINERY AND PRESSURE VESSELS; CONTENTS; Preface; 1 Introduction; 2 Strength of Materials; 2.1 Load Calculations; 2.2 Stress Calculations; 2.2.1 Axial Stress; 2.2.2 Shear Stress; 2.2.3 Bending Stress; 2.2.4 Torsional Stress; 2.2.5 Combined Stresses; 2.2.6 Thermal Stresses; 2.2.7 Transient Temperatures and Stresses; 2.2.8 High-Temperature Creep; 2.2.9 Shell Stresses; 2.3 Piping Thermal Forces, Moments, and Frequencies; 2.3.1 Piping Failures; 2.4 Allowable and Design Stresses; 2.5 Fatigue Due to Cyclic Loading; 2.6 Elongation and Deflection Calculations 327 $a2.7 Factor of Safety2.8 Case History: Agitator Steady Bearing Loading; 2.8.1 Additional Agitator Guidelines (Single Impeller); 2.9 Case History: Extruder Shaft Failure; 2.10 Dynamic Loading; 2.10.1 Centrifugal Force; 2.10.2 Inertias and WR(2); 2.10.3 Energy Relationships; 2.11 Case History: Centrifuge Bearing Failures; 2.12 Case History: Bird Impact Force on a Windscreen; 2.13 Case History: Torsional Impact on a Propeller; 2.14 Case History: Startup Torque on a Motor Coupling; 2.15 Case History: Friction Clamping Due to Bolting; 2.16 Case History: Failure of a Connecting Rod in a Race Car 327 $a2.17 Bolting2.17.1 Holding Capacity; 2.17.2 Limiting Torque; 2.17.3 Bolt Elongation and Relaxation; 2.17.4 Torquing Methods; 2.17.5 Fatigue of Bolts; 2.17.6 Stripping Strength of Threads; 2.17.7 Case History: Power Head Gasket Leak; 2.18 Ball and Roller Bearing Life Estimates; 2.18.1 Case History: Bearing Life of a Shaft Support; 2.18.2 Coupling Offset and Bearing Life; 2.19 Hydrodynamic Bearings; 2.19.1 Shell and Pad Failures; 2.20 Gears; 2.20.1 Gear Acceptability Calculations; 2.20.2 Case History: Uprate Acceptability of a Gear Unit; 2.21 Interference Fits 327 $a2.21.1 Keyless Hydraulically Fitted Hubs2.21.2 Case History: Taper Fit Holding Ability; 2.21.3 Case History: Flying Hydraulically Fitted Hub; 2.22 Strength of Welds; 2.23 Fatigue of Welds; 2.24 Repair of Machinery; 2.24.1 Shafts; 2.24.2 Housings and Cases; 2.24.3 Gearboxes; 2.24.4 Sleeve Bearings and Bushing Clearances; 2.24.5 Alignments; 2.24.6 Acceptable Coupling Offset and Angular Misalignment; 2.24.7 Vibration Measurements; 2.25 Interpreting Mechanical Failures; 2.25.1 Failures with Axial, Bending, and Torsional Loading; 2.25.2 Gear Teeth Failures; 2.25.3 Spring Failures 327 $a2.25.4 Bolt Failures2.25.5 Bearing Failures; 2.25.6 Reading a Bearing; 2.25.7 Large Gearbox Keyway and Shaft Failures; 2.26 Case History: Sizing a Bushing Running Clearance; 2.27 Case History: Galling of a Shaft in a Bushing; 2.28 Case History: Remaining Fatigue Life with Cyclic Stresses; 2.29 Procedure for Evaluating Gasketed Joints; 2.30 Gaskets in High-Temperature Service; 2.31 O-Ring Evaluation; 2.32 Case History: Gasket That Won't Pass a Hydrotest; 2.33 Case History: Heat Exchanger Leak Due to Temperature; 2.34 Equipment Wear; 2.35 Case History: Excessive Wear of a Ball Valve 327 $a3 Vibration Analysis 330 $aA highly practical troubleshooting tool for today's complex processing industryEvolving industrial technology-driven by the need to increase safety while reducing production losses-along with environmental factors and legal concerns has resulted in an increased emphasis on sound troubleshooting techniques and documentation. Analytical Troubleshooting of Process Machinery and Pressure Vessels provides both students and engineering professionals with the tools necessary for understanding and solving equipment problems in today's complex processing environment.Drawing on forty yea 606 $aMachinery$xMaintenance and repair 606 $aPlant maintenance 608 $aElectronic books. 