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The 4th Romanian Conference on Geosynthetics — GeoSint 2025 : Celebrating 35 Years since the Founding of the Romanian Association on Geosynthetics / / edited by Ernest Olinic
The 4th Romanian Conference on Geosynthetics — GeoSint 2025 : Celebrating 35 Years since the Founding of the Romanian Association on Geosynthetics / / edited by Ernest Olinic
Autore Olinic Ernest
Edizione [1st ed. 2025.]
Pubbl/distr/stampa Cham : , : Springer Nature Switzerland : , : Imprint : Springer, , 2025
Descrizione fisica 1 online resource (207 pages)
Disciplina 620.1
Collana Springer Proceedings in Materials
Soggetto topico Building materials
Engineering geology
Surfaces (Technology)
Thin films
Soft condensed matter
Materials
Catalysis
Force and energy
Structural Materials
Geoengineering
Surfaces, Interfaces and Thin Film
Soft and Granular Matter
Materials for Energy and Catalysis
ISBN 3-032-02849-3
9783032028495
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto The history of the use of geosynthetic materials in Romania, reflected in technical publications -- Effect of Geotextile Reinforcement on Corrugated Steel Culvert Behavior During Construction -- Assessment of the long term behavior of geotextiles used for the reinforcement and stabilization of high slopes along the Danube-Black Sea Canal -- Quantitative Assessment of Soil Erosion on Slopes Protected by Geomats Under Rainfall Simulation Tests -- First Geofoam Roadway Embankment Application in Romania: A Case Study -- Thermal Effect of Embankment Outer Layers on the Ethylene Copolymer Bitumen Geomembrane of the Ajdabiya Reservoir -- EPDM geomembrane design for anaerobic fermentation tanks, a large deformation approach -- Innovative Dewatering Solutions for Environmental Dredging: Case Study of O Burgo Estuary, Spain -- Assessing Seismic Impact on Reinforced Earth Retaining Walls Using the MCR Calculation Method -- Slope stabilisation by geosynthetics reinforced soil retaining walls. Numerical validation of proposed using analytical methods -- Improving the characteristics of the foundation soil and controlling the differential settlement of high embankments by using Cellular Foundation Mattresses made of geosynthetic materials -- Laboratory experiments of sandy slopes reinforced by synthetic fibers under seepage conditions -- Lateral swelling failure of unreinforced crushed stone columns and reduction of this phenomenon by geogrid reinforcement. Numerical analysis performed with the FEM -- The use of Geosynthetic Materails for Irrigation Canals: Applications and Benefits for Water Loss Reduction -- Full-Scale Trafficking Tests Of Pavements Stabilized With Multi-Shape Coextruded Geogrids -- Evaluation of Cyclic CBR Test for Soils Reinforced with Geosynthetics.
Record Nr. UNINA-9911031573203321
Olinic Ernest  
Cham : , : Springer Nature Switzerland : , : Imprint : Springer, , 2025
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ACS polymers Au
ACS polymers Au
Pubbl/distr/stampa Washington, DC : , : American Chemical Society, , [2021]-
Descrizione fisica 1 online resource
Disciplina 530.413
Soggetto topico Polymers
Soft condensed matter
Soggetto genere / forma Periodical
Periodicals.
ISSN 2694-2453
Formato Materiale a stampa
Livello bibliografico Periodico
Lingua di pubblicazione eng
Altri titoli varianti American Chemical Society polymers Au
Record Nr. UNISA-996445950503316
Washington, DC : , : American Chemical Society, , [2021]-
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ACS polymers Au
ACS polymers Au
Pubbl/distr/stampa Washington, DC : , : American Chemical Society, , [2021]-
Descrizione fisica 1 online resource
Disciplina 530.413
Soggetto topico Polymers
Soft condensed matter
Soggetto genere / forma Periodical
Periodicals.
ISSN 2694-2453
Formato Materiale a stampa
Livello bibliografico Periodico
Lingua di pubblicazione eng
Altri titoli varianti American Chemical Society polymers Au
Record Nr. UNINA-9910500595603321
Washington, DC : , : American Chemical Society, , [2021]-
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Advances in Direct Simulation Monte Carlo: From Micro-Scale to Rarefied Flow Phenomena / / by Ehsan Roohi, Hassan Akhlaghi, Stefan Stefanov
Advances in Direct Simulation Monte Carlo: From Micro-Scale to Rarefied Flow Phenomena / / by Ehsan Roohi, Hassan Akhlaghi, Stefan Stefanov
Autore Roohi Ehsan
Edizione [1st ed. 2025.]
