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    Gebundenes Buch

This collection provides researchers and scientists with advanced analyses and materials design techniques in Biomaterials and presents mechanical studies of biological structures. In 16 contributions well known experts present their research on Stress and Strain Analysis, Material Properties, Fluid and Gas mechanics and they show related problems.…mehr

Produktbeschreibung
This collection provides researchers and scientists with advanced analyses and materials design techniques in Biomaterials and presents mechanical studies of biological structures. In 16 contributions well known experts present their research on Stress and Strain Analysis, Material Properties, Fluid and Gas mechanics and they show related problems.
  • Produktdetails
  • Advanced Structured Materials Vol.14
  • Verlag: Springer, Berlin
  • Artikelnr. des Verlages: 80036260
  • Erscheinungstermin: Dezember 2011
  • Englisch
  • Abmessung: 249mm x 167mm x 23mm
  • Gewicht: 485g
  • ISBN-13: 9783642221309
  • ISBN-10: 3642221300
  • Artikelnr.: 33479804
Autorenporträt
Prof. Dr.-Ing. habil. Holm Altenbach lehrt Technische Mechanik an der Otto-von-Guericke-Universität Magdeburg. Seine Forschungsschwerpunkte liegen auf verschiedenen Gebieten der Kontinuumsmechanik (Plattentheorie, Kriechschädigungsmechanik, Mechanik der Komposite).
Inhaltsangabe
Numerical stress analysis of C3-C5 cervical porcine vertebrae under compressive loading using 3-D scanner and 3-D Computed Tomography.- Stresses and Strains Analysis of a Longitudinal Heterogeneous Arterial Wall.- Stresses and Strains Analysis in the Left Ventricular wall with Finite Deformations.- Stress distribution at the interface Bone-implant in dental prosthesis with stress barrier.- Biomechanical behaviour analyse of sap ascent in vascular plants.- Experimental Investigation of the Surface Tension of Lipid Membranes.- Finite element analysis of traction force induced by cell on the liquid crystals.- Preparation of Forsterite-bioactive glass-hydroxyapatite Composite Nanopowder for Biomedical Applications.- Biomechanical Properties of the Aorta in Neonates and Infants.- Biomechanical properties of coronary arteries neonates.- Numerical Method on Blood Flow Pressure Drop in Aorta Coronary Sinus Conduit.- Biomechanical Modeling of Aneurysm Growth and Rupture using Fluid Structure Interaction.- Study and Mathematical Modeling of Transient Gas Compositions for Modified Atmosphere Packaging.- Kinetic modeling of biogas generation from banana stem waste.- Simulation of the problems of refraction in the human eye.- Human Gait: Kinematics Analysis and Mechatronic Simulation.