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Fluid Mechanics : Volume 6.

Detalles Bibliográficos
Clasificación:Libro Electrónico
Autor principal: Landau, L. D. (Lev Davidovich), 1908-1968
Otros Autores: Lifshit͡s, E. M. (Evgeniĭ Mikhaĭlovich)
Formato: Electrónico eBook
Idioma:Inglés
Publicado: Elsevier Science, 1987.
Edición:2nd ed.
Temas:
Acceso en línea:Texto completo

MARC

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100 1 |a Landau, L. D.  |q (Lev Davidovich),  |d 1908-1968. 
245 1 0 |a Fluid Mechanics :  |b Volume 6. 
250 |a 2nd ed. 
260 |b Elsevier Science,  |c 1987. 
300 |a 1 online resource (556 pages) 
336 |a text  |b txt  |2 rdacontent 
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505 0 |a Front Cover ; Course of Theoretical Physics; Copyright Page; Tabel of Contents ; PREFACE TO THE SECOND ENGLISH EDITION; PREFACE TO THE FIRST ENGLISH EDITION; EVGENIĬ MIKHAĬLOVICH LIFSHITZ (1915-1985); NOTATION; CHAPTER I. IDEAL FLUIDS; 1. The equation of continuity; 2. Euler""s equation; 3. Hydrostatics; 4. The condition that convection be absent; 5. Bernoulli's equation; 6. The energy flux; 7. Tbe momentum flux; 8. The conservation of circulation; 9. Potential flow; 10. Incompressible fluids; 11. The drag force in potential flow past a body; 12. Gravity waves. 
505 8 |a 13. Internal waves in an incompressible fluid14. Waves in a rotating fluid; CHAPTER II. VISCOUS FLUIDS; 1.5. The equations of motion of a viscous fluid; 16. Energy dissipation in an incompressible fluid; 17. Flow in a pipe; 18. Flow between rotating cylinders; 19. The law of similarity; 20. Flow with small Reynolds numbers; 21. The laminar wake; 22. The viscosity of suspensions; 23. Exact solutions of the equations of motion for a viscous fluid; 24. Oscillatory motion in a fiscous fluid; 25. Damping of gravity waves; CHAPTER III. TURBULENCE; 26. Stability of steady flow. 
505 8 |a 27. Stability of rotary flow28. Stability of flow in a pipe; 29. Instability of tangential discontinuities; 30. Quasi-periodic flow and frequency locking; 31. Str'ange attractors; 32. Transition to turbulence by period doubling; 33. Fully developed turbulence; 34. The velocity correlation functions; 35. The turbulent region and the phenomenon of separation; 36. The turbulent jet; 37. The turbulent wake; 38. Zhukovskiĭs theorem; CHAPTER IV. BOUNDARY LAYERS; 39. The laminar boundary layer; 40. Flow near the line of separation; 41. Stability of flow in the laminar boundary layer. 
505 8 |a 42. The logarithmic velocity profile43. Turbulent flow in pipes; 44. The turbulent boundary layer; 45. The drag crisis; 46. Flow past streamlined bodies; 47. Induced drag; 48. The lift of a thin wing; CHAPTER V. THERMAL CONDUCTION IN FLUIDS; 49. The general equation of heat transfer; 50. Thermal conduction in an incompressible fluid; 51. Thermal conduction in an infinite medium; 52. Thermal conduction in a finite medium; 53. The similarity law for heat transfer; 54. Heat transfer in a boundary layer; 55. Heating of a body in a moving fluid; 56. Free convection. 
505 8 |a 57. Convective instability of a fluid at restCHAPTER VI. DIFFUSION; 58. The equations of fluid dynamics for a mixture of fluids; 59. Coefficients of mass transfer and thermal diffusion; 60. Diffusion or particles suspended in a fluid; CHAPTER VII. SURFACE PHENOMENA; 61. Laplace's formula; 62. Capillary waves; 63. The effect of adsorbed films on the motion of a liquid; CHAPTER VIII. SOUND; 64. Sound waves; 65. The energy and momentum of sound waves; 66. Reflection and refraction of sound waves; 67. Geometrical acoustics; 68. Propagation of sound in a moving medium. 
500 |a 69. Characteristic vibrations. 
590 |a Knovel  |b ACADEMIC - General Engineering & Project Administration 
650 0 |a Fluid mechanics. 
650 6 |a Mécanique des fluides. 
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650 7 |a Fluid mechanics.  |2 fast  |0 (OCoLC)fst00927999 
700 1 |a Lifshit͡s, E. M.  |q (Evgeniĭ Mikhaĭlovich) 
776 0 8 |i Print version:  |a Landau, L D.  |t Fluid Mechanics : Volume 6.  |d : Elsevier Science, ©1987  |z 9780750627672 
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