Some comments on certain technical aspects on geographic information systems Technical report no. 2
Two-dimensional machine language and spatial statistics for design and development of geographic information systems
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Two-dimensional machine language and spatial statistics for design and development of geographic information systems
Relationships between geographic and inertial coordinates of position
Operational geographic correlation /gridding/ of Nimbus meteorological data
Impurities remaining in the metallic copper are identified and quantified by spectrographic and neutron activation analysis. Determination of the type of ore used for the copper artifact places the geographic point of origin of the artifact.
Geographical distributions of geomagnetic micropulsations continuously recorded on frequency modulated magnetic tape
Geographical distribution of federal research and development funds, and regional scientific capabilities and facilities
Space photography for geographic studies of earth
Navigation equations for geographic and tangent coordinate frames for radar strapdown inertial navigation
Movement of earth mantle and geographic poles
Statistical correlation between optical microwave propagation reliability, fade margin, path length, and geographic location
Error analysis of strapdown and local level inertial navigation systems which compute in geographic coordinates
Remote sensing and data acquisition methods in Geographic Applications Program
Seasonal and geographic variation of atmospheric ozone derived from Nimbus 3 infrared interferometer spectrometer
Geographic distribution pattern of Australasian tektites, considering origin and crater theory of tektite events
The third phase of remote sensing technologies and potentials applied to the operations of the U.S. Geological Survey is introduced. Remote sensing data with multidisciplinary spatial data from traditional sources is combined with geographic theory and techniques of environmental modeling. These combined imputs are subject to four sequential activities that involve: (1) thermatic mapping of land use and environmental factors; (2) the dynamics of change detection; (3) environmental surveillance to identify sudden changes and general trends; and (4) preparation of statistical model and analytical reports. Geography program functions, products, clients, and goals are presented in graphical form, along with aircraft photo missions, geography test sites, and FY-70.
Qualitative and quantitative analyses were made of multi-sensor data acquired during aircraft missions. While the principal analysis effort was concentrated on imagery taken over test sites in Southern California, data were also studied from records acquired on missions over test sites at Phoenix, Chicago, Asheville, and New Orleans. The objectives of the analyses were: (1) to determine the capabilities of ten remote sensors in identifying the elements of information necessary in conducting geographic investigations in land use analysis, urban problems, surface energy budget, and soil moisture; (2) to determine the feasibility of using these sensors for these purposes at orbital altitudes; and (3) to collate and analyze ground and air data previously collected and assemble it in a format useful in the accomplishment of cost effectiveness studies.
Simulation and interpretation of aerial or orbital TV and photographic observations of earth geographic patterns
A system which simulates observation of the earth surface by aerial or orbiting television devices has been developed. By projecting color slides of photographs taken by aircraft and orbiting sensors upon a rear screen system, and altering scale of projected image, screen position, or TV camera position, it is possible to simulate alternatives of altitude, or optical systems. By altering scan line patterns in COHU 3200 series camera from 525 to 945 scan lines, it is possible to study implications of scan line resolution upon the detection and analysis of geographic patterns observed by orbiting TV systems.