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  • 1
    Online Resource
    Online Resource
    Berlin [u.a.] : De Gruyter
    UID:
    b3kat_BV042209944
    Format: 1 Online-Ressource (XL, 329 S.)
    ISBN: 9783110354324 , 9783110383508
    Additional Edition: Erscheint auch als Druck-Ausgabe, Hardcover ISBN 978-3-11-033718-1
    Language: English
    Subjects: Engineering , Physics
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    Keywords: Nanostruktur ; Nanopartikel ; Nanotechnologie ; Laserinduziertes Verfahren ; Femtosekundenlaser ; Festkörperoberfläche ; Modifizierung ; Laserinduziertes Verfahren ; Nanostruktur ; Laserbearbeitung ; Nanostruktur ; Oberfläche ; Modifizierung ; Laserstrahlung ; Festkörperoberfläche ; Laserstrahlung ; Laser ; Oberflächenbehandlung ; Laserbearbeitung ; Laser ; Nanostruktur ; Electronic books. ; Electronic books.
    URL: Volltext  (kostenfrei)
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    URL: Volltext  (Open Access)
    URL: Cover
    URL: Cover
    URL: Cover
    URL: Volltext  (lizenzpflichtig)
    Author information: König, Karsten 1960-
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  • 2
    Online Resource
    Online Resource
    Cham :Springer Open,
    UID:
    almahu_BV045860716
    Format: 1 Online-Ressource (xi, 173 Seiten) : , Illustrationen, Diagramme (überwieged farbig).
    ISBN: 978-3-030-15195-9
    Series Statement: Advances in science, technology & innovation, IEREK interdisciplinary series for sustainable development
    Additional Edition: Erscheint auch als Druck-Ausgabe ISBN 978-3-030-15194-2
    Language: English
    Subjects: Physics
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    Keywords: Physik ; Electronic books.
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  • 3
    UID:
    almahu_9949301198002882
    Format: 1 online resource (457 pages)
    ISBN: 9783319175454
    Note: Intro -- Foreword -- Preface -- Acknowledgments -- Contents -- Acronyms -- Part I Reminiscences: Rolf Hagedorn and Relativistic Heavy Ion Research -- 1 Spotlight on Rolf Hagedorn -- 1.1 Working with Hagedorn -- Meeting Hagedorn -- A Short Story About Hagedorn Temperature -- Hot Nuclear Matter in the Statistical Bootstrap Model -- Higher Level Computer Language -- Relativistic Heavy Ion Collisions -- Strangeness and the Discovery of Quark-Gluon Plasma -- Retirement -- 1.2 The Righteous Man -- Helping Those in Need -- Le Chambon: A Short Story Outside the Physics Context -- 1.3 Rolf Hagedorn: Biographical Information -- Rolf Hagedorn Curriculum Vitae 1954 -- CERN Appointment -- CERN Obituary: Rolf Hagedorn 1919-2003 -- 2 Rolf Hagedorn: The Years Leading to TH -- 2.1 CERN Theory Division in 1960s -- 2.2 Hagedorn's Path to and at CERN -- The War Years -- At Göttingen -- At CERN -- 2.3 Appreciation -- 3 Music and Science: Tribute to Rolf Hagedorn -- 3.1 Personal Remarks -- Visit to India -- Art and Music -- 3.2 Contribution to Research -- Thermal Particle Production -- Limiting Temperature -- Statistical Bootstrap Model -- 3.3 Active Retirement -- 4 On Hagedorn -- 4.1 In Times Past -- 4.2 Wide Field of Interests -- 4.3 Retrospective -- 5 Hungarian Perspective -- 5.1 Influence Spreads to Hungary -- 5.2 Memories by István Montvay -- 5.3 Tamás Biró Grows up with Hagedorn -- 5.4 Hagedorn Remembered -- 6 The Tale of the Hagedorn Temperature -- 6.1 Particle Production -- 6.2 The Statistical Bootstrap Model -- 6.3 Quark-Gluon Plasma -- 7 The Legacy of Rolf Hagedorn: Statistical Bootstrap and Ultimate Temperature -- 7.1 Rolf Hagedorn -- 7.2 The Statistical Bootstrap -- 7.3 The Limiting Temperature of Hadronic Matter -- 7.4 Resonance Gas and QCD Thermodynamics -- 7.5 Resonance Gas and Heavy Ion Collisions. , 7.6 Particle Yields and Canonical Charge Conservation -- 7.7 Concluding Remarks -- References -- 8 The Hagedorn Spectrum and the Dual Resonance Model: An Old Love Affair -- Preamble -- 8.1 A Surprise That Should Not Have Been One -- 8.2 From TH to the String -- 8.3 Crisis, Reinterpretations -- 8.4 Many Years Later … -- Conclusion -- 9 Hadronic Matter: The Moscow Perspective -- 9.1 The Beginning -- Cosmic Rays and Landau -- Multiperipheral Collisions -- 9.2 Hot Hadron Matter -- Photons and Leptons -- Quark-Gluon Plasma -- Cherenkov Radiation -- Correlations and Fluctuations -- Charm -- 9.3 Open Questions -- Appreciation -- References -- 10 Hagedorn Model of Critical Behavior: Comparison of Lattice and SBM Calculations -- 10.1 Rolf Hagedorn: Some Personal Impressions -- 10.2 Critical Behavior of Hadronic Matter -- Critical Curve from the Lattice Calculations -- Critical Curve from the Statistical Bootstrap Model -- Comparison of SBM and Lattice-QCD -- 10.3 Conclusions -- References -- 11 Hagedorn's Hadron Mass Spectrum andthe Onset of Deconfinement -- 11.1 Hadron Mass Spectrum and the Hagedorn Temperature -- 11.2 Discovery of the Onset of Deconfinement -- References -- 12 Begin of the Search for the Quark-Gluon Plasma -- 12.1 The Beginning -- Bevalac and ISR -- SPS and RHIC Programs Take Shape -- 12.2 Quark-Gluon Plasma Discovered -- New Instrumentation -- Experiments -- 13 The Path to Heavy Ions at LHC and Beyond -- 13.1 Work at the Bevalac -- 13.2 …and at the SPS -- 13.3 How Heavy Ions Got into LHC and the ALICE Was Born -- 13.4 Future Facilities -- 13.5 Epilogue -- 14 A New Phase of Matter: Quark-Gluon Plasma Beyond the Hagedorn Critical Temperature -- 14.1 From Hagedorn to Quark-Gluon Plasma -- Deconfinement of Quarks and Gluons -- Lattice QCD Results -- Hot Nuclear Matter -- 14.2 Path to Discovery of the QGP -- QGP Observables -- SPS Results. , Experiments at RHIC -- Experiments at LHC -- Beam Energy Scan at RHIC -- Next Steps -- 14.3 Outlook and Conclusions -- References -- 15 Reminscenses of Rolf Hagedorn -- 15.1 Many Years Ago -- 15.2 The Heavy Ion Era at CERN Begins -- 15.3 Experiments WA85-WA94-WA97-NA57 -- 15.4 The Other Hagedorn -- References -- Part II The Hagedorn Temperature -- 16 Boiling Primordial Matter: 1968 -- 16.1 The Large and the Small in the Universe -- The New Situation: Multiparticle Production in High Energy Physics -- Black Body Radiation -- 16.2 Highest Temperature = The Boiling Pointof Primordial Matter? -- 16.3 Is the Question About the ``Final Building Block''Meaningless? -- Possible Consequences in the Large? -- 17 The Long Way to the Statistical Bootstrap Model: 1994 -- 17.1 Introduction -- 17.2 From 1936 to 1965 -- Fireballs -- Multiple Production: Heisenberg (1936) -- Dulles-Walker Variables (1954) -- `Constant' Mean Transverse Momentum (1956) -- The Two-Centre Model (1958) -- Conclusion: Fireballs with Limited < -- p> -- Exist -- Statistical and Thermodynamical Methods -- Bohr's Compound Nucleus (1936) -- The Weisskopf Evaporation Model (1937) -- Koppe's Attempt and the Fermi Statistical Model (1948/1950) -- Beth-Uhlenbeck, Belenkij (1937/1956) -- The CERN Statistical Model (1958-1962) -- The Decisive Turn of the Screw: Large-Angle Elastic Scattering -- Statistical Model Description of Large-Angle Elastic Scattering -- Thermal Description -- Exponential or Not? -- Asymptotics of Momentum Space -- Interpretation: Distinguishable Particles and Pomeranchuk's Ansatz -- 17.3 The Statistical Bootstrap Model (SBM) -- A Few Well-Known Formulae -- Introducing the Statistical Bootstrap Hypothesis -- The Solution -- Further Developments -- 17.4 Some Further Remarks -- The Difficulty in Killing an Exponential Spectrum -- What is the Value of T0?. , Where Is Landau, Where Are the Californian Bootstrappers? -- 17.5 Conclusion -- Post Scriptum -- References -- 18 About `Distinguishable Particles' -- 18.1 Withdrawn Manuscript -- 18.2 Note by Rolf Hagedorn of 27 October 1964 -- 18.3 From Distinguishable Hadrons to SBM -- 18.4 Hagedorn Temperature as a General Physics Concept -- 19 Thermodynamics of Distinguishable Particles: A Key to High-Energy Strong Interactions? -- 19.1 Introduction -- 19.2 Statistical Thermodynamics of Distinguishable Particles -- 19.3 The Interpretation of the Model -- 19.4 Speculations on a More Realistic Model -- Angular Distribution and Multiplicity -- The Case of Nonzero Mass -- A Speculation on the Mass Spectrum of `Fireballs' -- Elastic and Exchange Scattering -- A Logical Difficulty of the Model -- 19.5 Summary and Conclusions -- Appendix 1 -- Appendix 2 -- References -- 20 On the Hadronic Mass Spectrum -- References -- 21 On the Hadronic Mass Spectrum: 2014 -- 21.1 Data and Hadron Mass Spectrum -- Fits of Hadron Mass Spectrum -- The Value of the Power Index `a' -- 21.2 Quarks and QCD -- Lattice-QCD Trace Anomaly Constraint -- Quark Bags and the Hadron Mass Spectrum -- References -- 22 SBM Guide to the Literature as of June 1972 -- References -- 23 Thermodynamics of Hot Nuclear Matter: 1978 in the Statistical Bootstrap Model -- 23.1 Introduction -- Plan of the Paper -- 23.2 The Statistical Bootstrap Method in Particle and Nuclear Physics -- The Statistical Bootstrap Model in Particle Physics -- Solution of the Bootstrap Equation -- The Nuclear Matter Bootstrap Equation -- The Mass Spectrum for Nuclear Matter -- Laplace and L-Transforms of the Mass Spectrum -- 23.3 Thermodynamics -- The Partition Functions of the One-Component Ideal Gas -- The Strongly Interacting Pion Gas -- Physics Near T0 -- Thermodynamics of Clustered Matter -- Partition Function of Nuclear Matter. , 23.4 Properties of Nuclear Matter in the Bootstrap Model -- The Different Phases -- Baryon Density in the Gaseous Phase -- Baryon Energy in the Gaseous Phase -- 23.5 Summary -- References -- 24 On a Possible Phase Transition Between Hadron Matter and Quark-Gluon Matter: 1981 -- 24.1 Introduction -- 24.2 The Grand Canonical Pressure Partition Function -- Introduction -- How Shall We Use Π(β,ξ,λ)? -- 24.3 The Hadron Gas -- Introduction -- Digression: The Pointlike Hadron Gas -- The Real Hadron Gas -- Interpretation -- The Usual Thermodynamic