Pubbl/distr/stampa Singapore : , : Springer Nature Singapore : , : Imprint : Springer, , 2025
Descrizione fisica 1 online resource (560 pages)
Disciplina 621.381
532.05
Altri autori (Persone) AkhlaghiHassan
StefanovStefan
Collana Chemistry and Materials Science Series
Soggetto topico Microfluidics
Soft condensed matter
Mathematical physics
Computer simulation
Fluids
Computational Physics and Simulations
ISBN 981-9682-00-2
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Introduction to Micro and Nano Flows -- A Brief Review of Kinetic Theory -- DSMC Method and its Connection to Kinetic Theory -- Recent Advances in DSMC -- Pressure Driven Flows: Poisselle Flow -- Thermal Driven Micro/Nano Flows -- Shear Driven Flows: Couette Flow and Cavity Flow -- High-Speed Microflows: Nozzle Flow -- External Flows: Micro-Scale Flat Plate and Airfoil -- Cold to Hot Transfer at Micro-/Nano-Scales.
Record Nr. UNINA-9911021975203321
Roohi Ehsan  
Singapore : , : Springer Nature Singapore : , : Imprint : Springer, , 2025
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Advances in Fluid and Thermal Engineering : Select Proceedings of FLAME 2024 / / edited by Basant Singh Sikarwar, Sanjeev Kumar Sharma, Krishna Mohan Singh
Advances in Fluid and Thermal Engineering : Select Proceedings of FLAME 2024 / / edited by Basant Singh Sikarwar, Sanjeev Kumar Sharma, Krishna Mohan Singh
Autore Sikarwar Basant Singh
Edizione [1st ed. 2026.]
Pubbl/distr/stampa Singapore : , : Springer Nature Singapore : , : Imprint : Springer, , 2026
Descrizione fisica 1 online resource (898 pages)
Disciplina 660
Collana Lecture Notes in Mechanical Engineering
Soggetto topico Production engineering
Soft condensed matter
Electric power production
Thermal Process Engineering
Fluids
Mechanical Power Engineering
ISBN 981-9685-00-1
9789819685004
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Chapter 1.Natural Convection Heat Transfer Enhancement -- Chapter 2.Single Gas Bubble Rising in Liquid Column -- Chapter 3.Density Determination in Microchannel Cooling -- Chapter 4.Effect of Flow Maldistribution on Thermal Performance -- Chapter 5.Water-Cooled Mini-channel Heat Sink -- Chapter 6.Thermodynamic Analysis of Biomass Gasification-Based Power Generation System -- Chapter 7.Fluid machinery and Fluid Power -- Chapter 8.Air-Film Blade Cooled Gas Turbine Cycle -- Chapter 9.Atmospheric flows and Highly Confined Flow -- Chapter 10.Biological heat and mass transfer -- Chapter 11.Thermal and Hydrological Properties During Water Flow -- Chapter 12.Ultra-Fast Cooling of Flat Metal Pate -- Chapter 13.Combustion and reactive flows -- Chapter 14.Induce Draught in Cold Storage -- Chapter 15.Thermoelectric Generator Unit for Efficient Waste Heat Recovery -- Chapter 16.Electronic and photonic cooling -- Chapter 17.Pool Boiling Using Nanofluids -- Chapter 18.Fluid Flow Pattern in Cryogenic Radial Turbine -- Chapter 19. A Thermal Analysis of Herbs Drying.
Record Nr. UNINA-9911114150403321
Sikarwar Basant Singh  
Singapore : , : Springer Nature Singapore : , : Imprint : Springer, , 2026
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Aerodynamics / / by Peiqing Liu
Aerodynamics / / by Peiqing Liu
Autore Liu Peiqing
Edizione [1st ed. 2022.]
