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<pubDate>2007-03-01</pubDate>
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<rpOrgName>Idaho Department of Water Resources</rpOrgName>
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<resTitle Sync="FALSE">Aerial Imagery of the Payette Valley, Idaho (1938 | 1943 | 1949, 1.5-meters)</resTitle>
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<idAbs>&lt;div style='text-align:Left;'&gt;&lt;div&gt;&lt;div&gt;&lt;p&gt;&lt;span&gt;These data were used by the Idaho Department of Water Resources to support their business needs. The original imagery is from the Soil Conservation Service - 1:20,000-scale black and white film. These data are not orthorectified.&lt;/span&gt;&lt;/p&gt;&lt;/div&gt;&lt;/div&gt;&lt;/div&gt;</idAbs>
<idPurp>This collection contains 26 1938/1943/1949 1.5-meter black &amp; white georectified images of the Payette Valley, Idaho. These data are sourced from the Idaho...</idPurp>
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<keyword>Imagery</keyword>
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<keyword>air photo</keyword>
<keyword>aerial photography</keyword>
<keyword>aerial photo</keyword>
<keyword>georectified imagery</keyword>
<keyword>black &amp; white</keyword>
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<tmBegin>1938-01-01T00:00:00</tmBegin>
<tmEnd>1938-12-31T00:00:00</tmEnd>
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<tmBegin>1943-01-01T00:00:00</tmBegin>
<tmEnd>1943-12-31T00:00:00</tmEnd>
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<tmBegin>1949-01-01T00:00:00</tmBegin>
<tmEnd>1949-12-31T00:00:00</tmEnd>
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<idCredit>Idaho Department of Water Resources; Soil Conservation Service</idCredit>
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<useLimit>&lt;div style='text-align:Left;'&gt;&lt;div&gt;&lt;div&gt;&lt;p&gt;&lt;span&gt;Public data. However, users should be aware that temporal changes may have occurred since these data were collected and that some parts of these data may no longer represent actual surface conditions. Users should not use these data for critical applications without a full awareness of the limitations of these data as described in the lineage or elsewhere.&lt;/span&gt;&lt;/p&gt;&lt;p&gt;&lt;span /&gt;&lt;/p&gt;&lt;/div&gt;&lt;/div&gt;&lt;/div&gt;</useLimit>
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<idPoC>
<rpIndName>Bruce Godfrey</rpIndName>
<rpOrgName>University of Idaho Library</rpOrgName>
<rpPosName>GIS Librarian</rpPosName>
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<eMailAdd>bgodfrey@uidaho.edu</eMailAdd>
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<measDesc>Data were geocorrected to BLM GCBDs. Checked the registration to BLM GCBDs of the PLSS during processing.</measDesc>
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<stepDesc>1. Purchased 1:20,000-scale black and white airphotos. 2. Scanned airphotos at 400 dpi using a Hewlett Packard ScanJet 4C scanner. 3. Sharpened scanned photos (images) using Photoshop. 4. Saved images in tiff format. 5. Copied tiffs from PC to workstation and coverted tiffs to grids. 6. Map referenced images using ARC/INFO CONTROLPOINTS program. Used control points from 1997 color infrared airphotos previously registered to BLM GCDBs. 7. Warped images using ARC/INFO warpclipgrid program: nearest neighbor resampling, 1.5m cell size, and a 15m buffer that forms a box around the control points. 8. Mosaicked images using ARC/INFO mosaicgrids program. 9. Made township image map using ARC/INFO bw_plotpv program.</stepDesc>
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<resAltTitle>GCDB</resAltTitle>
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<resAltTitle>AIRPHOTOS1949</resAltTitle>
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<srcDesc>1:20000 aerial photography</srcDesc>
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<resTitle>Aerial Photography of the Payette Valley, Idaho</resTitle>
<resAltTitle>AIRPHOTOS1949</resAltTitle>
<date>
<pubDate date="inapplicable">
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<citRespParty>
<rpOrgName>Soil Conservation Service</rpOrgName>
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<exDesc>ground condition</exDesc>
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<dataSource>
<srcDesc>The Geographic Coordinate Database is a collection of geographic information representing the Public Land Survey System(PLSS) of the United States. 1997 color infared (CIR) photos previously registered to BLM GCDBs were used for control points.</srcDesc>
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<rpOrgName>Bureau of Land Management</rpOrgName>
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<stepDesc>Projected from IDTM27 to IDTM 83</stepDesc>
<stepDateTm>2003-10-01</stepDateTm>
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<stepDesc>All source images created by the Idaho Department of Water Resources as a result of the previous Process Step were mosaicked together using an ArcGIS Workstation 9.2 AML. There was no unique value for NODATA cells. But, the value 0 was set to NODATA to eliminate as much NODATA as possible. Cells that truly are 0 are corrected later in the processing. A boundary clip cover, representing the extent of all mosaicked images, was created from a tile index to use as a mask. To create this coverage, interior arcs were deleted and topology was validated until a single polygon remained. NODATA cells within the boundary clip cover needed to be converted back to 0. This needed to be done to insure that all cells inside the boundary had a value. Value of 255 were converted to 254 to leave a value for transparency if it was needed in the future. A mask was created from the image mosaic using the ArcGIS tool ISNULL. In the Environment Settings, the Raster Analysis Settings mask was set to the boundary clip cover. The mask was shrunk by one pixel to make sure the boundary was clean and the final image was created. Data were loaded into an SDE database using JPG compression with a quality of 75.</stepDesc>
<stepDateTm>2007-01-01</stepDateTm>
<stepProc>
<rpIndName>Bruce Godfrey</rpIndName>
<rpOrgName>Idaho Geospatial Data Clearinghouse</rpOrgName>
<rpPosName>GIS Specialist</rpPosName>
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<postCode>83844-2350</postCode>
<eMailAdd>bgodfrey@uidaho.edu</eMailAdd>
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<rpIndName>Bruce Godfrey</rpIndName>
<rpOrgName>University of Idaho Library</rpOrgName>
<rpPosName>GIS Librarian</rpPosName>
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<editorSave>False</editorSave>
<displayName>Bruce Godfrey</displayName>
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