PRINCIPLES OF INVARIANCE IN TRANSPORT THEORY
Principles of invariance in transport theory
SEARCH · Engineering Papers
Search indexed NASA NTRS and DOE OSTI research on propulsion, heat transfer, battery materials and energy systems. Follow report and document links to the original sources.
Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.
Principles of invariance in transport theory
Radiative transfer in plane-parallel atmospheres - invariance principles for anisotropic scattering
Adiabatic integral invariant in the geomagnetic field
Adiabatic invariant motions of charged particle in stationary nonhomogeneous magnetic field
Rotational invariance of maxwell vector equations
Invariant method solution to problem of electromagnetic wave propagation in uniform gyrotropic media
Calculation of changes in energy and equatorial pitch angles of geomagnetically trapped particles assuming conservation of first and second adiabatic invariants
Changes in energy and equatorial pitch angles of geomagnetically trapped particles assuming conservation of first and second adiabatic invariants
Radiation shield penetration calculation from invariant imbedding method
Adiabatic invariant trapped radiation shells and cosmic ray cutoff magnetosphere models distorted by solar wind
Investigation of hydromagnetic waves which violate adiabatic invariants of geomagnetically trapped charged particle motion
New tests for invariance of vacuum state under Lorentz group
Steady state radiative transport through homogeneous spherical medium, applying invariance principles of Ambartsumian and Chandrasekhar
Violation of second and third adiabatic invariants, examining mirror point change of trapped particles under displacement of guiding centers along force-lines and particle diffusion
Adiabatic invariants and third integrals of motion in periodic potentials in periodically time- dependent Hamiltonian systems of n degrees of freedom
Second term obtained in asymptotic series for second adiabatic invariant of charged particle motion in static magnetic field and found to vanish at mirror points
Invariant hyperplanes for linear dynamical systems
Algorithm for reducing linear time-invariant differential systems to state form applied to systems described by transfer functions