Cryogenic and superconduction magnet research at the NASA Lewis Research Center.
Cryogenically cooled superconducting electromagnets design, construction and properties for research in plasma and solid state physics, considering coil systems
Engineering topics
Publications and source records attributed to Brown, G. V..
Cryogenically cooled superconducting electromagnets design, construction and properties for research in plasma and solid state physics, considering coil systems
Helium properties and utilization in NASA projects, discussing pressurization of fuel tanks cooling of superconducting magnets
Optimum thickness of dynamically stable composite superconducting tapes determined for substrate thickness as function of current density
Pumped helium tests of 51 centimeter bore niobium tin magnetic coils
Cryogenic solenoids with pure Al conductor for production of strong magnetic fields, discussing softness and strain resistivity problems
He II excitation spectrum for interparticle potential using pair Hamiltonian with repulsive core and attractive well
Helium 2 elementary excitation spectrum derived microscopically for realistic interatomic potential
Calculation of a thick solenoid coils magnetic field components is made by a superposition of the fields produced by four solenoids of infinite length and zero inner radius. The field produced by this semi-infinite solenoid is dependent on only two variables, the radial and axial field point coordinates.
High field liquid-neon-cooled superconducting electromagnet for cryogenic solid state research
High field liquid neon cooled electromagnet design, operating characteristics and tests
Superposition method for calculating the magnetic field components of thick finite solenoids
Calculating magnetic field components in or around thick finite solenoid