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  1. ABI Band #2 - The Red Visible Band; Band Type: Visible: Spatial Resolution: 500m: Approximate Central Wavelength: 0.64 μm: Temporal Usage: Daytime Only: ABI Band 2 can effectively be thought of as the red channel of visible light seen by the satellite.

  2. ABI Band #2 - The Red Visible Band; Band Type: Visible: Spatial Resolution: 500m: Approximate Central Wavelength: 0.64 μm: Temporal Usage: Daytime Only: ABI Band 2 can effectively be thought of as the red channel of visible light seen by the satellite.

  3. The satellite’s ABI will scan each of these regions once per minute, or it can scan one region every 30 seconds. This results in satellite imagery that can update faster than most weather radars! Beyond that, there is no difference in the products themselves between mesoscale imagery and CONUS imagery.

  4. The satellite’s ABI will scan each of these regions once per minute, or it can scan one region every 30 seconds. This results in satellite imagery that can update faster than most weather radars! Beyond that, there is no difference in the products themselves between mesoscale imagery and CONUS imagery.

  5. The satellite’s ABI will scan each of these regions once per minute, or it can scan one region every 30 seconds. This results in satellite imagery that can update faster than most weather radars! Beyond that, there is no difference in the products themselves between mesoscale imagery and CONUS imagery.

  6. The satellite’s ABI will scan each of these regions once per minute, or it can scan one region every 30 seconds. This results in satellite imagery that can update faster than most weather radars! Beyond that, there is no difference in the products themselves between mesoscale imagery and CONUS imagery.

  7. The satellite’s ABI will scan each of these regions once per minute, or it can scan one region every 30 seconds. This results in satellite imagery that can update faster than most weather radars! Beyond that, there is no difference in the products themselves between mesoscale imagery and CONUS imagery.

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