Standard interest profiles - Development of technical subjects Final report
NASA university program for technology transfer, and development of Standard Interest Profiles /SIP/
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NASA university program for technology transfer, and development of Standard Interest Profiles /SIP/
Annual summary of aerospace technology transfer to biomedical field
Aerospace management technology transfer, discussing conceptual contributions, planning, administrative and evaluation methods
Aerospace biomedical technology transfer analysis, discussing spinoff, popular interest, transfer barriers, etc
Aerospace technology transfer to coal mine safety, police and fireman aids, and water pollution monitoring
Multidisciplinary studies in programs in the public sector, including project management, NASA technology transfer, national decision making, and space regulations
R and D idea flow studies, analyzing liaison, interface, coupling and technology transfer /LINCOTT/
NASA safety related research programs based on technology transfer involving information summarizing, indexing and storage from global aerospace research and development
Research progress in technology transfer by NASA Biomedical Application Team
Aerospace science and technology transfer to air pollution control problems including mass spectrometry modifications and air pollution monitoring equipment improvements
Experimental procedures and applications in technology transfer
Objectives, operations, and accomplishments of NASA regional dissemination centers for technology transfer
NASA technology transfer in urban development applications
Technology transfer and applications in medicine and biology
Electric connectors, adapters, and cables - technology transfer
Flow and heat transfer technology resulting from NASA turbine cooling program
The properties and behavior of ceramic materials used in components for electronic circuitry are examined to appraise the present and future directions for microelectronics, and to suggest further product development, and how innovations may be useful in other technologies. Ceramic and glass insulators, resistors, capacitors, and the use of ceramics and glasses in microcircuitry are discussed along with technology transfer to nonaerospace uses.
An example of advanced technology transfer from the Little Joe, Surveyor, Comsat, re-entry and Apollo age to everyday fire protection needs is presented. Utilizing the principle of sublimation cooling for thermostatic temperature control, the material meets a wide range of fire retardancy and heat transmission control requirements. Properties vary from flexible tape for conduits and electrical cables to rigid coatings for column protection, with a broad spectrum of sublimation temperatures available. The material can be applied in the field or in the factory, utilizing mass production techniques, yielding a product that is reliable, effective, widely available and low in cost.