Wildfires burned across Lebanon in mid-October, 2019. A pair of images taken just ten days apart by the European Space Agency's Sentinel-2A satellite show the burn scar from one of the larger wildfires. North of the fire scar is the country's capital, Beirut.
Videos
The USGS National Land Imaging Program supports a variety of geospatial data programs and projects, including the USGS Landsat Program. Browse the videos below to learn more about imagery and science supported through NLI.
Wildfires burned across Lebanon in mid-October, 2019. A pair of images taken just ten days apart by the European Space Agency's Sentinel-2A satellite show the burn scar from one of the larger wildfires. North of the fire scar is the country's capital, Beirut.
Image of the Week - Massive Berg Adrift in Antarctica
Image of the Week - Massive Berg Adrift in AntarcticaIn September of 2019, a 315 ton iceberg known as D28 broke free from the Amery Ice Shelf in Antarctica. The berg has a surface area of more than 600 square miles, roughly comparable to the size of the Hawaiian island of Oahu. It's the largest iceberg to calve from the ice shelf since the 1960s. (Imagery captured by Landsat satellites.)
Image of the Week - Massive Berg Adrift in Antarctica
Image of the Week - Massive Berg Adrift in AntarcticaIn September of 2019, a 315 ton iceberg known as D28 broke free from the Amery Ice Shelf in Antarctica. The berg has a surface area of more than 600 square miles, roughly comparable to the size of the Hawaiian island of Oahu. It's the largest iceberg to calve from the ice shelf since the 1960s. (Imagery captured by Landsat satellites.)
Image of the Week - Unplanted Acres in South Dakota
Image of the Week - Unplanted Acres in South DakotaAbnormally high spring rainfall and subsequent flooding in the Midwest had a season-long impact on cropland production. In these Landsat images of South Dakota growing vegetation is shown as green and unplanted areas appear pink. The difference between 2018 and 2019 is striking.
Image of the Week - Unplanted Acres in South Dakota
Image of the Week - Unplanted Acres in South DakotaAbnormally high spring rainfall and subsequent flooding in the Midwest had a season-long impact on cropland production. In these Landsat images of South Dakota growing vegetation is shown as green and unplanted areas appear pink. The difference between 2018 and 2019 is striking.
Satellite imagery shows the rupture and shifting of land near Ridgecrest, CA from the July 2019 earthquakes.
Satellite imagery shows the rupture and shifting of land near Ridgecrest, CA from the July 2019 earthquakes.
Before landing on the surface of the moon in 1969, astronauts Neil Armstrong and Buzz Aldrin needed a training ground that matched their destination's cratered surface.
Before landing on the surface of the moon in 1969, astronauts Neil Armstrong and Buzz Aldrin needed a training ground that matched their destination's cratered surface.
A Landsat satellite image captured the flooding in Dell Rapids, SD in the Spring of 2019. It's remarkably similar to an aerial photograph of flooding 50 years earlier.
A Landsat satellite image captured the flooding in Dell Rapids, SD in the Spring of 2019. It's remarkably similar to an aerial photograph of flooding 50 years earlier.
Using the Compare Browse Function in EarthExplorer
Using the Compare Browse Function in EarthExplorerThis tutorial explains how to use the compare browse functionality in EarthExplorer to preview Landsat scenes prior to downloading.
Using the Compare Browse Function in EarthExplorer
Using the Compare Browse Function in EarthExplorerThis tutorial explains how to use the compare browse functionality in EarthExplorer to preview Landsat scenes prior to downloading.
MODIS and VIIRS Observe Snowpack in the Sierra Nevada Mountain Range
MODIS and VIIRS Observe Snowpack in the Sierra Nevada Mountain RangeThe Moderate Resolution Imaging Spectroradiometer (MODIS) sensor is located onboard NASA’s Terra and Aqua satellites. The Visible Infrared Imaging Radiometer Suite (VIIRS) sensor is located onboard the joint NASA/NOAA Suomi National Polar-Orbiting Partnership (S-NPP) and data products created by NASA provide a continuation of the MODIS data heritage.
MODIS and VIIRS Observe Snowpack in the Sierra Nevada Mountain Range
MODIS and VIIRS Observe Snowpack in the Sierra Nevada Mountain RangeThe Moderate Resolution Imaging Spectroradiometer (MODIS) sensor is located onboard NASA’s Terra and Aqua satellites. The Visible Infrared Imaging Radiometer Suite (VIIRS) sensor is located onboard the joint NASA/NOAA Suomi National Polar-Orbiting Partnership (S-NPP) and data products created by NASA provide a continuation of the MODIS data heritage.
Observe changes in land surface temperature over the course of 2017, with Terra MODIS images. The images were created using the 8-day composite Terra MODIS LST data product (MOD11C2).
Observe changes in land surface temperature over the course of 2017, with Terra MODIS images. The images were created using the 8-day composite Terra MODIS LST data product (MOD11C2).
