02749cam a2200409 i 4500952011100000999001700111001000800128003000800136005001700144008004100161010001700202020002900219020002600248020003500274035004100309040009200350041000800442042000800450060002200458100003900480245006600519250002000585264005700605300005000662336002600712337002800738338002700766504005100793505089100844520037801735650006502113650005002178650008102228850000902309942001202318998000902330 00102nlm4070aKCNLbKCNLcPROCd2020-10-12l0oWE 103 F542 2019p0000045308r2020-10-12w2020-10-12yGB c34548d345481728789TH-BaNU20201012171613.0201012s2019 maua b 001 0 eng  a 2018001706 a9781284102338qhardcover a1284102335qhardcover z9781284293883qelectronic book a(OCoLC)1023816661z(OCoLC)1031380850 aDLCbengerdacDLCdOCLCOdOCLCFdCCXdYDXdOCLCOdUBCdOCLCOdCUVdCUYdOCLCOdTH-BaNU09aeng apcc00aWE 103bF542 20191 aFlanagan, Sean P.,d1968-eauthor.10aBiomechanics :ba case-based approach /cby Sean P. Flanagan. aSecond edition. 1aBurlington, MA :bJones & Bartlett Learning,c[2019] axx, 457 pages :bcolor illustrations ;c29 cm atextbtxt2rdacontent aunmediatedbn2rdamedia avolumebnc2rdacarrier aIncludes bibliographical references and index.0 aLesson 1. Introduction -- Lesson 2. Describing motion : linear kinematics in one dimension and one direction -- Lesson 3. Describing motion : linear kinematics in two dimensions and two directions -- Lesson 4. Describing motion : linear kinematics in two dimensions -- Lesson 5. Describing motion : angular kinematics -- Lesson 6. Describing motion : inertia and momentum -- Lesson 7. Explaining motion I : linear kinetics -- Lesson 8. Explaining motion II : angular kinetics -- Lesson 9. Work-energy -- Lesson 10. Collisions, impacts, and the conservation laws -- Lesson 11. Mechanics of the human frame -- Lesson 12. Muscle-tendon mechanics -- Lesson 13. Single-joint concepts -- Lesson 14. Lower extremity biomechanics -- Lesson 15. Biomechanics of the axial skeleton -- Lesson 16. Upper extremity biomechanics -- Lesson 17. Multijoint concepts -- Lesson 18. Putting it all together. a"The second edition of Biomechanics: A Case-Based Approach focuses on the comprehension, retention, and application of the core concepts of biomechanics using problem-based learning strategies. Relevant and realistic problems provide students with the opportunity to associate what they're learning in class to real-life applications in the field"--cProvided by publisher.12aBiomechanical Phenomena0https://id.nlm.nih.gov/mesh/D00169622aMovement0https://id.nlm.nih.gov/mesh/D00906822aMusculoskeletal Physiological Phenomena0https://id.nlm.nih.gov/mesh/D009142 aKCNL 2nlmcGB cnuch