Results 221 to 230 of about 102,261 (262)
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On the Derivation of Equations of Motion
Journal of the Society for Industrial and Applied Mathematics, 1965Kane, T. R., Wang, C. F.
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1999
In this chapter, we introduce, with particular reference to the incompressible case, the general system of Navier-Stokes equations. They are capable of describing most phenomena observed in fluid mechanics, including turbulence which is the major issue of this book. However, this system of equations is an approximation which is produced on the basis of
openaire +1 more source
In this chapter, we introduce, with particular reference to the incompressible case, the general system of Navier-Stokes equations. They are capable of describing most phenomena observed in fluid mechanics, including turbulence which is the major issue of this book. However, this system of equations is an approximation which is produced on the basis of
openaire +1 more source
Pure low-frequency and pure high-frequency ship motion equations in regular waves
Ocean Engineering, 2021Xuemin Song, Zuyuan Liu
exaly
Ground-Motion Prediction Equations Based on Data from the Himalayan and Zagros Regions
Journal of Earthquake Engineering, 2009Hilmar Bungum +2 more
exaly
Lyapunov-type conditions and stochastic differential equations driven by G-Brownian motion
Journal of Mathematical Analysis and Applications, 2016Xiangyun Lin, Yiqing Lin
exaly
A comparison of Kane’s equations of motion and the Gibbs–Appell equations of motion
American Journal of Physics, 1986Desloge Edward A
exaly
Deriving the equations of motion for porous isotropic media
Journal of the Acoustical Society of America, 1992Steve Pride
exaly
Noether’s theorem, time‐dependent invariants and nonlinear equations of motion
Journal of Mathematical Physics, 1979Ray John R
exaly

