Treatise on Natural Philosophy, Volume 1, Part 1At the University Press, 1879 - Mechanics, Analytic |
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Page xii
... Kinetic Energy - Particle and Point - Inertia . Force - Specification of a Force - Place of Application - Direc- tion - Magnitude - Accelerative Effect - Measure of Force Standards of Weight are Masses , and not primarily intended for ...
... Kinetic Energy - Particle and Point - Inertia . Force - Specification of a Force - Place of Application - Direc- tion - Magnitude - Accelerative Effect - Measure of Force Standards of Weight are Masses , and not primarily intended for ...
Page xiii
... Energy . • 275-277 . 278 , 279 Kinetic Energy of a System - Moment of Inertia - Moment of Momentum of a Rotating Rigid Body - Radius of Gyration -Fly - wheel - Moment of Inertia about any Axis · Momental Ellipsoid - Equilibration of ...
... Energy . • 275-277 . 278 , 279 Kinetic Energy of a System - Moment of Inertia - Moment of Momentum of a Rotating Rigid Body - Radius of Gyration -Fly - wheel - Moment of Inertia about any Axis · Momental Ellipsoid - Equilibration of ...
Page xiv
... Energy - Space Average of Momentums - Least Action- Principle of Least ... Kinetic and Potential Energies --Integrated Equations of Motion , expressing ... Kinetic Energies expressed as Functions of Time- Example of Fundamental Modes ...
... Energy - Space Average of Momentums - Least Action- Principle of Least ... Kinetic and Potential Energies --Integrated Equations of Motion , expressing ... Kinetic Energies expressed as Functions of Time- Example of Fundamental Modes ...
Page xv
... Kinetic Energy - Of Potential Energy - Infinitesimal Motions in neighbourhood of Configuration of Unstable Equilibrium Case of Equality among Periods - Graphic Representation- Dissipative Systems - Views of Stokes on Resistance to a ...
... Kinetic Energy - Of Potential Energy - Infinitesimal Motions in neighbourhood of Configuration of Unstable Equilibrium Case of Equality among Periods - Graphic Representation- Dissipative Systems - Views of Stokes on Resistance to a ...
Page 221
... of radius R. Generally ( § 29 ) , for a body of mass M moving anyhow in space there is change of momentum , at the rate , M d's in the direc- dt v2 Rate of change of momentum . Kinetic energy . 209. ] 221 DYNAMICAL LAWS AND PRINCIPLES .
... of radius R. Generally ( § 29 ) , for a body of mass M moving anyhow in space there is change of momentum , at the rate , M d's in the direc- dt v2 Rate of change of momentum . Kinetic energy . 209. ] 221 DYNAMICAL LAWS AND PRINCIPLES .
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Common terms and phrases
acceleration action algebraic altered angular velocity anticlastic application axis Cambridge centre of inertia circle co-ordinates coefficients component condition configuration constant corresponding course curvature curve cycloidal cylinder denote determined differential equation direction cosines displacement distance dt dt dx dy dy dy dy dz ellipsoid elongation equal equations of motion equilibrium expression finite fixed force formula function geometrical given gyrostatic harmonic motions Hence impulse infinitely small instant integral kinetic energy length linear momentum moving negative osculating plane P₁ parallel particle perpendicular polygon position principal axes quadratic quadratic function quantity radius ratio rectangular resultant right angles rigid body rolling roots rotation round shear simple harmonic simple harmonic motions solution spherical harmonic spherical surface St John's College strain suppose tangent plane theorem tion values whole Y₁ λ² аф
Popular passages
Page 241 - Every body continues in its state of rest or of uniform motion in a straight line, except in so far as it may be compelled by impressed forces to change that state.