Grady | Mechanics of Biological Systems and Materials & Micro-and Nanomechanics, Volume 4 | Buch | 978-3-030-30012-8 | sack.de

Buch, Englisch, 92 Seiten, Format (B × H): 215 mm x 285 mm, Gewicht: 520 g

Reihe: Conference Proceedings of the Society for Experimental Mechanics Series

Grady

Mechanics of Biological Systems and Materials & Micro-and Nanomechanics, Volume 4

Proceedings of the 2019 Annual Conference on Experimental and Applied Mechanics

Buch, Englisch, 92 Seiten, Format (B × H): 215 mm x 285 mm, Gewicht: 520 g

Reihe: Conference Proceedings of the Society for Experimental Mechanics Series

ISBN: 978-3-030-30012-8
Verlag: Springer International Publishing


Mechanics of Biological Systems and Materials & Micro-and Nanomechanics, Volume 4 of the Proceedings of the 2019 SEM Annual Conference & Exposition on Experimental and Applied Mechanics, the fourth volume of six from the Conference, brings together contributions to important areas of research and engineering.  The collection presents early findings and case studies on a wide range of topics, including: 

Extreme NanomechanicsIn-Situ NanomechanicsExpanding Boundaries in MetrologyMicro and Nanoscale DeformationMEMS for Actuation, Sensing and Characterization1D & 2D MaterialsCardiac MechanicsCell Mechanics Biofilms and Microbe MechanicsTraumatic Brain InjuryOrthopedic BiomechanicsLigaments and Soft Materials
Grady Mechanics of Biological Systems and Materials & Micro-and Nanomechanics, Volume 4 jetzt bestellen!

Zielgruppe


Research


Autoren/Hrsg.


Weitere Infos & Material


1. Terahertz Protein Vibrations: The Usefulness of Coarse-Grained Numerical Models.- 2. Protein Conformational Changes and Low-Frequency Vibrational Modes: A Similarity Analysis.- 3. Keynote: Residual Stresses in Biological Materials.- 4. Quantification of Papillary Muscle Motion and Mitral Regurgitation after Myocardial Infarction.-  5. Characterization of Fiber Alignment and Mechanical Properties of Printed Cellulose Nanofibril Films.- 6. Vibrational Analysis of Biopolymer-Based Hydrogels Using 3D-Printed Test Structures for Applications In Bioprinting.- 7. High Strain Torsional Shear of Porcine Thoracic Aorta.- 8. Imaging of the Scattering of High-Intensity Focused Ultrasonic Waves at Artificial Bone Replicas.- 9. A Comparison Between Bearing and Non-Bearing Human Bone: Mechanical Testing and Micro-Architecture Assessment.- 10. 3D High-Speed Digital Image Correlation (3D-HSDIC) to Study Damage of Human Eardrum Under High-pressure Loading.- 11. Comparative Modal Analysis of the Tympanic Membrane Mechanics between Normal and Experimentally Simulated Pathological Ears.- 12. Influence of Cell Wall Polysaccharides on Structure and Mechanics of Streptococcus Mutans.- 13. Dental Implant Texture Affects Biofilm Adhesion Strength.- 14. On the Role of Human Umbilical Cord Biomechanics.- 15. Laser Diffractometer for Measuring Bacterial Biodegradation of Dental Materials.


Martha Grady, University of Kentucky, USA; Jacob Notbohm, University of Wisconsin-Madison, USA; Christian Franck, University of Wisconsin-Madison, USA; LaVern Starman–Air Force Research Laboratory, USA; Jenny Hay – Nanomechanics Inc., USA


Ihre Fragen, Wünsche oder Anmerkungen
Vorname*
Nachname*
Ihre E-Mail-Adresse*
Kundennr.
Ihre Nachricht*
Lediglich mit * gekennzeichnete Felder sind Pflichtfelder.
Wenn Sie die im Kontaktformular eingegebenen Daten durch Klick auf den nachfolgenden Button übersenden, erklären Sie sich damit einverstanden, dass wir Ihr Angaben für die Beantwortung Ihrer Anfrage verwenden. Selbstverständlich werden Ihre Daten vertraulich behandelt und nicht an Dritte weitergegeben. Sie können der Verwendung Ihrer Daten jederzeit widersprechen. Das Datenhandling bei Sack Fachmedien erklären wir Ihnen in unserer Datenschutzerklärung.