Aeronautics and space bibliography for secondary grades 2d edition <jan. 1960-apr. 1963<
Bibliography - aeronautics & space sciences for secondary grades
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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.
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Bibliography - aeronautics & space sciences for secondary grades
Space environment and meteoroid hazard to Apollo spacecraft - skin thickness estimate
Spacecraft structures and systems materials handbook
Pilot program for selecting and transmitting recent engineering and scientific data through monographs and visual aids
Dissemination of monographs and visual briefs from NASA programs to industries and universities
Statistics on NASA program of disseminating educational monographs and visual briefs to industries and universities
Statistical data on educational monographs and visual briefs disseminated to universities and industries for technology utilization evaluation
Distribution and evaluation of educational monographs and visual briefs in universities from NASA technical reports
Dissemination program for NASA technological educational monographs
Preparation, dissemination and evaluation of monographs
Exobiology bibliography for 1960-1967 containing 715 citations of research in NASA bioscience program
Bibliography of references, periodicals, and educational materials related to space flight
Atmospheric models, astrodynamic constants, radiation, and magnetic fields for Earth, Moon, Mars, Venus, and interplanetary space
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This book intends to build a bridge for the student and the young engineer: to link the rocket propulsion fundamentals and elements (which are well covered in the literature) with the actual rocket engine design and development work as it is carried out in industry (which is very little, if at all covered in literature). The book attempts to further the understanding of the realistic application of liquid rocket propulsion theories, and to help avoid or at least reduce time and money consuming errors and disappointments. In so doing, it also attempts to digest and consolidate numerous closely related subjects, hitherto often treated as separate, bringing them up to date at the same time. The book was written "on the job" for use by those active in all phases of engine systems design, development, and application, in industry as well as government agencies. Since it addresses itself to human beings set out to create new machines, rather than describing machines about to dominate man, the language chosen may not always be "functional" in the strict sense of the word. The book presents sufficient detail to familiarize and educate thoroughly those responsible for various aspects of liquid propellant rocketry, including engine systems design, engine development, and flight vehicle application. It should enable the rocket engineer to conduct, independently, complete or partial engine systems preliminary detail designs and to understand and judge the activities in, and the problems, limitations, and "facts of life~ of the various subsystems making up a complete engine system. It also attempts to educate those ultimately interested in specialized subsystems and component design (thrust chamber, turbopump, control valves, etc.) about their own as well as neighboring subsystems and about the complete engine system. This should enable the student to prepare realistic analytical calculations and design layouts with a long headstart toward the final specialized designs for subsystem production release. Special emphasis has been placed on engine flight application to stimulate engine systems and subsystem designers to think in these terms from the outset. The book is intended as a textbook, with specific consideration of the teacher without industry experience. We hope it will stimulate those desiring to specialize in the area of a rocket engine subsystem by supplying adequate information to enable them to benefit fully from the specialized literature. Thus, it provides a realistic expert introduction for those joining the liquid propellant rocket engine field.
A consistent source of payload performance data for missions to the outer planets is provided. The payload data for both flybys and orbiters is presented graphically as a function of flight time for various launch years, launch vehicles, and orbit sizes. All the relevant parameters have been combined to produce useful data on a single graph to make advanced mission planning much easier. The limitation of this mode of presentation is that only a reasonable number of payload vs. flight time curves can be drawn. Thus it is necessary to select parameters carefully to reflect frequently used values.
Bioastronautics research, including stress effects, sensory perception, and human performance
The documentation problem is discussed that arises in getting all the many items included in a computer program prepared in a timely fashion and keeping them all correct and mutually consistent during the life of the program. The proposed approach to the problem is to collect all the necessary information into a single document, which is maintained with computer assistance during the life of the program and from which the required subdocuments can be extracted as desired. Implementation of this approach requires a package of programs for computer editorial assistance and is facilitated by certain programming practices that are discussed.