phenomenon 31.55 Drag, and the failure of ideal flow

open in the book · parts/03-classical-mechanics/14-fluid-dynamics.tex:1700 · p. 1061

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phenomenon 31.55: Drag, and the failure of ideal flow31.55phenomenon 31.30: Steady ideal flow exerts no drag31.30phenomenon 31.45: Stokes drag on a sphere31.45remark 31.57: The measured curve as the chapter's running test31.57remark 31.56: What of the drag curve is owed, and where it is paid31.56proof : ch:14-fluid-dynamics@proof-26proofremark 31.31: Two escapes, and only two31.31theorem 31.71: Boundary-layer thickness31.71proof : ch:14-fluid-dynamics@proof-15proofproof : ch:14-fluid-dynamics@prooflink-1proofexample 31.46: Terminal velocity, and Millikan's droplets31.46remark 31.47: The Oseen correction, and why the obvious expansion fails31.47proof : ch:14-fluid-dynamics@proof-23proofproof : ch:14-fluid-dynamics@prooflink-2proofproposition 31.73: Separation requires an adverse pressure gradient31.73

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typedirectionnode provenancewhere
cites (evidence) Sur la résistance des sphères dans l'air en mouvement derived parts/03-classical-mechanics/14-fluid-dynamics.tex:1716
cites (evidence) On the Effect of the Internal Friction of Fluids on the Motion of Pendulums derived parts/03-classical-mechanics/14-fluid-dynamics.tex:1712
depends_on Steady ideal flow exerts no drag declared parts/03-classical-mechanics/14-fluid-dynamics.tex:1717
depends_on Stokes drag on a sphere declared parts/03-classical-mechanics/14-fluid-dynamics.tex:1717
depends_on The measured curve as the chapter's running test declared parts/03-classical-mechanics/14-fluid-dynamics.tex:1810
depends_on What of the drag curve is owed, and where it is paid declared parts/03-classical-mechanics/14-fluid-dynamics.tex:1789
proves ch:14-fluid-dynamics@proof-26 declared parts/03-classical-mechanics/14-fluid-dynamics.tex:1720