A Treatise on Hydromechanics: Part I. Hydrostatics, Part 1 |
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action Ęschylus angular velocity attraction axes axis vertical body centre of gravity centre of pressure co-ordinates cone constant cos² Crown 8vo curvature curved surface cylinder density depth determine displaced fluid distance dy dx equal pressure equation equilibrium equilibrium is stable F. A. Paley Fcap film floats fluid displaced fluid pressure force free surface given homogeneous liquid horizontal hyperbola immersed lamina latus rectum mercury metacentre obtain oscillation parabola paraboloid parallel particles perfect differential perpendicular plane of floatation portion position of equilibrium prove quantity radius ratio resultant pressure rotation shew sin² solid solid of revolution sphere spherical spheroid supposed surface of revolution surfaces of equal tangent temperature vapour varies vertex vertical angle vertical plane vessel volume weight whole pressure λ²