Pubbl/distr/stampa Singapore : , : Springer Nature Singapore : , : Imprint : Springer, , 2022
Descrizione fisica 1 online resource (869 pages)
Disciplina 532
Collana Physics and Astronomy Series
Soggetto topico Soft condensed matter
Aerospace engineering
Astronautics
Thermodynamics
Fluid mechanics
Fluids
Aerospace Technology and Astronautics
Engineering Fluid Dynamics
ISBN 9789811945861
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Fundamentals of Aerodynamics -- Introduction -- Basic Properties of Fluid and Hydrostatics -- Fundamentals of Fluid Kinematics and Dynamics -- Plane Potential Flow of Ideal Incompressible Fluid -- Fundamentals of Viscous Fluid Dynamics -- Boundary Layer Theory and its Approximation -- Fundamentals of Compressible Aerodynamics -- Applied Aerodynamics -- Flow and Aerodynamic Characteristics of Low Speed Airfoil -- Aerodynamic Characteristics of Low Speed Wing Flow -- Aerodynamic Characteristics of Low Speed Fuselage Wing Body Combination -- Aerodynamic Characteristics of Subsonic Thin Airfoils and Wings -- Aerodynamic Characteristics of Supersonic Thin Airfoils and Wings -- Aerodynamic Characteristics of Transonic Thin Airfoils and Wings -- High Lift Device and Its Aerodynamic Performance.
Record Nr. UNINA-9910633916003321
Liu Peiqing  
Singapore : , : Springer Nature Singapore : , : Imprint : Springer, , 2022
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Album of Porous Media : Structure and Dynamics / / edited by Ezequiel F. Médici, Alejandro D. Otero
Album of Porous Media : Structure and Dynamics / / edited by Ezequiel F. Médici, Alejandro D. Otero
Autore Médici Ezequiel F
Edizione [1st ed. 2023.]
Pubbl/distr/stampa Springer Nature, 2023
Descrizione fisica 1 online resource (XV, 145 p. 119 illus., 107 illus. in color.)
Disciplina 895.134
620.1160222
Soggetto topico Geotechnical engineering
Surfaces (Technology)
Thin films
Fluid mechanics
Condensed matter
Soft condensed matter
Geotechnical Engineering and Applied Earth Sciences
Surfaces, Interfaces and Thin Film
Engineering Fluid Dynamics
Phase Transitions and Multiphase Systems
Soft and Granular Matter
ISBN 3-031-23800-1
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Introduction -- Electrospun Fibrous Mats -- Tailored Electrospun Gas Diffusion Layers With a Graded Pore Structure for Polymer Electrolyte Membrane Fuel Cells -- Dispersed Nanostructured Thin Film (Dnstf) Catalyst -- Electrochemical Actuation of a Nanoporous Polypyrrole Hybrid Material -- Laser-Excited Elastic Guided Waves Reveal the Complex Mechanics of Nanoporous Silicon -- Sample Layout Aiding Efficient Scans of Heterogeneous Sheet-Like Materials -- Protective Porous Media - The Pore & Fiber Structure of Face Masks -- Individual Fibers in Nonwoven are Identified with Artificial Intelligence -- Mechanism of Imperfect Atomic Layer Deposition in Porous Materials -- Mass Transport in Conformally Coated Porous Materials -- Optical Microfabrication of Porous Films -- Bicontinuous Porosity by Spinodal Phase Separation -- Nucleation and Crystal Growth on the Secondary Substrate -- Double-Porosity in Soil -- Boreal Mosses and Lichens -- The Gorgonian Octocoral Eunicella Cavolinii Forms a Porous Biological Material with Outstanding Material Properties -- Foraminifer -- Trovants: The “Living” Stones of Romania Formed as High Porosity Spherical Sandstone Concretions Developed Around a Fossil -- The Complex Pore Spaces of Our Brain: A Challenge and Opportunity for Computer Simulations -- Scaling and Resolution Effect of an Andesite Sample -- Length-Scale Dependence of Pore Space Topology -- Microstructure of Crushable Expanded Clay Aggregates -- Reticulated Rutile -- Mineral Map of Rotliegendes -- Boise Brown -- North Netherlands Gas Reservoir -- Fib-Sem Images From a Cathode Material: Unfiltered and Filtered (Curtaining Filter) -- Vesicles and Fractures in Volcanic Ash -- A View of the Internal Pore Structure of a Volcanic Rock: Xaltipan Ignimbrite -- In Situ Microtomography of the Tensile Fracture and Fragmentation of Porphyry Copper Ores -- Fractured Porous Media: A Cretaceous Carbonate Outcrop Sample -- Fracture Network in a Shale Cube Hydraulically Fractured in the Laboratory -- Geological Carbon Storage at the University of Bergen, Norway.
