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Black holes / Magnetohydrodynamics / Aerodynamics / Astrophysics / Accretion disc / Magnetorotational instability / Eddington luminosity / Turbulence / Magnetohydrodynamic turbulence / Physics / Fluid dynamics / Fluid mechanics


Instability, turbulence, and enhanced transport in accretion disks Steven A. Balbus and John F. Hawley Virginia Institute of Theoretical Astronomy, Department of Astronomy,
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Document Date: 2007-01-25 14:57:03


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Charlottesville / /

Company

Kraft / CVs / The American Physical Society 1 2 S. A. / GM / Cabot / /

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pence / USD / /

Facility

University of Virginia / John F. Hawley Virginia Institute of Theoretical Astronomy / Leiden Observatory / /

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binary star systems / contact binary systems / Mechanical energy / internal energy balance / final energy equation / mechanical energy conservation / energy transport / energy equation / orbital kinetic energy / high-energy phenomenology / free energy / chemical composition / astrophysical applications / gravitational binding energy / energy flux divergence / energy flux / mechanical energy loss / radiative energy flux / Internal energy / mechanical energy equation / overall energy conservation / dot product / energy equations / turbulent gas / opacity law / gas disk / local energy conservation / eruptive binary systems / binary systems / magnetic and mechanical energy / radial energy flux / isothermal gas / gas cloud / energy / /

Organization

University of Virginia / American Physical Society / National Aeronautics and Space Administration / U.S. Securities and Exchange Commission / Department of Astronomy / John F. Hawley Virginia Institute of Theoretical Astronomy / /

Person

John F. Hawley / Osborne Reynolds / Steven A. Balbus / Frank / /

Position

King / disk/black-hole model / representative / /

Product

Eq / M-16 / /

ProvinceOrState

Virginia / /

PublishedMedium

Reviews of Modern Physics / /

Technology

radiation / x-ray / simulation / /

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