Limit with Fixed V→∞ -- Hot Hadron Matter: No Fixed Volume -- 24.4 Conclusions -- References -- 25 How We Got to QCD Matter from the Hadron Side: 1984 -- 25.1 Introduction -- 25.2 Pre-bootstrap -- 25.3 Early Bootstrap -- The Bootstrap Idea -- Consequences -- Difficulties -- Early Developments -- Microcanonical Bootstrap -- Exact Analytical Solutions of the BE -- The Bootstrap Function -- The State of Affairs up to 1978 -- 25.4 The Phase Transition: Hadron Matter-Quark Matter -- Hadron Volumes -- References -- Part III Melting Hadrons, Boiling Quarks Heavy Ion Path to Quark-Gluon Plasma -- 26 How to Deal withRelativistic Heavy Ion Collisions -- 26.1 Introduction -- 26.2 Collective Motions -- Useful Variables -- Momentum Distributions -- Determination of the Weight Function F(λ,γ0) -- Violations of the Postulates 1 and 2 -- (a) Transverse Collective Motions -- (b) Violation of Postulate 2 -- 26.3 Statistical Bootstrap Thermodynamics -- The Partition Function -- Interaction -- The Bootstrap Hypothesis -- The Singularity of the Partition Function: Baryon Conservation -- The Partition Function for Real (Extended) Particles -- Properties of the Real Hadron Gas -- Behaviour Near the Critical Curve -- 26.4 Is There Equilibrium in the Relativistic Heavy Ion Collision? -- The Way to Equilibrium -- Expansion and Cooling. , 26.5 Conclusions.
    Additional Edition: Print version: Rafelski, Johann Melting Hadrons, Boiling Quarks - from Hagedorn Temperature to Ultra-Relativistic Heavy-Ion Collisions at CERN Cham : Springer International Publishing AG,c2015 ISBN 9783319175447
    Language: English
    Subjects: Physics
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    Keywords: Electronic books. ; Festschrift ; Electronic books. ; Electronic books.
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  • 4
    UID:
    almahu_9949301291202882
    Format: 1 online resource (159 pages)
    ISBN: 9783030616014
    Additional Edition: Print version: Hughes, Ciaran Quantum Computing for the Quantum Curious Cham : Springer International Publishing AG,c2021 ISBN 9783030616007
    Language: English
    Subjects: Physics
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    Keywords: Electronic books. ; Lehrbuch
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  • 5
    Online Resource
    Online Resource
    Cham :Springer International Publishing AG,
    UID:
    almahu_9949602257902882
    Format: 1 online resource (313 pages)
    Edition: 1st ed.
    ISBN: 9783030233709
    Series Statement: Soft and Biological Matter Series
    Note: Intro -- Preface -- Contents -- 1 Numerical Approaches to Complex Fluids -- 1.1 Introduction to Complex Fluids and Rheology -- 1.2 Macroscopic Approaches -- 1.2.1 Eulerian/Eulerian Methods -- Inelastic Shear-Thinning/Thickening Fluids -- Viscoelastic Fluids -- Plastic Effects -- Fluid-Structure Interaction -- 1.3 Microscopic Approaches -- 1.3.1 Eulerian/Lagrangian Methods -- Immersed Boundary Methods for Suspensions of Rigid Particles -- Front-Tracking Methods for Suspensions of Deformable Droplets -- 1.3.2 Eulerian/Eulerian Methods -- Volume of Fluids -- Level-Set Method -- Phase-Field Methods -- 1.3.3 Other Approaches -- 1.4 Conclusions -- References -- 2 Basic Concepts of Stokes Flows -- 2.1 Introduction -- 2.2 