Record Nr. UNINA-9910698645503321
Médici Ezequiel F
Springer Nature, 2023
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Analysis and Design Optimization of Micromixers / / by Arshad Afzal, Kwang-Yong Kim
Analysis and Design Optimization of Micromixers / / by Arshad Afzal, Kwang-Yong Kim
Autore Afzal Arshad
Edizione [1st ed. 2021.]
Pubbl/distr/stampa Singapore : , : Springer Nature Singapore : , : Imprint : Springer, , 2021
Descrizione fisica 1 online resource (X, 65 p. 41 illus., 20 illus. in color.)
Disciplina 660.284292
Collana SpringerBriefs in Computational Mechanics
Soggetto topico Soft condensed matter
Fluid mechanics
Continuum mechanics
Soft and Granular Matter
Engineering Fluid Dynamics
Continuum Mechanics
ISBN 981-334-291-9
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto 1. Mixing at Microscale -- 2. Active and Passive micromixers. -3. Computational analysis of flow and mixing in micromixers. -4. Design optimization of micromixers -- 5. Conclusion.
Record Nr. UNINA-9910483639403321
Afzal Arshad  
Singapore : , : Springer Nature Singapore : , : Imprint : Springer, , 2021
Materiale a stampa
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Applied Polymer Science / / by Ulf W. Gedde, Mikael S. Hedenqvist, Minna Hakkarainen, Fritjof Nilsson, Oisik Das
Applied Polymer Science / / by Ulf W. Gedde, Mikael S. Hedenqvist, Minna Hakkarainen, Fritjof Nilsson, Oisik Das
Autore Gedde U. W (Ulf W.)
Edizione [1st ed. 2021.]
Pubbl/distr/stampa Cham : , : Springer International Publishing : , : Imprint : Springer, , 2021
Descrizione fisica 1 online resource (555 pages)
Disciplina 668.9
Collana Chemistry and Materials Science Series
Soggetto topico Soft condensed matter
Polymers
Materials - Analysis
Spectrum analysis
Soft and Granular Matter
Characterization and Analytical Technique
Spectroscopy
ISBN 3-030-68472-5
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Intro -- Preface -- Contents -- Chapter 1: Thermal Analysis of Polymers -- 1.1 Introduction -- 1.2 Thermo-analytical Methods -- 1.2.1 Differential Thermal Analysis and Differential Scanning Calorimetry -- 1.2.2 Thermogravimetry -- 1.2.3 Dilatometry and Thermomechanical Analysis -- 1.2.4 Dynamic Mechanical Thermal Analysis -- 1.2.5 Thermal Optical Analysis and In Situ Structural Assessment Under Controlled Thermal History -- 1.2.6 Dielectric Thermal Analysis (DETA) -- 1.3 Thermal Behaviour of Polymers -- 1.3.1 Semicrystalline Polymers -- 1.3.2 Amorphous Polymers -- 1.3.3 Liquid Crystalline Polymers -- 1.3.4 Polymer Degradation -- 1.3.5 Further Applications of Thermal Analysis in Polymer Science and Technology -- 1.4 Summary -- 1.5 Exercises -- References -- Chapter 2: Microscopy of Polymers -- 2.1 Introduction -- 2.2 Optical Microscopy -- 2.2.1 Fundamentals -- 2.2.2 Polarized Microscopy and Related Techniques -- 2.3 Electron Microscopy -- 2.4 Atomic Force Microscopy and Related Techniques -- 2.5 Novel Techniques in Polymer Microscopy -- 2.6 Preparation of Specimens for Microscopy -- 2.6.1 Preparation of Samples for Optical Microscopy -- 2.6.2 Preparation of Samples for Scanning Electron Microscopy -- 2.6.3 Preparation of Samples for Transmission Electron Microscopy -- 2.6.4 Preparation of Samples for Atomic Force Microscopy -- 2.6.5 Artificial Structures -- 2.7 Applications of Microscopy in Polymer Science and Engineering -- 2.7.1 Semicrystalline Polymers -- 2.7.2 Liquid Crystalline (LC) Polymers -- 2.7.3 Polymer Blends -- 2.7.4 Composites Including Nanocomposites -- 2.7.5 Native Polymers and Polymeric Biomaterials -- 2.8 Summary -- 2.9 Exercises -- References -- Chapter 3: Spectroscopy and Scattering of Radiation by Polymers -- 3.1 Introduction -- 3.2 Vibrational Spectroscopy -- 3.2.1 Fundamentals -- 3.2.2 IR and Raman Spectrophotometers.
