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1.

図書

図書
Sir James Lighthill
出版情報: Wien ; New York : Springer, c1972  58 p. ; 24 cm
シリーズ名: CISM courses and lectures ; no. 111
2.

図書

図書
by M.J. Lighthill
出版情報: Cambridge [Cambridgeshire] : Cambridge University Press, 1958  viii, 79 p. ; 22 cm
シリーズ名: Cambridge monographs on mechanics and applied mathematics
目次情報: 続きを見る
Introduction / 1:
The theory of generalised functions and their Fourier transforms / 2:
Definitions, properties and Fourier transforms of particular generalised functions / 3:
The asymptotic estimation of Fourier transforms / 4:
Fourier series / 5:
Index
Introduction / 1:
The theory of generalised functions and their Fourier transforms / 2:
Definitions, properties and Fourier transforms of particular generalised functions / 3:
3.

図書

図書
Sir James Lighthill
出版情報: Philadelphia : Society for Industrial and Applied Mathematics, c1975  ix, 281 p. ; 26 cm
シリーズ名: CBMS-NSF regional conference series in applied mathematics ; 17
目次情報: 続きを見る
Introduction to biofluiddynamics
Hydromechanics of aquatic animal propulsion: A survey
Mathematics of aquatic animal locomotion at low Reynolds number
Aquatic animal propulsion of high hydromechanical efficiency
Large-amplitude elongated-body theory of fish locomotion
Aquatic animal locomotion
A survey of recent theoretical developments
Some current investigations of aquatic animal motions
Animal flight
On the Weis-Fogh mechanism of lift generation
Physiological fluid dynamics: A general survey
Respiratory flow patterns
Pulse propagation theory
Blood flow and arterial disease
The microcirculation
Introduction to biofluiddynamics
Hydromechanics of aquatic animal propulsion: A survey
Mathematics of aquatic animal locomotion at low Reynolds number
4.

図書

図書
M.J.ライトヒル著 ; 高見頴郎訳
出版情報: 東京 : ダイヤモンド社, 1975.7  iii, 134p ; 21cm
5.

図書

図書
James Lighthill
出版情報: Cambridge [Eng.] ; New York : Cambridge University Press, 1978  xv, 504 p. ; 24 cm
シリーズ名: Cambridge monographs on mechanics and applied mathematics
目次情報: 続きを見る
Preface
Prologue
Sound waves / Chapter 1.:
The wave equation / 1.1:
The speed of sound / 1.2:
Acoustic energy and intensity / 1.3:
The simple source / 1.4:
The acoustic dipole / 1.5:
Compact source regions in general / 1.6:
Compact source regions with dipole far fields / 1.7:
Ripple-tank simulations / 1.8:
Scattering by compact bodies / 1.9:
Quadrupole radiation / 1.10:
Radiation from spheres / 1.11:
Radiation from plane walls / 1.12:
Dissipation of acoustic energy / 1.13:
Exercises on chapter 1
One-dimensional waves in fluids / Chapter 2.:
Longitudinal waves in tubes and channels / 2.1:
Examples, including elastic tubes and open channels / 2.2:
Transmission of waves through junctions / 2.3:
Propagation through branching systems / 2.4:
Cavities, constrictions, resonators / 2.5:
Linear propagation with gradually varying composition and cross-section / 2.6:
Frictional attenuation / 2.7:
Nonlinear theory of plane waves / 2.8:
Simple waves / 2.9:
Shock waves / 2.10:
Theory of simple waves incorporating weak shock waves / 2.11:
Hydraulic jumps / 2.12:
Nonlinear propagation with gradually varying composition and cross-section / 2.13:
Nonlinear geometrical acoustics / 2.14:
Exercises on chapter 2
Water waves / Chapter 3.:
Surface gravity waves / 3.1:
Sinusoidal waves on deep water / 3.2:
Sinusoidal waves on water of arbitrary, but uniform, depth / 3.3:
Ripples / 3.4:
Attenuation / 3.5:
Introduction to group velocity / 3.6:
The Fourier analysis of dispersive systems / 3.7:
Energy propagation velocity / 3.8:
Wave patterns made by obstacles in a steady stream / 3.9:
Ship waves / 3.10:
Exercises on chapter 3
Internal waves / Chapter 4.:
Introduction to internal gravity waves / 4.1:
Combined theory of sound and internal waves / 4.2:
Internal waves in the ocean and in the atmosphere / 4.3:
Introduction to anisotropic dispersion / 4.4:
General theory of ray tracing / 4.5:
Ray tracing in a wind / 4.6:
Steady streaming generated by wave attenuation / 4.7:
Stationary phase in three dimensions / 4.8:
General theory of oscillating sources of waves / 4.9:
Internal waves generated by an oscillating source / 4.10:
Caustics / 4.11:
Wave generation by travelling forcing effects / 4.12:
Waveguides / 4.13:
Exercises on chapter 4
Epilogue
A variety of waves in fluids / Part 1:
Nonlinear effects on dispersive wave propagation / Part 2:
Bibliography (indexed as pages A to Q)
Some basic texts
Acoustic literature
Water-wave literature / Part 3:
Stratified-fluids literature / Part 4:
A bibliography for the epilogue / Part 5:
Notation list
Author index
Subject index
Preface
Prologue
Sound waves / Chapter 1.:
6.

