![]() ![]() In the universe the gravitation is induced by standing inerton waves of mass objects, which oscillate around the objects with the speed of light. These ex-citations are associated with carriers of the field of inertia. The submicroscopic concept determines the notion of mass in the tessel-lattice and introduces excitations of space, which appear at the motion of particles (mass particles are deter-mined as local deformations of the tessel-lattice). It is shown that the Newton's law of universal gravitation can be derived from first submicroscopic prin-ciples inherent in the very nature of real space that is con-stituted as a tessel-lattice of primary topological balls. (2014) sample.Ĭlassical non-relativistic gravitational dynamics is thus best described as In the proximity of the dwarf galaxies in the Miller et al. Applying the external field effect, we predict the masses of galaxies The distribution of the observed ratios ofĭark-matter halo masses to baryonic masses may be empirical evidence for theĮxternal field effect, which is predicted in SID as a consequence of the forcesĪcting between two galaxies depending on the position and mass of a third Newtonian dynamics to be valid, while the baryonic to halo mass relation Which agrees well with the correlation deduced observationally assuming SID predicts a baryonic to apparent virial halo (dark matter) mass relation Stochastic formation of galaxies in low-mass DM halos. Also, the observed tight correlation contradicts the postulated Therefore, the most modern simulated disc galaxies, whichĪre delicately selected to have a quiet merging history in a standardĭark-matter-cosmological model, still do not represent the correct rotationĬurves. Simulations disagree significantly with the tight MDA correlation of the The MDA data emerging in cold/warm dark matter (C/WDM) cosmological SID corresponds to the deep MOND limit (Milgromġ983c). The observed mass discrepancy and acceleration (MDA) in the low acceleration Predicts two fundamental correlations known from observational galacticĭynamics: the baryonic Tully-Fisher relation (BTFR) and a correlation between Low-acceleration space-time scale invariant dynamics (SID, Milgrom 2009a) 39 Crew Take-Off Briefing.39 Crew Approach/Landing Briefing. 38 Single Engine Landing.38 Total Power Loss. 36 ATC Communications in emergency situations.37 Missed Approach. 35 After Landing (When Clear of the Runway). 31 Takeoff-Cleared or Taxi to Line Up and Wait. 23 B767-200 Fuel Planning and Weight and Balance. 11 Pneumatic Air Systems.11 Main Panel – General description. 3 Pratt & Whitney Series PW4060 Turbofans. Boeing 767 Aircraft Operations Manual 5th Edition October 2013 ![]()
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