615 0$aMachinery$xMaintenance and repair. 615 0$aPlant maintenance. 676 $a621.8/16 676 $a621.816 676 $a660.2804 700 $aSofronas$b Anthony$0902353 801 0$bMiAaPQ 801 1$bMiAaPQ 801 2$bMiAaPQ 906 $aBOOK 912 $a9910143403403321 996 $aAnalytical troubleshooting of process machinery and pressure vessels$92274149 997 $aUNINA LEADER 02619nam 2200589 a 450 001 9910141496203321 005 20170815095324.0 010 $a1-118-38718-X 010 $a1-118-56318-2 010 $a1-118-56328-X 035 $a(CKB)2670000000327629 035 $a(EBL)1120633 035 $a(OCoLC)827207683 035 $a(SSID)ssj0000831553 035 $a(PQKBManifestationID)11437146 035 $a(PQKBTitleCode)TC0000831553 035 $a(PQKBWorkID)10880696 035 $a(PQKB)11338361 035 $a(OCoLC)827947126 035 $a(MiAaPQ)EBC1120633 035 $a(EXLCZ)992670000000327629 100 $a20120119d2012 uy 0 101 0 $aeng 135 $aur|n|---||||| 181 $ctxt 182 $cc 183 $acr 200 10$aFracture mechanics and crack growth$b[electronic resource] /$fNaman Recho 210 $aLondon $cISTE Ltd. ;$aHoboken, N.J. $cJohn Wiley & Sons$dc2012 215 $a1 online resource (505 p.) 225 1 $aISTE 300 $aDescription based upon print version of record. 311 $a1-84821-306-9 320 $aIncludes bibliographical references and index. 327 $aIntroduction -- Modeling the mechanical fields at the crack tip -- Review of the continuum mechanics and the behavior laws -- Overview of fracture mechanics -- Fracture mechanics -- Crack propagation -- Prediction of the fracture by cracking of elements of metallic structures subjected to fatigue -- Possibilities offered by the laws of crack propagation in the study of fatigue life. 330 $a This book presents recent advances related to the following two topics:- how mechanical fields close to material or geometrical singularities such as cracks can be determined;- how failure criteria can be established according to the singularity degrees related to these discontinuities.Concerning the determination of mechanical fields close to a crack tip, the first part of the book presents most of the traditional methods in order to classify them into two major categories. The first is based on the stress field, such as the Airy function, and the second resolves the prob 410 0$aISTE 606 $aFracture mechanics 606 $aMaterials$xFatigue 608 $aElectronic books. 615 0$aFracture mechanics. 615 0$aMaterials$xFatigue. 676 $a620.1/126 676 $a620.1126 700 $aRecho$b Naman$0855341 801 0$bMiAaPQ 801 1$bMiAaPQ 801 2$bMiAaPQ 906 $aBOOK 912 $a9910141496203321 996 $aFracture mechanics and crack growth$91909546 997 $aUNINA LEADER 05618nam 2200709Ia 450 001 9910784550103321 005 20230120004844.0 010 $a1-281-05582-4 010 $a9786611055820 010 $a0-08-048981-8 035 $a(CKB)1000000000365190 035 $a(EBL)294423 035 $a(OCoLC)476058534 035 $a(SSID)ssj0000261608 035 $a(PQKBManifestationID)11207494 035 $a(PQKBTitleCode)TC0000261608 035 $a(PQKBWorkID)10268835 035 $a(PQKB)10701652 035 $a(MiAaPQ)EBC294423 035 $a(Au-PeEL)EBL294423 035 $a(CaPaEBR)ebr10226588 035 $a(CaONFJC)MIL105582 035 $a(EXLCZ)991000000000365190 100 $a20070124d2007 uy 0 101 0 $aeng 135 $aur|n|---||||| 181 $ctxt 182 $cc 183 $acr 200 00$aTranslation of addictions science into practice$b[electronic resource] /$fedited by Peter M. Miller and David J. Kavanagh 205 $a1st ed. 210 $aAmsterdam ;$aBoston $cElsevier/Pergamon$d2007 215 $a1 online resource (513 p.) 300 $aDescription based upon print version of record. 