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Ultrasound and elastic waves[electro...
~
Lempriere, Brian M.
Ultrasound and elastic waves[electronic resource] :frequently asked questions /
紀錄類型:
書目-語言資料,印刷品 : Monograph/item
杜威分類號:
620.2/8
書名/作者:
Ultrasound and elastic waves : frequently asked questions // Brian M. Lempriere.
作者:
Lempriere, Brian M.
出版者:
Amsterdam ; : Academic Press,, c2002.
面頁冊數:
1 online resource (xxi, 241 p.) : : ill.
標題:
Ultrasonic waves.
標題:
Elastic waves.
ISBN:
9780124433458
ISBN:
0124433456
書目註:
Includes bibliographical references (p. 229-230) and index.
內容註:
Definitions and background -- Wave propagation concepts -- Wave interactions -- Hardware : equipment concepts -- Software : data processing -- Stress, strain, and elasticity (also vectors and tensors) -- The generalized Hooke's Law -- States of stress or strain in waves -- Balance of forces and Newton's law of inertia -- Theory of wave propagation -- Solutions to the wave equations -- Dispersion, group velocity -- Transducer beam forming -- Solutions for anisotropy -- Oblique interactions between waves and boundaries -- Lateral stress and strain in rods under axial loads -- Bending waves in beams and plates -- Time-domain analysis.
摘要、提要註:
Ultrasound has found an increasing number of applications in recent years due to greatly increased computing power. Ultrasound devices are often preferred over other devices because of their lower cost, portability, and non-invasive nature. Patients using ultrasound can avoid the dangers of radiological imaging devices such as x-rays, CT scans, and radioactive media injections. Ultrasound is also a preferred and practical method of detecting material fatique and defects in metals, composites, semiconductors, wood, etc. Detailed appendices contain useful formulas and their derivations, technical details of relevant theories The FAQ format is used where a concept in one answer leads to a new Q & A.
電子資源:
http://www.sciencedirect.com/science/book/9780124433458
Ultrasound and elastic waves[electronic resource] :frequently asked questions /
Lempriere, Brian M.
Ultrasound and elastic waves
frequently asked questions /[electronic resource] :Brian M. Lempriere. - Amsterdam ;Academic Press,c2002. - 1 online resource (xxi, 241 p.) :ill.
Includes bibliographical references (p. 229-230) and index.
Definitions and background -- Wave propagation concepts -- Wave interactions -- Hardware : equipment concepts -- Software : data processing -- Stress, strain, and elasticity (also vectors and tensors) -- The generalized Hooke's Law -- States of stress or strain in waves -- Balance of forces and Newton's law of inertia -- Theory of wave propagation -- Solutions to the wave equations -- Dispersion, group velocity -- Transducer beam forming -- Solutions for anisotropy -- Oblique interactions between waves and boundaries -- Lateral stress and strain in rods under axial loads -- Bending waves in beams and plates -- Time-domain analysis.
Ultrasound has found an increasing number of applications in recent years due to greatly increased computing power. Ultrasound devices are often preferred over other devices because of their lower cost, portability, and non-invasive nature. Patients using ultrasound can avoid the dangers of radiological imaging devices such as x-rays, CT scans, and radioactive media injections. Ultrasound is also a preferred and practical method of detecting material fatique and defects in metals, composites, semiconductors, wood, etc. Detailed appendices contain useful formulas and their derivations, technical details of relevant theories The FAQ format is used where a concept in one answer leads to a new Q & A.
ISBN: 9780124433458
Source: 90502:90502Elsevier Science & Technologyhttp://www.sciencedirect.comSubjects--Topical Terms:
486480
Ultrasonic waves.
Index Terms--Genre/Form:
336502
Electronic books.
LC Class. No.: QC244 / .L45 2002eb
Dewey Class. No.: 620.2/8
Ultrasound and elastic waves[electronic resource] :frequently asked questions /
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frequently asked questions /
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Includes bibliographical references (p. 229-230) and index.
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Definitions and background -- Wave propagation concepts -- Wave interactions -- Hardware : equipment concepts -- Software : data processing -- Stress, strain, and elasticity (also vectors and tensors) -- The generalized Hooke's Law -- States of stress or strain in waves -- Balance of forces and Newton's law of inertia -- Theory of wave propagation -- Solutions to the wave equations -- Dispersion, group velocity -- Transducer beam forming -- Solutions for anisotropy -- Oblique interactions between waves and boundaries -- Lateral stress and strain in rods under axial loads -- Bending waves in beams and plates -- Time-domain analysis.
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Ultrasound has found an increasing number of applications in recent years due to greatly increased computing power. Ultrasound devices are often preferred over other devices because of their lower cost, portability, and non-invasive nature. Patients using ultrasound can avoid the dangers of radiological imaging devices such as x-rays, CT scans, and radioactive media injections. Ultrasound is also a preferred and practical method of detecting material fatique and defects in metals, composites, semiconductors, wood, etc. Detailed appendices contain useful formulas and their derivations, technical details of relevant theories The FAQ format is used where a concept in one answer leads to a new Q & A.
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Ultrasonic waves.
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