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==Context== | ==Context== | ||
<ol type="I"> | <ol type="I"> | ||
<li>[[PGE|Principal Governing Equations]] (PGEs) | <li><font color="pink">♣</font> [[PGE|Principal Governing Equations]] (PGEs) | ||
<ol type="A"> | <ol type="A"> | ||
<li>[[Cylindrical3D|Equations Cast in Cylindrical Coordinates]]</li> | <li><font color="pink">♣</font> [[Cylindrical3D|Equations Cast in Cylindrical Coordinates]]</li> | ||
</ol> | </ol> | ||
</li> | </li> | ||
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=See Also= | =See Also= | ||
<ul> | <ul> | ||
<li><font color=" | <li><font color="pink">♣</font> Means templates and references to other chapters have been checked for completeness.</li> | ||
</ul> | </ul> | ||
Revision as of 20:45, 15 December 2023
Primary (Tiled Menu) Chapters
Context
- ♣ Principal Governing Equations (PGEs)
- Continuity
- Euler
- Axisymmetric Configurations (Solution Strategies); Double check vector identities ♣
-
Rotating Reference Frame; Euler equation viewed from a rotating frame of reference
- Compressible Analogs of Riemann S-Type Ellipsoids; Nonlinear velocity cross-product ♣
- Korycansky and Papaloizou (1996); Nonlinear velocity cross-product
- Euler Equation (Conserving Momentum); Earlier draft of "Euler" presentation
- 1st Law of Thermodynamics
- Radiation-Hydrodynamcis; Nonadiabatic (optically thick) environments ♣
- Poisson
- Global Energy Considerations
- Virial Equilibrium of Spherically Symmetric Configurations; Illustration ♣
- Equation of State (EOS)
- Axisymmetric Instabilities to Avoid; Poincaré-Wavre theorem
- Axisymmetric Configurations (Solution Strategies); Simple rotation profiles ♣
- BiPolytrope with ; The parameter, β ♣
- Ideal Gas
- Total Pressure
- Determining Temperature from Density & Pressure; A solution to quartic equation
- Bond, Arnett, & Carr (1984)
- Spherically Symmetric Configurations (Stability — Part II); Ledoux and Pekeris (1941) ♣
See Also
- ♣ Means templates and references to other chapters have been checked for completeness.