3.2.3 Quantitative Analysis -- 3.2.4 Sample Preparation -- 3.2.5 Applications of Vibrational Spectroscopy -- 3.3 Nuclear Magnetic Resonance (NMR) Spectroscopy -- 3.3.1 Fundamentals -- 3.3.2 Instrumentation -- 3.3.3 Polymer Applications of NMR Spectroscopy -- 3.4 Other Spectroscopic Methods -- 3.4.1 X-ray Photoelectron Spectroscopy (XPS) -- 3.4.2 Electron Spin Resonance Spectroscopy -- 3.4.3 UV-VIS Spectroscopy -- 3.5 Scattering Methods -- 3.5.1 Light Scattering -- 3.5.2 Wide-Angle X-ray Scattering -- 3.5.3 Small-Angle X-ray Scattering -- 3.5.4 Electron Diffraction -- 3.5.5 Neutron Scattering -- 3.6 Summary -- 3.7 Exercises -- References -- Chapter 4: Chromatographic Analysis of Polymers -- 4.1 Introduction -- 4.2 General Concepts in Chromatography -- 4.3 Size Exclusion Chromatography -- 4.3.1 Molar Mass and Molar Mass Distribution -- 4.3.2 Principles of SEC Systems -- 4.3.3 Separation in the SEC Column -- 4.3.4 Detection of the Eluting Molecules -- 4.3.5 Relative Narrow Standard Calibration -- 4.3.6 Universal Calibration -- 4.3.7 Sample Preparation for SEC -- 4.3.8 Molar Mass Averages from SEC Chromatograms -- 4.3.9 Development of New Coupled SEC Systems -- 4.4 High-Performance Liquid Chromatography -- 4.4.1 Principles of an HPLC System -- 4.4.2 Separation Modes in HPLC -- 4.5 Gas Chromatography -- 4.5.1 Principles of a GC System -- 4.5.2 Integrating GC with Mass Spectrometry (MS) -- 4.6 Qualitative and Quantitative Analysis by HPLC and GC -- 4.7 Sample Preparation Before GC or HPLC Analysis -- 4.8 Application of GC and HPLC for the Analysis of Polymers -- 4.9 Summary -- 4.10 Exercises -- References -- Chapter 5: Simulation and Modelling of Polymers -- 5.1 Introduction -- 5.2 Quantum Chemistry (QC) -- 5.2.1 QC: Overview -- 5.2.2 Computational Quantum Mechanics: Formalism -- 5.2.3 Molecular Orbital (MO) Methods, One-Electron Technique.
5.2.4 Molecular Orbital (MO) Methods, Many-Electron Technique -- 5.2.5 Semi-empirical MO Methods -- 5.2.6 Ab Initio Methods -- 5.2.7 Density Functional Theory (DFT) -- 5.3 Molecular Dynamics (MD) -- 5.3.1 MD: Overview -- 5.3.2 Force-Field Potentials -- 5.3.3 Coarse-Graining -- 5.3.4 The Basic MD Algorithm -- 5.3.5 Ensembles -- 5.3.6 The Phase Space -- 5.3.7 A Practical MD Example: Diffusion -- 5.4 Monte Carlo Methods (MC) -- 5.4.1 MC: Overview -- 5.4.2 Importance Sampling: Metropolis Hastings and Biased Sampling -- 5.4.3 Macromolecular Starting Configurations with MC -- 5.4.4 Macromolecular Energy Minimization with MC -- 5.5 Mesoscale Modelling, Including Dissipative Particle Dynamics -- 5.6 Statistical Methods, Including Group-Contribution Methods -- 5.7 The Finite Element Method (FEM) -- 5.7.1 FEM: Introduction -- 5.7.2 Applied FEM -- 5.7.3 FEM: Mathematical Background -- 5.8 Summary -- 5.9 Exercises -- References -- Chapter 6: Mechanical Properties -- 6.1 Introduction -- 6.2 Stress -- 6.2.1 Normal stress and Shear Stress -- 6.2.2 The Stress Tensor -- 6.2.3 The Mohr Stress Circle -- 6.3 Strain -- 6.3.1 Introduction: Uniaxially Loaded Specimens -- 6.3.2 The Strain Tensor and Other Strain Concepts -- 6.3.3 The Mohr Strain Circle -- 6.4 Assessment of the Mechanical Properties -- 6.4.1 Introduction -- 6.4.2 Tensile Testing -- 6.4.3 Dynamic Mechanical Analysis, Dilatometry and Thermal Mechanical Analysis -- 6.4.4 Fracture Testing -- 6.4.5 Surface Mechanics Methods -- 6.5 Definition of Mechanical Parameters from the Tensile Test -- 6.5.1 The Stress-Strain Curve -- 6.5.2 The Stiffness and the Tensile Modulus -- 6.6 The Three-Dimensional View for Modulus and Strain -- 6.7 Energy During Deformation -- 6.7.1 Energy Stored During Elastic Deformation -- 6.7.2 Energy Transformed During Viscous Flow and Viscoelastic Deformation.