311 $a0-08-044927-1 320 $aIncludes bibliographical references and index. 327 $aFront cover; Translation of Addictions Science into Practice; Copyright page; Table of Contents; List of Contributors; Preface; Section I: Genetics and Neuroscience; Chapter 1. The Interplay between Genotype and Gene Expression in Human Brain: What Can it Teach Us about Alcohol Dependence?; Drug and Alcohol Abuse; Future Directions; Concluding Remarks; Acknowledgments; References; Chapter 2. Common Genetic Influences on Antisociality and Addictions: Implications for Clinical Science and Practice; Comorbidity of Addictions and Antisociality: An Introduction 327 $aShared Genetic Vulnerabilities to Antisociality and AddictionsMolecular Genetics of Antisociality and Addictions: Examples from the Study of Alcoholism; Implications of Common Genetic Influences of Antisocial Personality and Addictions for Conceptualizing and Classifying Psychopathology; From Genes to Clinical Practice: Implications of Genetic Research for Advancing Clinical Care; Summary and Conclusions; References; Chapter 3. Opioids, Pain and Addiction: Cause and Consequence; Opioid-Induced Hyperalgesia; Implications for Opioid Dependence Treatment; Future Directions; General Conclusion 327 $aReferencesChapter 4. Imbalance between Neuroexcitatory and Neuroinhibitory Amino Acids causes Craving for Ethanol: From Animal to Human being Studies; Introduction; Effects of Ethanol on Glutamate; Ethanol Withdrawal; Multiple Ethanol Withdrawal; Acamprosate and Repeated Ethanol Withdrawal; Conditioning Associated with Ethanol; Excitatory Amino Acids and Ethanol in Humans; Clinical Implications; References; Chapter 5. Cannabis and the Brain: Implications of Recent Research; Psychiatric Symptoms Associated with Cannabis; Cannabis and Schizophrenia; Summary and Future Directions; References 327 $aSection II: PharmacotherapyChapter 6. The Plasticity of Alcohol Addiction Suggests Novel Approaches to Pharmacological Intervention; Neurobiology of Alcohol Addiction; Glutamatergic System; Glutamate and Alcohol; Ethanol and the Post-Synaptic Density; Metabotropic Glutamate Receptors; References; Chapter 7. Pharmacotherapies for the Treatment of Alcohol Dependence: Current and on the Horizon; Epidemiology; Alcohol Withdrawal and Detoxification; Relapse Prevention; Disulfiram; Naltrexone; Acamprosate; Treatment Options on the Horizon 327 $aMedication Compliance and Its Impact on Alcohol PharmacotherapyConclusions and Future Directions; References; Chapter 8. Agonist Treatment for Stimulant Abuse and Dependence; Relevant Science, Introduction and Background; Immediate Implications for Prevention, Assessment or Treatment Developments; Speculation on Future Directions for Translational Developments; References; Chapter 9. Topiramate-Induced Neuromodulation of Cortico-Mesolimbic Dopamine: Implications for the Treatment of Nicotine and Alcohol Dependence; Nicotine and Alcohol Dependence:The Problem of Comorbidity 327 $aTopiramate: A Promising new Vista 330 $aRecent advances in the understanding of the genetic, neurochemical, behavioral and cultural underpinnings of addiction have led to rapid advances in the understanding of addiction as a disease. In fact, advances in basic science and the development of new pharmacological and behavioral therapies associated with them are appearing faster than can be assimilated not only by clinical researchers but practitioners and policy makers as well. Translation of science-based addictions knowledge into improved prevention, assessment and treatment, and communication of these changes to researchers and p 606 $aDrug abuse$xPhysiological aspects 606 $aSubstance abuse$xPhysiological aspects 606 $aDrug abuse$xTreatment 606 $aSubstance abuse$xTreatment 615 0$aDrug abuse$xPhysiological aspects. 