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Jonathan Black's name appears first in the previous edition.
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Jonathan Black's name appears first in the previous edition.
Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Produktdetails
- Produktdetails
- Verlag: Taylor & Francis Inc
- 2 New edition
- Seitenzahl: 476
- Erscheinungstermin: 21. Februar 2014
- Englisch
- Abmessung: 251mm x 183mm x 30mm
- Gewicht: 1048g
- ISBN-13: 9781466503502
- ISBN-10: 1466503505
- Artikelnr.: 38596492
- Herstellerkennzeichnung
- Libri GmbH
- Europaallee 1
- 36244 Bad Hersfeld
- 06621 890
- Verlag: Taylor & Francis Inc
- 2 New edition
- Seitenzahl: 476
- Erscheinungstermin: 21. Februar 2014
- Englisch
- Abmessung: 251mm x 183mm x 30mm
- Gewicht: 1048g
- ISBN-13: 9781466503502
- ISBN-10: 1466503505
- Artikelnr.: 38596492
- Herstellerkennzeichnung
- Libri GmbH
- Europaallee 1
- 36244 Bad Hersfeld
- 06621 890
Dr. Kevin L. Ong is a senior managing engineer in Exponent's Biomedical Engineering practice. He holds degrees in mechanical engineering (B.S. and Ph.D., Cornell University). His area of interest is in product design evaluation and failure analysis of medical devices. Dr. Ong has received two awards from the American Association of Hip and Knee Surgeons for his research on clinical outcomes, as well as an award from the British Orthopaedic Research Society/British Orthopaedic Trainees Association for his research in hip resurfacing. Dr. Ong also currently holds a visiting research professor appointment at the Drexel University School of Biomedical Engineering, Science and Health Systems, Philadelphia, PA. Jonathan Black, FBSE, adjunct professor of biomedical engineering (Cornell University), holds degrees in physics (BS, Cornell University), engineering science (ME, The Pennsylvania State University) and metallurgy (biomaterials) (PhD, University of Pennsylvania). Before his appointment as the first occupant of the Hunter Chair of Bioengineering at Clemson in 1988, he was for 17 years a member of the Department of Orthopaedic Surgery at the University of Pennsylvania with a secondary appointment in the Department of Bioengineering. In 1992-5, he was a Senior Visiting Fellow in the IRC for Biomaterials at Queen Mary and Westfield College (London, UK), with support from an SERC Fellowship. In 2011, he was appointed adjunct professor of biomedical engineering at Cornell University, Ithaca, NY, USA. Dr. Scott Lovald holds degrees in mechanical engineering (B.S. and Ph.D., University of New Mexico), manufacturing engineering (M.E., University of New Mexico), and business (M.B.A., University of New Mexico). He is currently a senior associate in Exponent's Biomedical Engineering Practice. His past experience has included various positions focused on medical implant design and research. Immediately prior to working at Exponent, Dr. Lovald initiated and directed the research, seed funding, design, manufacturing, FDA 510(k) clearance, and post-market study Investigational Review Board approval of a novel trauma system that has been the subject of numerous peer-reviewed journal publications and subsequently introduced into a Level I trauma center.
Forces and Equilibrium. Deformation. Mechanical Properties.
Viscoelasticity. Properties of Natural Materials. Polymers. Metals.
Ceramics and Composites. Tissue engineering. Hybrid, Combination and
Replant Materials. Friction and Wear. Corrosion and Degradation. Fixation.
Host Response. Testing and Introduction of New Materials. Materials
Retrieval and Analysis. Annotated Bibliography. Index.
Viscoelasticity. Properties of Natural Materials. Polymers. Metals.
Ceramics and Composites. Tissue engineering. Hybrid, Combination and
Replant Materials. Friction and Wear. Corrosion and Degradation. Fixation.
Host Response. Testing and Introduction of New Materials. Materials
Retrieval and Analysis. Annotated Bibliography. Index.
Forces and Equilibrium. Deformation. Mechanical Properties.
Viscoelasticity. Properties of Natural Materials. Polymers. Metals.
Ceramics and Composites. Tissue engineering. Hybrid, Combination and
Replant Materials. Friction and Wear. Corrosion and Degradation. Fixation.
Host Response. Testing and Introduction of New Materials. Materials
Retrieval and Analysis. Annotated Bibliography. Index.
Viscoelasticity. Properties of Natural Materials. Polymers. Metals.
Ceramics and Composites. Tissue engineering. Hybrid, Combination and
Replant Materials. Friction and Wear. Corrosion and Degradation. Fixation.
Host Response. Testing and Introduction of New Materials. Materials
Retrieval and Analysis. Annotated Bibliography. Index.