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‡aD 301.45/64:79
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‡aAD 0707824
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‡aAFCRL 70-277
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‡aSvensson, Harald.
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‡aRemote sensing /
‡cHarald Svensson.
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‡aL.G. Hanscom Field, Bedford, Massachusetts :
‡bAir Force Cambridge Research Laboratories, Office of Aerospace Research, United States Air Force,
‡c1970.
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‡avi, 16 pages :
‡billustrations, maps ;
‡c28 cm.
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‡atext
‡btxt
‡2rdacontent
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‡aTranslations (Air Force Cambridge Research Laboratories (U.S.)) ;
‡vno. 79
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‡aAFCRL ;
‡v70-277
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‡aTranslation supported by the Air Force Cambridge Research Laboratories, Office of Aerospace Research, United States Air Force (L.G. Hanscom Field, Mass.), and translated by the Translation Center of New England, Somerville, Massachusetts.
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‡aTranslated from Forskaning och Fromsteg, No. 5, pp. 10-19, 1969.
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‡aAFCRL Research Laboratory Project 7628.
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‡aAD0707824 (from http://www.dtic.mil).
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‡a"May 1970."
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‡aThe parts of the electromagnetic spectrum are discussed, with the type(s) of sensor(s) required to record energy in each part. A review is given of the classes of airborne (and satellite) remote sensor data which are available to geoscientists. Different types of remote sensor data are described and examples provided, including panchromatic, infrared, color, and color infrared aerial photography (Kullaberg, Sweden); multispectral aerial photography (with importance of optimum film/filter combination for specific phenomena); airborne thermal infrared imagery (Kullaberg, Sweden and Surtsey, Iceland); side-looking airborne radar (Tuskahoma Syncline, Oklahoma); and radio sounding of glacial ice (Antarctica). The projected future increase in amount of remote sensor data will require computer processing techniques, although man will serve the most important role in the analysis and use of remote sensor information of the earth's surface.
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‡aMode of access: Internet.
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‡aRemote sensing.
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‡aAerial reconnaissance.
‡2fast
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‡aAerial reconnaissance.
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‡aNatural resources.
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‡aRemote sensing.
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‡aAir Force Cambridge Research Laboratories (U.S.)
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‡aTechnical Report Archive & Image Library (TRAIL)
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