Can the cosmological constant stabilize galaxy clusters
Galaxy clusters stabilization by cosmological constant, considering clusters mass discrepancy
Engineering topics
Publications and source records attributed to Noerdlinger, P. D..
Galaxy clusters stabilization by cosmological constant, considering clusters mass discrepancy
Quasars PHL 5200 and RS 23 spectra absorption lines, examining resonance line transfer of radiation through differentially expanding atmosphere
M31 continuum radio emission produced by magnetic field aligned along arms, discussing field turbulence effects
Time variations and angular collimation of radiation emitted by source with relativistic streaming
Fire hose instability growth rate in relativistic plasma with anisotropic pressure, discussing importance to cosmic ray liberation and isotropization at galactic halo
Quasars and intergalactic hydrogen density, using Schmidt law of increase in number density of quasars to construct plausible models
Harrison primordial inhomogeneity postulate concerning baryon numbers distribution in universe, precluding possibility of considering cosmic rays bulk as universal
Harrison baryon inhomogeneity postulate of galactic evolution critically analyzed for universality of cosmic rays
Effect of bulk motion on synchrotron radiation rate for ensemble of relativistic particles
Proof of necessity of positive value for Brans-Dicke coupling constant
Cosmic ray propagation Jokipii model modification, taking into account particle mirroring to determine diffusion coefficient by limited portion of field spectrum
Model for cosmic ray propagation with particle mirroring
Restoration of original synchrotron radiation formula
Firehose instability behavior in highly relativistic plasmas is not highly sensitive to exact particle velocity distribution
Pressure anisotropy due to magnetic bremsstrahlung on particles moving at very large angles
Logical contradiction of existence of tachyons, particles that travel faster than speed of light
Momentum distribution for relativistic plasma subjected to slow anisotropic compression
Fock reinterpretation of Einstein general relativity theory leads to disagreement with gravitational red shift experiments