Navier-Stokes and Stokes Equations -- 2.2.1 Navier-Stokes Equations -- 2.2.2 Stokes Flows -- 2.3 Reversibility of Fluid Flows -- 2.3.1 Examples of Reversibility -- 2.3.2 Irreversible Trajectories in Stokes Flow -- 2.4 Minimum Energy Dissipation Theorem -- 2.4.1 Statement -- 2.4.2 An Application of the Minimum Energy Dissipation Theorem -- 2.5 Limits of the Stokes Approximation -- 2.5.1 Example of a System Where the Stokes Approximation Does Not Work -- Other Linear Flow Equations -- 2.5.2 Departures from Reversibility Caused by Inertia -- 2.5.3 Accelerating Fluid Example -- 2.6 Conclusions -- References -- 3 Mesoscopic Approach to Nematic Fluids -- 3.1 Introduction to Nematic Fluids -- 3.2 Nematic Order Parameters -- 3.3 Landau-de Gennes Free Energy Approach -- 3.3.1 Landau Theory of Nematic Phase Transition -- 3.3.2 Elastic Free Energy -- 3.3.3 Surface Anchoring -- 3.3.4 Electric Field Effects -- 3.3.5 Magnetic Field Effects -- 3.4 Topological Defects -- 3.4.1 Umbilic Defects -- 3.4.2 Basics of Topological Theory of Defects -- 3.5 Nematodynamics -- 3.5.1 Ericksen Stress Tensor -- 3.5.2 Ericksen-Leslie-Parodi Approach. , 3.5.3 Beris-Edwards Model -- 3.5.4 Qian-Sheng Model -- 3.5.5 Towards Active Nematics -- 3.6 Nematic Microfluidics -- 3.6.1 Nematic Flows in Channels -- 3.6.2 Nematic Microfluidic Junctions -- 3.6.3 Colloidal Particles in Nematic Microfluidic Environment -- 3.7 Nematic Colloids -- 3.7.1 Single Spherical Particle -- 3.7.2 Interparticle Interactions -- 3.7.3 Assembly and Self-assembly of Colloidal Structures -- 3.7.4 Complex-Shaped and Topological Colloids -- 3.8 Conclusions -- References -- 4 Amphiphilic Janus Particles at Interfaces -- Acronyms -- 4.1 Introduction -- 4.2 Short History of Asymmetric Janus Particles -- 4.3 General Synthetic Routes -- 4.3.1 Masking and Asymmetric Modification -- 4.3.2 Seeded Emulsion Polymerisation and Phase Separation -- 4.3.3 Microfluidic and Capillary Electro-Jetting Methods -- 4.3.4 Polymer Co-precipitation and Phase Separation -- 4.4 Tuning the Surface Polarity in JPs -- 4.5 Interfacial Activity and Adsorption at Interfaces -- 4.5.1 Contact Angle and Interfacial Adsorption Energies of HPs vs. JPs -- 4.5.2 Inter-Particle Interaction at Interfaces vs. Lowering the Interfacial Tension -- 4.5.3 Activation and Adsorption Energies of JPs Spontaneously Adsorbing at Interfaces -- 4.6 Pickering Emulsions: Arrested JPs at Interfaces -- 4.7 Self-Assembly of Janus Particles -- 4.8 JP-Based Nanomotors -- 4.9 Conclusions -- References -- 5 Upscaling Flow and Transport Processes -- 5.1 Introduction -- 5.2 Flow Through Porous and Heterogeneous Media -- 5.2.1 Darcy's Law -- 5.2.2 Extensions of Darcy's Law -- 5.2.3 Heterogeneous Media -- 5.3 Macroscopic Transport Models -- 5.3.1 Fickian Dispersion -- 5.3.2 Anomalous Dispersion -- Continuous Time Random Walks -- Multi-Rate Mass Transfer -- 5.3.3 Mixing and Chemical Reactions -- Mixing, Diffusion and Dispersion -- Chemical Reactions -- 5.4 Multiphase and Surface Processes. , 5.4.1 Mass and Heat Transfer -- From Surface Processes to Averaged Reaction Rates -- 5.5 Conclusions -- Appendix A: Homogenisation and Two-Scale Expansions -- Appendix B: Volume/Ensemble Averaging -- References -- 6 Recent Developments in Particle Tracking Diagnosticsfor Turbulence Research -- 