6.8 Oriented Polymers and Multiaxial Stresses -- 6.9 Linear Viscoelasticity -- 6.9.1 The Spring and the Dashpot -- 6.9.2 The Maxwell (iso-Stress) Element -- 6.9.3 The Voigt-Kelvin (iso-Strain) Element -- 6.9.4 The Burgers Element and Other Linear Viscoelastic Models -- 6.10 Correlations Between Stress Relaxation and Dynamic Mechanical Data -- 6.10.1 From Stress Relaxation Modulus to Dynamic Mechanical Modulus -- 6.10.2 From Dynamic Mechanical Modulus to Dynamic Mechanical Compliance -- 6.11 Boltzmann Superposition Principle -- 6.12 The Influence of Strain Rate on the Viscoelastic Properties -- 6.13 The Influence of Temperature on the Viscoelastic Properties: Time-Temperature Shifting and Superposition -- 6.14 Non-linear Viscoelasticity as Illustrated with Creep Behaviour -- 6.15 Short-Term Mechanical Properties of Selected Polymers -- 6.16 Rubber Elasticity -- 6.17 Some Examples of Parameters Affecting the Mechanical Properties -- 6.18 Yielding of Polymers -- 6.18.1 Introduction -- 6.18.2 Theories of Yielding in Amorphous Polymers -- 6.18.3 Yielding in Semicrystalline Polymers -- 6.19 Fracture of Polymers -- 6.19.1 Introduction and the Brittle-Ductile Transition -- 6.19.2 Fracture Mechanics -- 6.19.3 Ductile Failure -- 6.19.4 Creep Failure -- 6.19.5 Impact Failure -- 6.19.6 Dynamic Fatigue Failure -- 6.20 Cellulose Fibre Systems and Related Materials -- 6.21 Summary -- 6.22 Exercises -- References -- Chapter 7: Transport Properties of Polymers -- 7.1 Introduction -- 7.2 Diffusion -- 7.2.1 Basics of the Random Walk -- 7.2.2 The Velocity Autocorrelation Function -- 7.2.3 Diffusion -- Temperature and Solute Size -- 7.3 Solubility -- 7.4 Fick´s Laws of Diffusion -- 7.5 Methods of Solution of the Diffusion Equation -- 7.6 Transport Properties of Elastomers and Melts -- 7.6.1 Introduction -- 7.6.2 Models of Diffusion in Elastomers.