615 0$aSubstance abuse$xPhysiological aspects. 615 0$aDrug abuse$xTreatment. 615 0$aSubstance abuse$xTreatment. 676 $a616.86/06 22 676 $a616.8606 701 $aMiller$b Peter M$g(Peter Michael),$f1942-$01190972 701 $aKavanagh$b David John$01524864 801 0$bMiAaPQ 801 1$bMiAaPQ 801 2$bMiAaPQ 906 $aBOOK 912 $a9910784550103321 996 $aTranslation of addictions science into practice$93765931 997 $aUNINA LEADER 05633nam 2200757 a 450 001 9911020237003321 005 20200520144314.0 010 $a9786611946777 010 $a9783527660155 010 $a3527660151 010 $a9781281946775 010 $a128194677X 010 $a9783527622221 010 $a3527622225 010 $a9783527622238 010 $a3527622233 035 $a(CKB)1000000000549416 035 $a(EBL)481696 035 $a(SSID)ssj0000329856 035 $a(PQKBManifestationID)11245415 035 $a(PQKBTitleCode)TC0000329856 035 $a(PQKBWorkID)10316759 035 $a(PQKB)11316904 035 $a(MiAaPQ)EBC481696 035 $a(OCoLC)264389622 035 $a(Perlego)1001424 035 $a(EXLCZ)991000000000549416 100 $a20130225d2008 uy 0 101 0 $ager 135 $aur|n|---||||| 181 $ctxt 182 $cc 183 $acr 200 00$aChromatogramme richtig integrieren und bewerten $eein Praxishandbuch fur die HPLC und GC /$fherausgegeben von Stavros Kromidas und Hans-Joachim Kuss 210 $aWeinheim $cWiley-VCH Verlag GmbH & Co. KGaA$d2008 215 $a1 online resource (422 p.) 300 $aDescription based upon print version of record. 311 08$a9783527317745 311 08$a3527317740 320 $aIncludes bibliographical references and index. 327 $aChromatogramme richtig integrieren und bewerten; Inhaltsverzeichnis; Vorwort; Autorenliste; Zum Aufbau des Buches; Teil I Auswertung in der Chromatographie - die Integration; 1 Das Chromatogramm; 1.1 Chromatographischer Prozess; 1.1.1 Selektivita?t und Effizienz - Maß fu?r die unterschiedliche Wanderungsgeschwindigkeit; 1.2 Chromatographische Kenngro?ßen; 1.2.1 Retentionsgro?ßen; 1.2.1.1 Totzeit (t(m); t(0)); 1.2.1.2 Bruttoretentionszeit (t(ms); t(R)); 1.2.1.3 Nettoretentionszeit (t(s)); 1.2.1.4 Retentionsfaktor oder Kapazita?tsfaktor (k; k ?); 1.2.2 Peak-Ausdehnung und Peakform 327 $a1.2.2.1 Basispeakbreite (w(b))1.2.2.2 Peakbreite in halber Ho?he (w(h)); 1.2.2.3 Peakho?he (h); 1.2.2.4 Peaksymmetrie, Tailingfaktor (T); 1.2.3 Auflo?sungsgro?ßen; 1.2.3.1 Die Auflo?sung (R); 1.2.3.2 Quantitative Gro?ße der Selektivita?t; 1.2.3.3 Quantitative Gro?ßen fu?r die Effizienz der Trennsa?ule; 1.2.4 Bestimmung von kleinen Substanzmengen; 1.2.4.1 Ermitteln der Nachweis-, Erfassungs-, Entscheidungs- und Bestimmungsgrenze; 1.3 van Deemter- und Golay-Gleichung; 1.4 Erzeugen von Chromatogrammen; 1.4.1 Datenaufnahme, Erzeugen der Rohdaten; 1.4.1.1 Bei der Datenaufnahme verwendete Parameter 327 $a1.4.1.2 Beispiele der unterschiedlichen Art der Datenaufnahme1.4.1.3 Innere/a?ußere Chromatogramme; 1.4.1.4 2-D-/3-D-Chromatogramme; 1.4.2 Charakterisierung von Detektoren; 1.4.2.1 Zersto?rend/nicht zersto?rend; 1.4.2.2 Selektiv, spezifisch, universell; 1.4.2.3 Konzentrations- und massenstromabha?ngige Detektoren; 1.4.2.4 Detektorempfindlichkeit; 1.4.2.5 Linearer und dynamischer Bereich; 1.4.2.6 