Proceedings of the International School of Physics "Enrico Fermi.", Volume 65N. Zanichelli, 1978 - Nuclear physics |
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Page 45
The star can be in a hydrostatic equilibrium in the corotating frame . The equation
of hydrostatic equilibrium is VP = - Vy . From this equation it follows that , at every
point , the normal to the equipotential surface is parallel to the normal to the ...
The star can be in a hydrostatic equilibrium in the corotating frame . The equation
of hydrostatic equilibrium is VP = - Vy . From this equation it follows that , at every
point , the normal to the equipotential surface is parallel to the normal to the ...
Page 46
Consider an equipotential surface which , on the one hand , is deep enough in
the star so that radiative equilibrium is satisfied , but , on the other hand , is close
enough to the photosphere so that at every point the distance from it to the ...
Consider an equipotential surface which , on the one hand , is deep enough in
the star so that radiative equilibrium is satisfied , but , on the other hand , is close
enough to the photosphere so that at every point the distance from it to the ...
Page 698
Let us consider the gas freely falling on the surface of the star. If the kinetic
energy of protons mv »?f/2 is converted after the impact (in the shock wave) into
the thermal energy of photons and electrons 3kT, then accreting particles could
heat up ...
Let us consider the gas freely falling on the surface of the star. If the kinetic
energy of protons mv »?f/2 is converted after the impact (in the shock wave) into
the thermal energy of photons and electrons 3kT, then accreting particles could
heat up ...
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Contents
Why are the stars as they are? | 1 |
Krzeminskis StarCen | 5 |
The theory of degenerate configurations the limiting | 7 |
Copyright | |
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absorption accretion amplitude analysis antenna approximation assumed Astrophys BAHCALL binary black hole calculated colors considered consistent core corresponding cycle Cyg X-1 density dependence detail detected detectors determined dips discussed disk distance eclipse effect electromagnetic electron emission energy equation estimate existence expected field Figure flux frequency function geometry give given gravitational gravitational collapse important increases indicated intensity interesting Journ less Lett light curve limit lines magnetic mass measurements motion Nature neutron star noise observed obtained occur optical orbital parameters particle period phase Phys position possible potential present primary pulsations pulse radiation radio range ratio region relative rotation scale sensitivity shown shows spectrum stellar stellar wind suggested surface temperature transducer values variable variations velocity X-ray sources