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Extra resources for Absorption Measurements of Certain Changes in the Average Wave-Length of Tertiary X-Rays
S. Naval Ordnance Laboratory, White Oak, MD, September 1960. 4. F. R. Baker, Hypervelocity Capability and Impact Eﬀect Program, Final Report, USNRL Memorandum Report No. S. C. March 1966. 5. F. A. Zukas, T. F. R. Curran) pp. 215–239, John Wiley Interscience, New York, 1982. 6. F. R. S. Naval Research Laboratory Report No. , March 1966. 7. F. Swift, “Study of Electrically Augmented Gas Guns”; Proceedings of the 7th Hypervelocity Impact Symposium; Volume 1, pp. 61–102 Tampa, FL November 1964. 8. J.
With all these problems, petaling diaphragms have still become by far the most popular of the 22 Hallock F. Swift quick-opening valve mechanisms available to light-gas gun designers and operators. The few light-gas guns that do not use petaling diaphragms at present employ shear disc valves. 6 Choice of Light-Gas for Gun Operation All early light-gas gun operations were conducted using helium for the lightgas charge. It was chosen as being the only notably light gas which was chemically inert. 5 km/s (14,800 ft/s,) but serious problems were encountered when higher velocities were sought.
Baker, Hypervelocity Capability and Impact Eﬀect Program, Final Report, USNRL Memorandum Report No. S. C. March 1966. 5. F. A. Zukas, T. F. R. Curran) pp. 215–239, John Wiley Interscience, New York, 1982. 6. F. R. S. Naval Research Laboratory Report No. , March 1966. 7. F. Swift, “Study of Electrically Augmented Gas Guns”; Proceedings of the 7th Hypervelocity Impact Symposium; Volume 1, pp. 61–102 Tampa, FL November 1964. 8. J. L. McKay, “Performance of a Three Stage Arc Heated Light Gas Gun”; Proceedings of the 6th Symposium on Hypervelocity Impact Vol.