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標(biāo)題: Titlebook: An Introduction to Biomechanics; Solids and Fluids, A Jay D. Humphrey,Sherry L. O’Rourke Textbook 20152nd edition Springer Science+Business [打印本頁]

作者: HAVEN    時(shí)間: 2025-3-21 17:54
書目名稱An Introduction to Biomechanics影響因子(影響力)




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書目名稱An Introduction to Biomechanics讀者反饋




書目名稱An Introduction to Biomechanics讀者反饋學(xué)科排名





作者: 鄙視    時(shí)間: 2025-3-21 22:49

作者: 破譯    時(shí)間: 2025-3-22 01:11

作者: 儲(chǔ)備    時(shí)間: 2025-3-22 05:07
https://doi.org/10.1007/978-3-322-97657-4he bladder, the flow of crystalloid perfusates in in vitro experiments, and so on. Because few analytical solutions are available, one must often resort to numerical methods to solve these important equations. Nonetheless, in this chapter, we will consider five important analytical solutions to the Navier–Stokes equations.
作者: Decrepit    時(shí)間: 2025-3-22 11:54

作者: 帶子    時(shí)間: 2025-3-22 14:19

作者: 拱形面包    時(shí)間: 2025-3-22 19:18

作者: Carminative    時(shí)間: 2025-3-22 21:12
Leistungsbewertung in der Kinderradiologiehanics addresses many issues of health as well as disease, injury, and their treatment in both humans and animals. This shall be our primary motivation herein; thus, it is easy to see that biomechanics is fundamental to the rapidly growing field of biomedical engineering.
作者: correspondent    時(shí)間: 2025-3-23 02:43

作者: 賭博    時(shí)間: 2025-3-23 09:17

作者: 感情    時(shí)間: 2025-3-23 13:17

作者: 加入    時(shí)間: 2025-3-23 15:35

作者: ingenue    時(shí)間: 2025-3-23 21:06
Klaus-Dietrich Ebel,Eberhard Willichncomplete: We have not specified what . and . are made of; . could be made of a much stronger material than . Thinking back to statics, we realize that we never specified the properties of the materials or structures that we studied, we simply assumed that they were always rigid (i.e., infinitely st
作者: 運(yùn)動(dòng)吧    時(shí)間: 2025-3-24 00:09

作者: 別名    時(shí)間: 2025-3-24 05:33

作者: WAG    時(shí)間: 2025-3-24 10:25

作者: 存在主義    時(shí)間: 2025-3-24 13:51
Monographien zum PflanzenschutzEq. (.)] and a linear relation between strain and displacement gradients [e.g., Eq. (.)]. We need to avoid both linearizations in soft tissue mechanics. The interested reader is referred to Humphrey (2002) for a more complete treatment of the nonlinear theories, but here we provide a simple, brief i
作者: 消滅    時(shí)間: 2025-3-24 15:27

作者: padding    時(shí)間: 2025-3-24 22:31
Stress, Strain, and Constitutive Relationsncomplete: We have not specified what . and . are made of; . could be made of a much stronger material than . Thinking back to statics, we realize that we never specified the properties of the materials or structures that we studied, we simply assumed that they were always rigid (i.e., infinitely st
作者: 尊重    時(shí)間: 2025-3-25 03:04

作者: 某人    時(shí)間: 2025-3-25 06:51
Extension and Torsionnd which also apply to many problems of basic science or clinical and industrial importance. Whereas we considered small strains that occur during a simple inflation of a thick-walled tube in the last section of Chap. ., here we consider in some detail small strains associated with axial extension a
作者: magnanimity    時(shí)間: 2025-3-25 09:36
Beam Bending and Column Bucklingn, just as in Chap. ., we will see that the topics herein are essential to the design of many different load cells, which, in turn, are important to many different areas of biomedical engineering, from gait analysis to studying mechanotransduction in cells. As in prior chapters, however, the most im
作者: Incisor    時(shí)間: 2025-3-25 14:52

作者: 切掉    時(shí)間: 2025-3-25 18:40
Coupled Solid–Fluid Problemsg and those due to the flow of blood and bone fluid within the many different canals within the bone; and an atomic force microscopic examination of the mechanics of a cell may primarily reveal the properties of the cortical membrane and underlying solidlike cytoskeleton, but flow of the cytosol lik
作者: Asperity    時(shí)間: 2025-3-25 20:19
Introduction, as the study of the motions experienced by living things in response to applied loads. Herein, however, we consider that . Thus, the domain of biomechanics is very broad. It includes, among many other things, studying the effects of wind loads or gravity on the growth of plants, the mechanical pro
作者: 緩和    時(shí)間: 2025-3-26 01:38
Stress, Strain, and Constitutive Relationserefore neglect. From statics, we know that if these two members are in equilibrium, then ..?. and ..?.. Free-body diagrams of the whole structure and the individual parts reveal that the reaction and internal forces are the same: ..?..?.; that is, from the perspective of statics alone, these two pr
作者: 解脫    時(shí)間: 2025-3-26 06:12
Equilibrium, Universal Solutions, and Inflationn equilibrium, then each of its parts are likewise in equilibrium. Third, there may exist at each point . in a body (cf. Fig. .) nine components of stress, six of which are independent, which we denote as .. relative to the coordinate system of choice. Because stress may vary from point to point wit
作者: Fester    時(shí)間: 2025-3-26 12:27

