Development of Gravity Pendulums in the 19th Century: Contributions from the Museum of History and Technology, Papers 34-44 On Science and Technology, Smithsonian Institution, 1966Multhauf, Robert P.
History
Development of Gravity Pendulums in the 19th Century: Contributions from the Museum of History and Technology, Papers 34-44 On Science and Technology, Smithsonian Institution, 1966
Multhauf, Robert P.
Pendulum
At present about a dozen new absolute determinations are in
progress or are being planned. Heyl and Cook's reversible
pendulum apparatus is in use in Buenos Aires and further
reversible pendulum experiments have been made in the All Union
Scientific Research Institute of Metrology, Leningrad (V N I I M)
and are planned at Potsdam. A method using a very long pendulum
was tried out in Russia about 1910 and again more recently and
there are plans for similar work in Finland. The first
experiment with a freely falling body was that carried out by
Volet who photographed a graduated scale falling in an enclosure
at low air pressure. Similar experiments have been completed in
Leningrad and are in progress at the Physikalisch-Technische
Bundesanstalt (Brunswick) and at the National Research Council
(Ottawa), and analogous experiments are being prepared at the
National Physical Laboratory and at the National Bureau of
Standards. Finally, Professor Medi, Director of the Istituto
Nazionale di Geofisica (Rome), is attempting to measure the
focal length of the paraboloidal surface of a liquid in a
rotating dish.[108]
Application of Gravity Surveys
We have noted previously that in the ancient and early modern periods,
the earth was presupposed to be spherical in form. Determination of the
figure of the earth consisted in the measurement of the radius by the
astronomical-geodetic method invented by Eratosthenes. Since the earth
was assumed to be spherical, gravity was inferred to be constant over
the surface of the earth. This conclusion appeared to be confirmed by
the determination of the length of the seconds pendulum at various
stations in Europe by Picard and others. The observations of Richer in
South America, the theoretical discussions of Newton and Huygens, and
the measurements of degrees of latitude in Peru and Sweden demonstrated
that the earth is an oblate spheroid.
[Illustration: Figure 33.--GRAVITY CHARACTERISTICS OF THE GLOBE.
Deductions as to the distribution of matter in the earth can be made
from gravity measurements. This globe shows worldwide variations in
gravity as they now appear from observations at sea (in submarines) as
well as on land. It is based on data from the Institute of Geodesy at
Ohio State University.]
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