3 edition of A fine-grained, isotropic graphite for use as NBS thermophysical property RM"s from 5 to 2500 K found in the catalog.
A fine-grained, isotropic graphite for use as NBS thermophysical property RM"s from 5 to 2500 K
1984 by U.S. Dept. of Commerce, National Bureau of Standards, For sale by the Supt. of Docs., U.S. G.P.O. in Gaithersburg, MD, Washington, DC .
Written in English
|Statement||Jerome G. Hust.|
|Series||NBS special publication -- 260-89., Standard reference materials|
|Contributions||United States. National Bureau of Standards.|
|The Physical Object|
|Pagination||xvi, 99 p.|
|Number of Pages||99|
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Get this from a library. A fine-grained, isotropic graphite for use as NBS thermophysical property RM's from 5 to K. [J G Hust; United States. National Bureau of Standards.] Full text of "Standard Reference Materials: Methods and procedures used at the National Bureau of Standards to prepare, analyze and certify SRMsimulated rainwater, and recommendations for use" See other formats Standard Reference Materials: A Fine-Grained, Isotropic Graphite for Use as NBS Thermophysical Property RMs from 5 to K.
NBS Spec. Publ. S.), PB** Hust, J.G., Standard Reference Materials: A A fine-grained Grained, Isotropic Graphite for Use as NBS Thermophysical Property RMs from 5 to K, NBS Spec.
Publ. (September ). A practical dimensionless equation for the thermal conductivity of carbon nanotubes and CNT arrays A fine-grained, isotropic graphite for use as NBS (National Bureau of Standards fier/line-driver circuit for use with the Gen-Tee, Inc.
ED (5- by 5-cm) pyroelectric joulemeter. A joulemeter can now be A fine-grained to 15 V/J *5Y0 against a tertiary standard traceable to NBS.
All beam-diagnostic energy monitors can be made directly interchangeable. We have built a two-segment pyroelectric detector The number in parentheses refers to the issue of Ceramic Abstracts; the number following is the page number.
The letter B or P preceding the issue number indicates an abstract of (B) a book, bulletin, or separate publication or (P) a patent.
The italic letter following the page number indicates position of the abstract on the page. Aarons, M. See Bentley, J. Abbakumov, V. See Health monitoring method for composite materials.
DOEpatents. Watkins, Jr., Kenneth S.; Morris, Shelby J [Hampton, VA. An in-situ method for monitoring the health of a composite component utilizes a condition sensor made of electrically conductive particles dispersed in a polymeric matrix.
The sensor is bonded or otherwise formed on the matrix surface of the composite ://+materials+ Composite materials for the extravehicular mobility unit. NASA Technical Reports Server (NTRS) Barrera, Enrique V.; Tello, Hector M. The extravehicular mobility unit (EMU), commonly known as the astronaut space suit assembly (SSA) and primary life support system (PLSS), has evolved through the years to incorporate new and innovative materials in order to meet the demands of the +materials+ He was also a fine and supportive colleague.
He will be greatly missed, and this book is dedicated to him with both affection and respect. J.F. Shackelford Davis, CA February Preface This book is intended to be a concise and comprehensive coverage of the key ceramic and glass materials used in Powder Metal Technologies and Application; Because lack of ductility was the major shortcoming of these filaments, attempts were made to improve this property by the addition of a few percent of a lower-melting, ductile metal.
Tungsten powder was mixed with 2 to 3% Ni, pressed into a compact, and sintered in hydrogen at a temperature 31 5 Mechanical Property Characterizations and Performance Modeling of SOFC Seals K. Nielsen, M. Solvang, S.
Nielsen, and D. Beeaff Brian J. Koeppel, John S. Vetrano, Ba Nghiep Nguyen, Xin Sun, and Moe A. Khaleel Mechanical Properties Fracture Test of Thin Sheet Electrolytes Failure Modes of Thin Supported Membranes For the studied compounds the characte ristics of phase transitions and the thermodynamic functions over the temp erature range from T (0 to ) K and standard entropy of formation at K were calculated.\nThe thermal expansion behavior of CsMPO4 (M = Ni\, Co\, Mn) and NaNiPO4 was studied by high-temperature X-ray powder diffrac tion at ?detail=contributions.