作者: anatomical    時(shí)間: 2025-3-26 12:43
Beam Bending and Column Bucklingther two is called a . if it is subjected to a tensile axial load, it is called a . if it is subjected to a compressive axial load, it is called a . if it circular in cross section and subjected to a torque, and it is called a . if it is subjected to moments or transverse loads that induce bending.
作者: GENRE    時(shí)間: 2025-3-26 20:04
Some Nonlinear Problemsinders and spheres (see Sects. .–. of Chap. .), all other results for stresses and deformations have been restricted to linear, elastic, homogenous, and isotropic (LEHI) behaviors under small strains. Such results for LEHI behaviors are very important in bone mechanics, many applications involving b
作者: Axillary    時(shí)間: 2025-3-26 23:05
Stress, Motion, and Constitutive Relationsid as any substance that quickly assumes the shape of the container in which it is placed. Regardless of the specific definition, common experience shows that materials in either their liquid or their gaseous phases can fall within the purview of fluid mechanics.
作者: 人類    時(shí)間: 2025-3-27 01:52
Fundamental Balance Relationst in an inertial frame of reference, the time rate of change of the linear momentum .. for a mass particle . must . the forces . that are applied to the particle. For this reason, this “l(fā)aw of motion” is also called the principle (actually postulate) of the balance of linear momentum. Whereas Sir I.
作者: 擦掉    時(shí)間: 2025-3-27 07:25
Some Exact Solutionsn be used to compute the flow of air within the airways, the flow of blood in large vessels at sufficiently high shear rates, the flow of urine from the bladder, the flow of crystalloid perfusates in in vitro experiments, and so on. Because few analytical solutions are available, one must often reso
作者: 現(xiàn)實(shí)    時(shí)間: 2025-3-27 10:59

作者: Pandemic    時(shí)間: 2025-3-27 16:08
Coupled Solid–Fluid Problemsy important in its own right. Whether in the body (in vivo) or in the laboratory (in vitro), however, many “real-life” problems simultaneously involve solid–fluid interactions. For example, although we may seek to determine the stresses in the limbs of a pilot who has ejected from an aircraft, for p
作者: 闡釋    時(shí)間: 2025-3-27 18:33

作者: formula    時(shí)間: 2025-3-28 01:23

作者: concert    時(shí)間: 2025-3-28 04:46

作者: Constant    時(shí)間: 2025-3-28 08:52

作者: Hemoptysis    時(shí)間: 2025-3-28 14:25
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作者: 弄污    時(shí)間: 2025-3-28 16:05
Textbook 20152nd editionThis book covers the fundamentals of biomechanics. Topics include bio solids, biofluids, stress, balance and equilibrium. Students are encouraged to contextualize principles and exercises within a “big picture” of biomechanics. This is an ideal book for undergraduate students with interests in biomedical engineering.
作者: Decrepit    時(shí)間: 2025-3-28 20:23
https://doi.org/10.1007/978-1-4939-2623-7Continuum Mechanics; Equilibrium; Stress; biofluid mechanics; biomechanics; biosolid mechanics; biochemica
作者: LUDE    時(shí)間: 2025-3-29 02:48

作者: 弄皺    時(shí)間: 2025-3-29 04:45
Leistungsbewertung in der Kinderradiologie, as the study of the motions experienced by living things in response to applied loads. Herein, however, we consider that . Thus, the domain of biomechanics is very broad. It includes, among many other things, studying the effects of wind loads or gravity on the growth of plants, the mechanical pro
作者: 革新    時(shí)間: 2025-3-29 07:55
Klaus-Dietrich Ebel,Eberhard Willicherefore neglect. From statics, we know that if these two members are in equilibrium, then ..?. and ..?.. Free-body diagrams of the whole structure and the individual parts reveal that the reaction and internal forces are the same: ..?..?.; that is, from the perspective of statics alone, these two pr
作者: multiply    時(shí)間: 2025-3-29 12:49

作者: 越自我    時(shí)間: 2025-3-29 17:20

作者: intangibility    時(shí)間: 2025-3-29 21:41
Monographien zum Pflanzenschutzther two is called a . if it is subjected to a tensile axial load, it is called a . if it is subjected to a compressive axial load, it is called a . if it circular in cross section and subjected to a torque, and it is called a . if it is subjected to moments or transverse loads that induce bending.
作者: perjury    時(shí)間: 2025-3-30 00:49

作者: 憤憤不平    時(shí)間: 2025-3-30 04:25

作者: 漂亮    時(shí)間: 2025-3-30 11:42
Die Rückgabe Hong Kongs an die VR Chinat in an inertial frame of reference, the time rate of change of the linear momentum .. for a mass particle . must . the forces . that are applied to the particle. For this reason, this “l(fā)aw of motion” is also called the principle (actually postulate) of the balance of linear momentum. Whereas Sir I.
作者: BILIO    時(shí)間: 2025-3-30 12:33
https://doi.org/10.1007/978-3-322-97657-4n be used to compute the flow of air within the airways, the flow of blood in large vessels at sufficiently high shear rates, the flow of urine from the bladder, the flow of crystalloid perfusates in in vitro experiments, and so on. Because few analytical solutions are available, one must often reso
作者: installment    時(shí)間: 2025-3-30 20:26
Die Rückgabe Hong Kongs an die VR Chinare and velocity fields in fluids under various conditions of interest. Solutions of these differential equations allow us to compute values of many important quantities of interest at each point in the flow field at each time. Such detail is often necessary, for example, to compute wall shear stress




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