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Source: The Open Library
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1EUVE spectroscopy of the accretion region in AM Herculis
By Frederik Paerels
“EUVE spectroscopy of the accretion region in AM Herculis” Metadata:
- Title: ➤ EUVE spectroscopy of the accretion region in AM Herculis
- Author: Frederik Paerels
- Language: English
- Publisher: ➤ National Aeronautics and Space Administration - National Technical Information Service, distributor
- Publish Date: 1997
- Publish Location: ➤ [Springfield, Va - [Washington, DC]
“EUVE spectroscopy of the accretion region in AM Herculis” Subjects and Themes:
- Subjects: ➤ Gravitational binding energy - Photosphere - White dwarf stars - Stellar spectra - Energy conversion - Cataclysmic variables
Edition Identifiers:
- The Open Library ID: OL15506875M
Access and General Info:
- First Year Published: 1997
- Is Full Text Available: No
- Is The Book Public: No
- Access Status: No_ebook
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Wiki
Source: Wikipedia
Wikipedia Results
Search Results from Wikipedia
Gravitational binding energy
gravitational binding energy of a system is the minimum energy which must be added to it in order for the system to cease being in a gravitationally bound
Gravitational energy
Gravitational energy or gravitational potential energy is the potential energy an object with mass has due to the gravitational potential of its position
Potential energy
potential energy; work of the gravitational force is called gravitational potential energy; work of the Coulomb force is called electric potential energy; work
Binding energy
In physics and chemistry, binding energy is the smallest amount of energy required to remove a particle from a system of particles or to disassemble a
Orders of magnitude (energy)
(2×pi/(23.9345 hour period × 3600 seconds/hour))2 = 2.1×1029 J "gravitational binding energy calculator - Wolfram|Alpha". www.wolframalpha.com. Retrieved
Nuclear binding energy
Nuclear binding energy in experimental physics is the minimum energy that is required to disassemble the nucleus of an atom into its constituent protons
Neutron star
law of mass–energy equivalence, E = mc2). The energy comes from the gravitational binding energy of a neutron star. Hence, the gravitational field of a
List of mathematical topics in classical mechanics
N-body problem Kolmogorov-Arnold-Moser theorem Virial theorem Gravitational binding energy Speed of gravity Newtonian limit Hill sphere Roche lobe Roche
Outline of energy
energy – thermal energy extracted from the Earth's crust Gravitational energy – energy from gravitational fields Ionization energy – energy that binds an
Le Sage's theory of gravitation
rapidly, the gravitation of that gas increases. Moreover, Lunar Laser Ranging experiments have shown that even gravitational binding energy itself also