Ansprechzeit, Zeitkonstante; 1.5 Integration; 1.5.1 Integration anschaulich; 1.5.1.1 Methoden zur Peakerkennung; 1.5.2 Integration und Integrationsparameter, Beispiele 327 $a1.5.2.1 Datenaufnahme und -integration mit Empower 21.5.2.2 Datenaufnahme und -integration mit Chromeleon; 1.5.2.3 Datenaufnahme und -integration mit EZChrom Elite; 1.5.2.4 Datenaufnahme und -integration mit ChemStation; 1.5.2.5 Vergleich der wichtigsten Integrationsparameter von vier unterschiedlichen Integrationsprogrammen; Anhang: Experimente zur Optimierung der Zeitkonstante/Datensammelrate; Literatur; 2 Integrationsfehler und Auswertung; 2.1 Was sagt die Literatur u?ber Integrationsfehler?; 2.2 Integration in der ta?glichen Praxis; 2.2.1 Integration - einfach und immer gleich? 327 $a2.2.2 Vergleich von Integrationssystemen mit wenigen großen Peaks2.2.3 Vergleich von Integrationssystemen mit vielen kleinen Peaks; 2.3 Chromatogramm-Simulation; 2.3.1 Simulation eines digitalen Chromatogramms; 2.3.2 Ein Peak; 2.3.3 Mehrere Peaks; 2.3.4 Rauschen; 2.3.5 Drift; 2.3.6 Gaschromatogramm; 2.3.7 Verschmolzene Peaks; 2.3.8 Datenpunktabstand; 2.3.9 Tailing; 2.3.10 Peakfla?che und Peakho?he; 2.3.11 Andere Kenngro?ßen; 2.4 Anwendungen der Simulation; 2.4.1 Simulation einer Kalibriergeraden; 2.4.2 Zehnfache Simulation an der Bestimmungsgrenze 327 $a2.4.3 Simulation eines isokratischen Chromatogramms 330 $aStavros Kromidas und Hans-Joachim Kuss schließen mit ihrem Autorenteam aus erfahrenen Experten eine wichtige Lu?cke in der Analytik-Literatur: Sie stellen pra?gnant und nachvollziehbar den Weg von den Rohdaten zum bewerteten Ergebnis vor. Das ist besonders wichtig fu?r gesetzlich relevante Messungen, z. B. in der Pharma- und Nahrungsmittelanalytik, denn wer hier Fehler macht, erzeugt trotz korrekter Messdaten falsche Informationen. Und auf die gebra?uchlichen Auswerteprogramme ist nicht immer Verlass. 606 $aChromatographic analysis 606 $aHigh performance liquid chromatography 606 $aGas chromatography 615 0$aChromatographic analysis. 615 0$aHigh performance liquid chromatography. 615 0$aGas chromatography. 676 $a543.0894 676 $a543.8 676 $a543.84 676 $a544.92 701 $aKromidas$b Stavros$01604367 701 $aKuss$b Hans-Joachim$01838949 801 0$bMiAaPQ 801 1$bMiAaPQ 801 2$bMiAaPQ 906 $aBOOK 912 $a9911020237003321 996 $aChromatogramme richtig integrieren und bewerten$94418049 997 $aUNINA LEADER 01372nam2 22003373i 450 001 PUV0965907 005 20251003044316.0 010 $a2876471019 100 $a20080609e19921912||||0itac50 ba 101 | $afre 102 $afr 181 1$6z01$ai $bxxxe 182 1$6z01$an 200 1 $aˆ1.2: ‰Algébre 210 $aSceaux$cJ. Gabay$d[1992] 215 $a520 col.$d18 x 25 cm 300 $aRipr. facs. dell'ed. : Paris : Gauthier-Villars ; Leipzig : B.G. Teubner, 1912. 461 1$1001PUV0962188$12001 $aEncyclopédie des sciences mathématiques pures et appliquées$fpubliée sous les auspices des académies des sciences de Göttingue, de Leipzig, de Munich et de Vienne avec la collaboration de nombreux savants$v1.2 606 $aMatematica$xEnciclopedie e dizionari$2FIR$3SBLC092649$9E 606 $aAlgebra$2FIR$3CFIC003520$9E 676 $a510$9MATEMATICA$v14 676 $a512$9ALGEBRA$v14 696 $aDizionari$aEnciclopedie 699 $aEnciclopedie e dizionari$xDizionari$xEnciclopedie 801 3$aIT$bIT-000000$c20080609 850 $aIT-BN0095 912 $aPUV0965907 950 2$aBiblioteca Centralizzata di Ateneo$cv. 1-8 in 22$d 01RIPR. FACSFr. A 0020$e 0102 0000066695 VMA (01.2 v. 1.2$fY $h20080609$i20080609 977 $a 01 996 $aAlgébre$9104101 997 $aUNISANNIO