図書

図書
James Lighthill
出版情報: Cambridge [Eng.] ; New York : Cambridge University Press, 1978  xv, 504 p. ; 24 cm
目次情報: 続きを見る
Preface
Prologue
Sound waves / Chapter 1.:
The wave equation / 1.1:
The speed of sound / 1.2:
Acoustic energy and intensity / 1.3:
The simple source / 1.4:
The acoustic dipole / 1.5:
Compact source regions in general / 1.6:
Compact source regions with dipole far fields / 1.7:
Ripple-tank simulations / 1.8:
Scattering by compact bodies / 1.9:
Quadrupole radiation / 1.10:
Radiation from spheres / 1.11:
Radiation from plane walls / 1.12:
Dissipation of acoustic energy / 1.13:
Exercises on chapter 1
One-dimensional waves in fluids / Chapter 2.:
Longitudinal waves in tubes and channels / 2.1:
Examples, including elastic tubes and open channels / 2.2:
Transmission of waves through junctions / 2.3:
Propagation through branching systems / 2.4:
Cavities, constrictions, resonators / 2.5:
Linear propagation with gradually varying composition and cross-section / 2.6:
Frictional attenuation / 2.7:
Nonlinear theory of plane waves / 2.8:
Simple waves / 2.9:
Shock waves / 2.10:
Theory of simple waves incorporating weak shock waves / 2.11:
Hydraulic jumps / 2.12:
Nonlinear propagation with gradually varying composition and cross-section / 2.13:
Nonlinear geometrical acoustics / 2.14:
Exercises on chapter 2
Water waves / Chapter 3.:
Surface gravity waves / 3.1:
Sinusoidal waves on deep water / 3.2:
Sinusoidal waves on water of arbitrary, but uniform, depth / 3.3:
Ripples / 3.4:
Attenuation / 3.5:
Introduction to group velocity / 3.6:
The Fourier analysis of dispersive systems / 3.7:
Energy propagation velocity / 3.8:
Wave patterns made by obstacles in a steady stream / 3.9:
Ship waves / 3.10:
Exercises on chapter 3
Internal waves / Chapter 4.:
Introduction to internal gravity waves / 4.1:
Combined theory of sound and internal waves / 4.2:
Internal waves in the ocean and in the atmosphere / 4.3:
Introduction to anisotropic dispersion / 4.4:
General theory of ray tracing / 4.5:
Ray tracing in a wind / 4.6:
Steady streaming generated by wave attenuation / 4.7:
Stationary phase in three dimensions / 4.8:
General theory of oscillating sources of waves / 4.9:
Internal waves generated by an oscillating source / 4.10:
Caustics / 4.11:
Wave generation by travelling forcing effects / 4.12:
Waveguides / 4.13:
Exercises on chapter 4
Epilogue
A variety of waves in fluids / Part 1:
Nonlinear effects on dispersive wave propagation / Part 2:
Bibliography (indexed as pages A to Q)
Some basic texts
Acoustic literature
Water-wave literature / Part 3:
Stratified-fluids literature / Part 4:
A bibliography for the epilogue / Part 5:
Notation list
Author index
Subject index
Preface
Prologue
Sound waves / Chapter 1.:
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