6.1 Introduction -- 6.2 A Model-Free Calibration Method -- 6.2.1 Principle -- 6.2.2 Practical Implementation -- 6.2.3 Results: Comparison with Tsai Model -- 6.2.4 Discussion -- 6.3 Particle Tracking Algorithms -- 6.3.1 Shadow Particle Tracking Velocimetry -- Experimental Setup -- The Trajectory Stereo-Matching Approach -- Flow Measurements -- 6.3.2 Improved Four-Frame Best Estimate -- 6.4 Noise Reduction in Post-Processing Statistical Analysis -- 6.4.1 Lagrangian Auto-Correlation Functions -- Results -- Discussion -- 6.4.2 Eulerian Structure Functions -- Method -- Results -- Discussion -- 6.5 Conclusions -- References -- 7 Numerical Simulations of Active Brownian Particles -- 7.1 Introduction -- 7.2 Passive Brownian Motion -- 7.3 Active Particles -- 7.3.1 Active Brownian Motion -- 7.3.2 Run-and-Tumble Motion -- 7.3.3 Chiral Active Brownian Motion -- 7.3.4 Gaussian Noise Reorientation Model -- 7.4 More Complex Models -- 7.4.1 Non-Spherical Particles -- 7.4.2 External Fields -- 7.4.3 Interacting Particles -- 7.4.4 Multiplicative Noise -- 7.5 Numerical Examples -- 7.5.1 Living Crystals -- 7.5.2 Colloids with Short-Range Aligning Interaction -- 7.6 Conclusions -- References -- 8 Active Fluids Within the Unified Coloured Noise Approximation -- 8.1 Introduction -- 8.1.1 The Genesis of the UCNA Model of Active Particles -- 8.2 The Unified Coloured Noise Approximation (UCNA) -- 8.2.1 Kinetic Approach -- 8.2.2 Stationary Solution in the Absence of Current -- 8.2.3 Fox Approximation -- 8.2.4 Entropy Production in UCNA -- 8.2.5 H-Theorem. , 8.3 Born-Green-Yvon Hierarchy in the Steady State -- 8.4 Active Pressure -- 8.5 Velocity Correlations -- 8.6 Simple Applications -- 8.6.1 Active Elastic Dumbbells -- 8.6.2 Pressure of N Noninteracting Active Particles Surrounded by Harshly Repulsive Walls -- 8.7 Active Particles in a Time-Dependent Potential -- 8.7.1 Effective Potential -- 8.7.2 Dynamical UCNA and Particle Density Profile -- 8.7.3 Average Drag Force -- 8.8 Conclusions -- Appendix 1: Entropy Production and Heat Flux in the GCN -- Appendix 2: Absence of Detailed Balance Condition in the GCN -- References -- 9 Quadrature-Based Lattice Boltzmann Models for RarefiedGas Flow -- 9.1 Introduction -- 9.2 Generalities -- 9.3 One-Dimensional Quadrature-Based LB Models -- 9.3.1 Full-Range Gauss-Hermite Quadrature -- 9.3.2 Half-Range Gauss-Hermite Quadrature -- 9.4 LB Models in the Three-Dimensional Momentum Space -- 9.4.1 Reduced Distributions -- 9.4.2 Mixed Quadrature LB Models with Reduced Distribution Functions -- 9.4.3 The Lattice Boltzmann Equation -- 9.4.4 Non-Dimensionalisation Procedure -- 9.5 Simulation Results -- 9.5.1 Couette Flow Between Parallel Plates -- 9.5.2 Force-Driven Poiseuille Flow Between Parallel Plates -- 9.6 Conclusions -- Appendix: Numerical Scheme -- References -- Index.
    Additional Edition: Print version: Toschi, Federico Flowing Matter Cham : Springer International Publishing AG,c2019 ISBN 9783030233693
    Language: English
    Subjects: Physics
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    Keywords: Electronic books. ; Aufsatzsammlung
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  • 6
    Book
    Book
    Berlin [u.a.] :De Gruyter,
    UID:
    almahu_BV041715058
    Format: 102 S. : , zahlr. Ill., graph. Darst.
