Spaces of type III solutions of the Maxwell- Einstein equations
Type 3 spaces solutions of Maxwell-Einstein equations, examining singular and nonsingular electromagnetic field problems
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Type 3 spaces solutions of Maxwell-Einstein equations, examining singular and nonsingular electromagnetic field problems
Oscillating magnetic dipole electromagnetic field in cold streaming plasma, discussing dipole radiation and longitudinal electrostatic field production
Microwave electron density probe based on plasma- electromagnetic field interaction
Supraluminous longitudinal plasma wave scattering by localized inhomogeneity in thermal plasma density, calculating far field electromagnetic radiation production
Relativistic plasmas phase space symmetries in Minkowski space, noting variance of plasma interaction with electromagnetic field
Theoretical investigation of millimeter wave amplification and generation by interaction between electron stream and electromagnetic field
Signal voltage resulting from the disturbance of an electromagnetic field within the volume of a sensitive area is compared with a reference ac voltage for polarity information, which identifies the material. System output amplitude and polarity indicate approximate size and type of metal, respectively.
Computer program for calculating scattered electromagnetic field patterns from asymmetrical reflectors
Photoelectron distribution in electromagnetic field impinging on quantum detector
Symmetry analysis applied to interaction between electron beams and electromagnetic fields
Thin metal plate surface impedance during excitation by HF electromagnetic field as function of magnetic field, calculating line shapes
Monograph on analysis of reflector antennas covering electromagnetic field equations, computer aided design, etc
Electromagnetic field measurements on rectangular waveguides for millimeter wave propagation
Surface impedance of thin metal plate excited by RF electromagnetic field as function of external DC magnetic field
Liquid metals vapor drag and electromagnetic fields effects on laminar film condensation, using finite difference method
Crab Nebula model, discussing electromagnetic field time variation and electron acceleration and synchrotron emission
The physical properties of the planet Mercury, its surface, and atmosphere are presented for space vehicle design criteria. The mass, dimensions, mean density, and orbital and rotational motions are described. The gravity field, magnetic field, electromagnetic radiation, and charged particles in the planet's orbit are discussed. Atmospheric pressure, temperature, and composition data are given along with the surface composition, soil mechanical properties, and topography, and the surface electromagnetic and temperature properties.
The six most promising valve, regulator, and remote coupling concepts, representing the more radical designs from twenty concepts generated, were investigated. Of the three valves, one has no moving parts because shutoff sealing is accomplished by an electromagnetic field which ionized the flowing fluid. Another valve uses liquid metal to obtain sealing. In the third valve, high sealing forces are generated by heating and expanding trapped hydrogen. The pressure regulator is an electronically controlled, electromechanically operated, single state valve. Its complexity is in electronic circuitry, and the design results in less weight, increased reliability and performance flexibility, and multipurpose application. The two remote couplings feature the minimization of weight and mechanical complexity. One concept uses a low melting temperature metal alloy which is injected into the joint cavity; upon solidification, the alloy provides a seal and a structural joint. The second concept is based on the differential thermal expansion of the coupling mating parts. At thermal equilibrium there is a predetermined interference between the parts, and sealing is achieved by interference loading.