Two wavelength laser interferometer for plasma diagnostics.
Plasma electron density measurement method using beat frequencies between two dual frequency lasers
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Plasma electron density measurement method using beat frequencies between two dual frequency lasers
Slough characteristics measuring methods for clean packaging materials, considering Taber-Abraser, tumble-box and reciprocating-stylus method
Point measuring method for precise resistance analyses on silicon slices
Spectral emissivity difference measurement method for region between two points on lunar surface, discussing applications to bright planets
Lunar interior thermal regime measurement method based on dynamo induction of electric field on planetary scale by solar wind
Feasibility of using ultrashort pulse laser ranging and independent clock radio interferometry distance measurement methods to test for existence of continental drift
Measurement methods for semiconductor materials, devices, fabrication, processing
Distance measuring method limitations for modulated CW laser determined by laser transmitter receiver in conjunction with retroreflector target fixed position
Microwave waveguide insertion-loss calibrations, comparing cavity Q and direct measurement methods
Permalloy tapes uncertainty in magnetization process, discussing Barkhausen discontinuities measurement method
In-flight thrust measurement methods on SERT 2 ion thrustors, using accelerometer, electrical parameters and orbit change
Measurement methods for semiconductor devices, materials, and production control
Utilization of measuring methods and devices in general industrial applications
Plasmasphere total columnar electron content up to plasmapause, describing various measurement methods
The research is pertinent to the realization of a self-sustained fissioning plasma for applications such as nuclear propulsion, closed cycle MHD power generation using a plasma core reactor, and heat engines such as the nuclear piston engine, as well as the direct conversion of fission energy into optical radiation (nuclear pumped lasers). Diagnostic measurement methods and experimental devices simulating plasma core reactor conditions are discussed. Studies on the following topics are considered: (1) ballistic piston compressor (U-235); (2) high pressure uranium plasma (natural uranium); (3) sliding spark discharge (natural uranium); (4) fission fragment interaction (He-3 and U-235); and (5) nuclear pumped lasers (He-3 and U-235).
The problem of the calculation of ambient densities from San Marco-C neutral atmospheric composition experiment data is considered. A brief description is given of the data measurement method, followed by a description of both the theoretical and experimental data curves. Geometry, electrometer distortions, and noise effects are then studied in terms of their effects on the ideal data form. From these considerations two data reduction methods are evolved. The first is an iterative integration technique that exploits the symmetry of the experimental data about the minimum angle of attack. For the analysis of geometry effects, a second method using interval averaging was developed and studied.
With the further development of the supercharger, requirements with regard to measuring accuracy increase while at the same time the conditions under which the measurements must be carried out become more difficult. The present paper is a contribution toward the improvement and refinement of the measuring methods. For pressure measurements some suggestions are made with regard to design and location of the measuring stations. The question of temperature measurement in rapid air flow is discussed, new instruments for the direct measurement of the temperature in the rapid airstream are described and the results obtained with the various instruments presented.
The results of pressure distribution measurements that were made on a model wing section of a Fieseler F 5 R type airplane are presented. Comparison of those model tests with the corresponding flight tests indicates the limitations and also the advantages of wind tunnel investigations, the advantages being particularly that through the variety of measuring methods employed the more complicated flow conditions may also be clarified. A fact brought out in these tests is that even in the case of "well rounded" slots it is possible for a vortex to be set up at the slot entrance and this vortex is responsible for certain irregularities in the pressure distribution and in the efficiency of the slot.