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Mechanics of Swimming and Flying (Cambridge Studies in Mathematical Biology) [Hardcover]

Stephen Childress (Author)


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Book Description

July 31, 1981 0521236134 978-0521236133 1
This book provides a clear and concise summary of the fluid dynamics of the locomotion of living organisms. The biological phenomena described in detail range from the swimming of bacteria and fish to the flying of insects and birds. The breadth of treatment requires the study of two basic fluid-dynamical regimes. In the first case, that of small organisms, the viscosity of the fluid is paramount in deciding the most effective swimming strategy. However, for larger insects, birds, and most fish, the viscosity of the air or water may be treated as if it were zero, and resulting mechanisms of propulsion are very different. Both these types are studied, with emphasis on the unsteady character of natural movements. Written for the advanced student, this volume assumes familiarity with basic fluid mechanics, although some elementary topics are included. It will be readily accessible to students of applied mathematics and biologists who have engineering or physics backgrounds.

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Book Description

Provides a summary of the fluid dynamics of the locomotion of living organisms. Describes biological phenomena in detail from the swimming of bacteria and fish to the flying of insects and birds.

Product Details

  • Hardcover: 176 pages
  • Publisher: Cambridge University Press; 1 edition (July 31, 1981)
  • Language: English
  • ISBN-10: 0521236134
  • ISBN-13: 978-0521236133
  • Product Dimensions: 8.5 x 5.4 x 0.8 inches
  • Shipping Weight: 13.3 ounces

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Key Phrases - Statistically Improbable Phrases (SIPs): (learn more)
resistive force theory, ciliary propulsion, bound vorticity, free vorticity, flagellar propulsion, helical waves, comoving observer, fin edge, slender fish, envelope model, single cilium, vortex force, dynamical balance, swimming velocity, comoving frame, induced drag, swimming speed, vortex sheet, caudal fin, flapping flight, effective stroke, vortex flow, wave riding
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