Theoretical hydromechanics by N. E Kochin

Cover of: Theoretical hydromechanics | N. E Kochin

Published by Interscience in New York .

Written in English

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Subjects:

  • Fluid mechanics.

Edition Notes

Translation of: Teoreticheskaia gidromekhanika, v. 1. 5th Russian ed. 1955.

Book details

Other titlesTeoreticheskaia gidromekhanika.
Statementby N.E. Kochin, I.A. Kibel ̓and N.V. Roze. Translated from the 5th Russian edition by D. Boyanovitch. Edited by J.R.M. Radok.
The Physical Object
Pagination577 p. :
Number of Pages577
ID Numbers
Open LibraryOL20882304M

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Theoretical Hydromechanics Hardcover – Import, by N. Kochin (Author), I. Kibel (Author), N. Roze (Author) & 0 more See all 2 formats and Author: N. Kochin, I. Kibel, N. Roze. texts All Books All Texts latest This Just In Smithsonian Libraries FEDLINK (US) Genealogy Lincoln Collection.

Theoretical hydromechanics by Kochin, N. (Nikolaĭ Evgrafovich), Publication date Topics Fluid mechanics Publisher Pages: Additional Physical Format: Online version: Kochin, N.E.

(Nikolaĭ Evgrafovich), Theoretical hydromechanics. New York, Interscience Publishers, Theoretical hydromechanics, by N.E. Kochin, I.A. Kibel,́ and N.V. Roze. Translated from the fifth Russian ed. by D. Boyanovitch.

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Nikolai Evgrafovoch Kochin (Russian: николай евграфович кочин) (St Petersburg – DecemMoscow) was a Russian and Soviet mathematician specialising in applied mathematics, and especially fluid and gas mechanics. Each principal part of a vessel's construction is explained, the book can be used for reference purposes.

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Oblique penetration of a rigid projectile into an elastic-plastic target that the equations of motion of the projectile become MJtc = F, Jc~ = Tc, (a, b) where M is the constant mass of the projectile, Jc is the constant moment of inertia (about the point C) associated with rotations in the impact plane, F is the resultant force and Tc Cited by: Offshore Hydromechanics includes the following modules: 1.

Hydrostatics, static floating stability, constant 2-D potential flow of ideal fluids, and flows in real fluids. Fluid mechanics is the branch of physics concerned with the mechanics of fluids (liquids, gases, and plasmas) and the forces on them.: 3 It has applications in a wide range of disciplines, including mechanical, civil, chemical and biomedical engineering, geophysics, oceanography, meteorology, astrophysics, and biology.

It can be divided into fluid statics, the study of fluids at. Hydromechanics; theory and fundamentals. Sinaiski, Emmanuil G. Wiley-VCH pages $ Hardcover QC Sinaiski (petroleum engineering, Gubkin-State U. of Oil and Gas, Moscow) discusses theoretical fundamentals of hydrodynamics as a branch of continuum mechanics, which deals with the movement of deformed gaseous.

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