    ISBN: 978-3-11-035464-5 , 978-3-11-035478-2 , 978-3-11-037470-4
    Series Statement: Galileo's O 3
    Additional Edition: Erscheint auch als Online-Ausgabe 10.1524/9783110354782
    Language: English
    Subjects: Physics , Philosophy
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    Keywords: 1564-1642 Sidereus nuncius Galilei, Galileo ; Ausgabe ; Fälschung ; 1564-1642 Sidereus nuncius Galilei, Galileo ; Erstausgabe ; Buchgestaltung ; Fälschung ; Aufsatzsammlung
    URL: Volltext  (kostenfrei)
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    Author information: Bredekamp, Horst, 1947-
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  • 7
    Book
    Book
    Berlin [u.a.] :De Gruyter,
    UID:
    almafu_(DE-604)BV041715058
    Format: 102 S. : , zahlr. Ill., graph. Darst.
    ISBN: 978-3-11-035464-5 , 978-3-11-035478-2 , 978-3-11-037470-4
    Series Statement: Galileo's O 3
    Additional Edition: Erscheint auch als Online-Ausgabe 10.1524/9783110354782
    Language: English
    Subjects: Physics , Philosophy
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    Keywords: 1564-1642 Sidereus nuncius Galilei, Galileo ; Ausgabe ; Fälschung ; 1564-1642 Sidereus nuncius Galilei, Galileo ; Erstausgabe ; Buchgestaltung ; Fälschung ; Aufsatzsammlung
    URL: Volltext  (kostenfrei)
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    Author information: Bredekamp, Horst 1947-
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  • 8
    Book
    Book
    Berlin [u.a.] :De Gruyter,
    UID:
    almafu_BV041715058
    Format: 102 S. : , zahlr. Ill., graph. Darst.
    ISBN: 978-3-11-035464-5 , 978-3-11-035478-2 , 978-3-11-037470-4
    Series Statement: Galileo's O 3
    Additional Edition: Erscheint auch als Online-Ausgabe 10.1524/9783110354782
    Language: English
    Subjects: Physics , Philosophy
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    Keywords: 1564-1642 Sidereus nuncius Galilei, Galileo ; Ausgabe ; Fälschung ; 1564-1642 Sidereus nuncius Galilei, Galileo ; Erstausgabe ; Buchgestaltung ; Fälschung ; Aufsatzsammlung
    URL: Volltext  (kostenfrei)
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    Author information: Bredekamp, Horst 1947-
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  • 9
    Online Resource
    Online Resource
    Berlin ; Heidelberg ; New York : Springer
    UID:
    b3kat_BV042414484
    Format: 1 Online-Ressource
    ISBN: 9783662085813
    Series Statement: Particle acceleration and detection
    Note: This book was originally published with exclusive rights reserved by the publisher in 2003 and was licensed as an open access publication in November 2019.
    Additional Edition: Erscheint auch als Druck-Ausgabe ISBN 978-3-642-07914-6
    Language: English
    Subjects: Physics
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    Keywords: Teilchenbeschleuniger ; Teilchenstrahl
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  • 10
    UID:
    b3kat_BV044039954
    Format: XVII, 473 Seiten , Illustrationen, Diagramme
    ISBN: 9783110468281
    Note: Erscheint auch als Open Access bei De Gruyter
    Additional Edition: Erscheint auch als Online-Ausgabe, PDF ISBN 978-3-11-046974-5 10.1515/9783110469745
    Additional Edition: Online-Ausgabe, EPUB ISBN 978-3-11-046834-2 10.1515/9783110469745
    Language: English
    Subjects: Engineering , Physics
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    Keywords: Polymere ; Polymerisation ; Kunststoff ; Polymere ; Verfahrenstechnik
    URL: Volltext  (kostenfrei)
    Author information: Jastrząb, Renata
    Author information: Tylkowski, Bartosz
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