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Measures for Progress: A History of the National Bureau of Standards

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8. METALLURGY<br />

APPENDIX K<br />

Hobbs, [Luggage testing and fatigue tester <strong>for</strong> luggage<br />

handles] (TNB 32, 134, 1948)<br />

Hanks & Weissberg [The osmometer] (1948; RP2377,<br />

1952)<br />

Newman, Borysko & Swerdlow, Ultra-microtomy by a new<br />

method (RP2020, 1949)<br />

O'Leary, et aL, Paper from glass fibers (TNB 35, 177,<br />

1951; TNB 39, 82, 1955)<br />

Polymer degradation mechanism: a symposium<br />

(C525, 1953)<br />

Digges, Reinhart, et al., Influence <strong>of</strong> boron on some proper-<br />

ties <strong>of</strong> experimental and commercial steels [Substitution<br />

<strong>of</strong> boron <strong>for</strong> carbon in hardening steels] (RP1815, 1947;<br />

RP1938, 1948)<br />

Rosenberg & Darr, Stabilization <strong>of</strong> austenitic stainless steel<br />

[Prevention <strong>of</strong> corrosion in certain stainless steels]<br />

(RP1878, 1948)<br />

9. MINERAL [Preparation <strong>of</strong> very thin] Ceramic dielectrics <strong>for</strong><br />

PRODUCTS<br />

electronic signal devices (TNB 33, 142, 1949)<br />

Harrison, Moore & Richmond, Ceramic coatings <strong>for</strong> high.<br />

temperature protection <strong>of</strong> steel (RP 1773, 1947)<br />

11. APPLIED<br />

Lowan, The computation laboratory <strong>of</strong> <strong>the</strong> NBS [Ma<strong>the</strong>-<br />

MATHEMATICS matical tables program, 1930—1950] (Scripta Math. 15,<br />

33, 1949)<br />

13. ELECTRONICS Brunetti & Curtis, NBS. printed circuit techniques (TNB<br />

& ORDNANCE 31, 1946; C468, 1947)<br />

DEVELOPMENT Rabinow, Magnetic fluid clutch (TNB 32, 54, 1948)<br />

Computer development at <strong>the</strong> NBS [SEAC, SWAC,<br />

and DYSEAC] (C551, 1955)<br />

14. CENTRAL RADIO Ionospheric radio propagation [Basic radio propa-<br />

PROPAGATION<br />

LABORATORY<br />

gation predictions] (C462, 1947)<br />

Husten & Lyons, Microwave frequency [measurements and<br />

standards] (Elec. Eng. 67, 436, 1948)<br />

Kerns, Determination <strong>of</strong> efficiency <strong>of</strong> microwave bolometer<br />

mounts from impedance data (RP1995, 1949)<br />

Lyons, et al., The atomic clock: an atomic standard <strong>of</strong><br />

frequency and time (TNB 33, 17, 1949)<br />

Lyons, Microwave spectroscopic frequency and time stand-<br />

ards [The atomic clock] (Elec. Eng. 68, 251, 1949)<br />

Birnbaum, A recording microwave refractometer (Rev. Sci.<br />

Instr. 21, 169, 1950)<br />

Greene & Solow, Development <strong>of</strong> very-high-frequency field-<br />

intensity standards (RP2100, 1950)<br />

Birnbaum, Kryder & Lyons, Microwave measurements <strong>of</strong><br />

<strong>the</strong> dielectric properties <strong>of</strong> gases (J. Appl. Phys. 22, 95,<br />

1951)<br />

Selby, Radio-frequency micropotentiometer [and measure-<br />

ment <strong>of</strong> accurate rf microvoltages] (TNB 35, 33, 1951;<br />

Trans. AIEE 72, 158, 1953)<br />

Huston, Improved NBS ammonia clock (Proc. IRE 39,<br />

208, 1951)<br />

Lyons, Spectral lines as frequency standards [NBS Model<br />

Ill .<strong>of</strong> <strong>the</strong> ammonia clock] (Ann. N.Y. Acad. Sci. 55,<br />

831. 1952)

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