7.6.2.1 Molecular Models -- 7.6.2.2 Free Volume Models -- 7.7 Transport Properties of Semicrystalline Polymers -- 7.7.1 Geometrical Effects of Crystals -- 7.7.2 Molecular Constraints -- 7.8 Concentration-Dependent Diffusivity and Swelling in Flexible Polymers -- 7.9 Transport Properties of Glassy Polymers -- 7.9.1 Introduction -- 7.9.2 Dual Solubility Model -- 7.9.3 The Dual Mobility Model -- 7.9.4 Anomalous and Case II Diffusion -- 7.10 Barriers and Membranes -- 7.10.1 Barriers -- 7.10.2 Membrane Separation -- 7.10.2.1 Liquid Separation -- 7.10.2.2 Gas Separation -- 7.11 Techniques for Measuring Permeability, Diffusivity and Solubility -- 7.12 Heat Transfer -- 7.12.1 The Heat Equations -- 7.12.2 Surface Boundary Heat Conditions -- 7.13 Summary -- 7.14 Exercises -- References -- Chapter 8: Processing of Polymeric Materials -- 8.1 Introduction -- 8.2 Polymer Processing: A Complex Applied Polymer Science Discipline -- 8.3 Compounding -- 8.4 Injection Moulding -- 8.5 Extrusion and Associated Techniques -- 8.6 Thermoforming -- 8.7 Producing Hollow Objects: Rotational Moulding and Blow Moulding -- 8.8 Compression Moulding -- 8.9 Calendering -- 8.10 Additive Manufacturing -- 8.10.1 Steps in the Development of Digital Model -- 8.10.2 3D Printing Methods for Polymers -- 8.11 Summary -- 8.12 Exercises -- References -- Chapter 9: Plastics and Sustainability -- 9.1 Introduction -- 9.2 Contribution of Plastics to Sustainable Society -- 9.3 Bio-based Materials -- 9.3.1 Thermoplastic Materials Derived from Bio-based Monomers -- 9.3.2 Biopolymer-Based or Biopolymer-Derived Thermoplastics -- 9.3.3 Bio-based Thermosets and Coatings -- 9.3.4 Production of Polymers from Waste-Greenhouse Gases -- 9.3.5 Challenges and Opportunities for Bio-based Materials -- 9.4 End-of-Life Management: From Waste to Resource -- 9.4.1 Polymer Loop: Mechanical Recycling.
9.4.2 Monomer and Molecule Loops: Chemical Recycling.
Record Nr. UNINA-9910508449303321
Gedde U. W (Ulf W.)  
Cham : , : Springer International Publishing : , : Imprint : Springer, , 2021
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Artificial Intelligence and Intelligent Matter : Nanoscience, Soft Matter, Philosophy / / edited by Michael te Vrugt
Artificial Intelligence and Intelligent Matter : Nanoscience, Soft Matter, Philosophy / / edited by Michael te Vrugt
Edizione [1st ed. 2026.]
Pubbl/distr/stampa Cham : , : Springer Nature Switzerland : , : Imprint : Springer, , 2026
Descrizione fisica 1 online resource (X, 509 p. 118 illus., 97 illus. in color.)
Disciplina 006.3
Collana Machine Intelligence for Materials Science
Soggetto topico Artificial intelligence
Nanotechnology
Soft condensed matter
Condensed matter
Machine learning
Quantum computers
Artificial Intelligence
Soft Materials
Condensed Matter Physics
Machine Learning
Quantum Computing
ISBN 3-032-04129-5
9783032041296
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Preface -- 1. Introduction: Artificial Intelligence and Intelligent Matter -- Part I: Introduction to Artificial Intelligence -- 2. Introduction to Artificial Intelligence -- 3. An Introduction to Reinforcement Learning – In Artificial and Biological Control Systems -- 4. An Introduction to Reservoir Computing -- Part II: Applications of Artificial Intelligence to Nanosystems. 5. Learning Dynamical Systems from Data -- 6. Machine Learning Approaches to Classical Density Functional Theory -- 7. Machine Learning in Quantum Density Functional Theory -- 8. Generative Deep learning for the Inverse Design of Materials -- 9. Machine Learning for Identifying Dynamical Phases Intopologicallasers -- 10. Artificial Intelligence Reshaping the Semiconductor Metrology -- 11. Machine Learning for Active Matter -- Part III: Implementations of Artificial Intelligence in Nanosystems -- 12. A Primer on Neuromorphic Hardware: Underlying Principles and Approaches – From Sensors to Processors -- 13. Towards Intelligent Active Particles -- 14. Intelligent Matter Consisting of Active Particles -- 15. Neural Networks Consisting of DNA -- 16. Intelligence Without a Brain – Perspectives from the Aneural Slime Mold as a Computing Model for Artificial Intelligence -- 17. Integrated Photonics for Neuromorphic Computing -- 18. Time-multiplexed Reservoir Computing with Semiconductor Laser Systems -- 19. Neuromorphic Spintronics -- 20. Machine Learning with Quantum Computers -- Part IV: Philosophical Aspects -- 21. Normativity and the Intelligent Matter Framework -- 22. What Is It Like To Be a Nail? – The Intentions of Matter -- 23. Rethinking Computational Implementation Through Symphoria -- 24. Ethical Aspects of Artificial Intelligence in Nanoscience.
Record Nr. UNINA-9911052922703321
Cham : , : Springer Nature Switzerland : , : Imprint : Springer, , 2026
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