Meter, specific gravity

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OBJECT TYPE
N/A
DATE
1961
ARTIFACT NUMBER
2009.0162.001
MANUFACTURER
Lacoste & Romberg Inc.
MODEL
G
LOCATION
Austin, Texas, United States of America

More Information


General Information

Serial #
14
Part Number
1
Total Parts
1
AKA
N/A
Patents
N/A
General Description
Coated and uncoated metal, rubber power cord

Dimensions

Note: These reflect the general size for storage and are not necessarily representative of the object's true dimensions.

Length
45.0 cm
Width
34.0 cm
Height
13.5 cm
Thickness
N/A
Weight
N/A
Diameter
N/A
Volume
N/A

Lexicon

Group
Exploration and Survey
Category
N/A
Sub-Category
N/A

Manufacturer

AKA
Lacoste Romberg
Country
United States of America
State/Province
Texas
City
Austin

Context

Country
Canada
State/Province
Unknown
Period
Purchased by NRCan in 01-01-1996
Canada
The Canadian Geodetic Long Baseline Interferometry (CGLBI) research is Canada's representative to the International VLBI Service for Geodesy and Astrometry. Modern Geodesy relies on astronomical and space based techniques, namely Very Long Baseline Interferometry (VLBI), GPS (the Global Positioning System), SLR (Satellite Laser Ranging) and LLR (Lunar Laser Ranging). IAG commission VIII (International Coordination of Space Techniques for Geodesy and Geodynamics (CSTG)) discusses the different space techniques in its status report for 1996, and argues that "Only VLBI is capable of defining the Celestial Reference Frame, which serves as the inertial system in satellite geodesy. Long term stability of UT1 UTC and of precession/mutation can only be guaranteed by this technique." Their summary states: "It is clear from the scientific point of view that VLBI, Laser Ranging (SLR and LLR), and satellite microwave techniques are indispensable as contributors to space geodesy." The Canadian contribution to Geodetic VLBI is substantial. The Algonquin Radio Observatory is a leading site for Geodetic VLBI with a very long history of observations. Continued operation of the Yellowknife antenna is important for studies of the North American Plate. The Canadian developed S2 VLBI system is a complete system consisting of recording terminals, data acquisition systems, playback terminals and a correlator.
Function
Allowed the researchers to very accurately determine changes in the Earth and the Earth's place in space.
Technical
S2 DAS: This Canadian designed data acquisition system was adopted internationally to define the International Terrestrial Reference Frame (ITRF) a key element in mapping especially in the era of Global Positioning System satellites. The US system, in comparison, took 1 slice per frequency while the S2 only had 1 slice and skipped along the frequencies being scanned. This was much more efficient and technically a much simpler system but each system still cost $250,000. A Russian version uses yet another technique with slightly less stable time-base system, hence slightly less precise. The HP and Datum instruments were state-of-the-art when produced and had long term stability as a time keeper but were not as stable on the short term. Their roles in the system was to provide a very precise time record so that records from different observatories could be compared directly to determine the shifts in position of the continents and of the Earth in space.
Area Notes
Unknown

Details

Markings
Black mfrs plate reads: "LACOSTE & ROMBERG, INC./ GRAVITY METER/ [illegible serial number]/ U.S. PATENTS/ 2293437/ 2377889/ MADE IN/ AUSTIN, TEXAS/ U.S.A."/ Writen below in black marker reads: "G-14"/
Missing
N/A
Finish
Etched metal casing with black print/ Black synthetic controls and dial casing with white background/ Black knobs and switches/ Black labels with white embossed print/ Case lid has hinges which open from the top/
Decoration
N/A

CITE THIS OBJECT

If you choose to share our information about this collection object, please cite:

Lacoste & Romberg Inc., Meter, specific gravity, 1961, Artifact no. 2009.0162, Ingenium – Canada’s Museums of Science and Innovation, http://collection.ingeniumcanada.org/en/id/2009.0162.001/

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