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Isolated n = 1 Polytrope
γ
g
=
(
n
+
1
)
/
n
=
2
γ
g
=
5
3
Key Reference(s):
📚
Chatterji (1951)
Relevant Chapters:
Isolated n = 1 Polytrope
Origin of Planetary Nebulae
Isolated n = 3 Polytrope
γ
g
=
2
0
1
3
Key Reference(s):
📚
Schwarzschild (1941)
Relevant Chapters:
Radial Oscillations of n = 3 Polytropic Spheres
Origin of Planetary Nebulae
Pressure-Truncated n = 5 Polytrope
γ
g
=
(
n
+
1
)
/
n
=
6
5
Key Reference(s):
n/a
Relevant Chapters:
Radial Oscillations of n = 5 Polytropic Spheres
Origin of Planetary Nebulae
Pressure-Truncated Isothermal (n = ∞) Sphere
γ
g
=
1
Key Reference(s):
📚
Yabushita (1968)
📚
Taff, & van Horn (1974)
Relevant Chapters:
Radial Oscillations of Isothermal Spheres
Origin of Planetary Nebulae
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