Space technology applicable to hybrid vehicle batteries
Investigation of techniques to improve performance and service life of nickel-zinc electric batteries for application to low pollutant propulsion systems
Engineering topics
Publications and source records attributed to Schwartz, H. J..
Investigation of techniques to improve performance and service life of nickel-zinc electric batteries for application to low pollutant propulsion systems
Nickel-zinc batteries for use in hybrid heat engine/electric systems of low pollutant passenger cars, increasing service life by aerospace technology
NASA derived direct energy conversion processes for possible utilization by electric power industry
Electric power plant survey for space application, noting Rankine and Brayton cycles
Dynamic conversion of solar and chemical energy, discussing power conditioning, Brayton-cycle system with inert gas and spacecraft batteries
Fuel and solar cells, chemical batteries, Rankine and Brayton cycle power plants, thermoelectric generators, and thermionic converters for space power applications
Electric power generation for space vehicles - batteries, solar cells, thermoelectric converters, magnetohydrodynamic converters, fuel cells, and thermionic converters