February 11 will mark the 5th anniversary of the launch of Landsat 8!
Since 2013, over 1.1 million scenes have been acquired, adding to the Landsat archive which started almost 45 years ago, and continue to help support studies in agriculture, forest and water quality/use/management, natural disasters, and land change.
February 11 will mark the 5th anniversary of the launch of Landsat 8!
Since 2013, over 1.1 million scenes have been acquired, adding to the Landsat archive which started almost 45 years ago, and continue to help support studies in agriculture, forest and water quality/use/management, natural disasters, and land change.
Getting Started with MODIS Version 6 Therm. Anom. & Fire Data Part 1
Getting Started with MODIS Version 6 Therm. Anom. & Fire Data Part 1This video focuses on the National Aeronautics and Space Administration’s (NASA) Terra and Aqua Moderate Resolution Imaging Spectroradiometer (MODIS) Version 6 Thermal Anomalies and Fire data distributed by NASA’s Land Processes Distributed Active Archive Center (LP DAAC).
Getting Started with MODIS Version 6 Therm. Anom. & Fire Data Part 1
Getting Started with MODIS Version 6 Therm. Anom. & Fire Data Part 1This video focuses on the National Aeronautics and Space Administration’s (NASA) Terra and Aqua Moderate Resolution Imaging Spectroradiometer (MODIS) Version 6 Thermal Anomalies and Fire data distributed by NASA’s Land Processes Distributed Active Archive Center (LP DAAC).
Getting Started with MODIS Version 6 Therm. Anom. and Fire Data Part 2
Getting Started with MODIS Version 6 Therm. Anom. and Fire Data Part 2This video focuses on the National Aeronautics and Space Administration’s (NASA) Terra and Aqua Moderate Resolution Imaging Spectroradiometer (MODIS) Version 6 Thermal Anomalies and Fire data distributed by NASA’s Land Processes Distributed Active Archive Center (LP DAAC).
Getting Started with MODIS Version 6 Therm. Anom. and Fire Data Part 2
Getting Started with MODIS Version 6 Therm. Anom. and Fire Data Part 2This video focuses on the National Aeronautics and Space Administration’s (NASA) Terra and Aqua Moderate Resolution Imaging Spectroradiometer (MODIS) Version 6 Thermal Anomalies and Fire data distributed by NASA’s Land Processes Distributed Active Archive Center (LP DAAC).
Getting Started with MODIS Version 6 Therm. Anom. & Fire Data Part 3
Getting Started with MODIS Version 6 Therm. Anom. & Fire Data Part 3This video focuses on the National Aeronautics and Space Administration’s (NASA) Terra and Aqua Moderate Resolution Imaging Spectroradiometer (MODIS) Version 6 Thermal Anomalies and Fire data distributed by NASA’s Land Processes Distributed Active Archive Center (LP DAAC).
Getting Started with MODIS Version 6 Therm. Anom. & Fire Data Part 3
Getting Started with MODIS Version 6 Therm. Anom. & Fire Data Part 3This video focuses on the National Aeronautics and Space Administration’s (NASA) Terra and Aqua Moderate Resolution Imaging Spectroradiometer (MODIS) Version 6 Thermal Anomalies and Fire data distributed by NASA’s Land Processes Distributed Active Archive Center (LP DAAC).
Landsat Collections: Providing a Stable Environmental Record for Time Series Analysis
Landsat Collections: Providing a Stable Environmental Record for Time Series Analysis
The imagery featured in this video was created using data distributed by the National Aeronautics and Space Administration’s (NASA) Land Processes Distributed Active Archive Center (LP DAAC).
The imagery featured in this video was created using data distributed by the National Aeronautics and Space Administration’s (NASA) Land Processes Distributed Active Archive Center (LP DAAC).
The U.S. Geological Survey (USGS) has improved Landsat data quality and usability through the creation of Analysis Ready Data (ARD) for the conterminous United States, Alaska, and Hawaii. Landsat ARD greatly reduces the preparatory work currently required to do time-series analysis for understanding landscape change for operational and science users.
The U.S. Geological Survey (USGS) has improved Landsat data quality and usability through the creation of Analysis Ready Data (ARD) for the conterminous United States, Alaska, and Hawaii. Landsat ARD greatly reduces the preparatory work currently required to do time-series analysis for understanding landscape change for operational and science users.
The 2017 Atlantic Hurricane season has seen several hurricanes in a row during the months of August, September, and October. Follow along with this video to see satellite imagery of hurricanes and tropical storms during this time period.
The 2017 Atlantic Hurricane season has seen several hurricanes in a row during the months of August, September, and October. Follow along with this video to see satellite imagery of hurricanes and tropical storms during this time period.
This is the third video in a series describing the new U.S. Geological Survey (USGS) Landsat Collection 1 inventory structure. Collection 1 required the reprocessing of all archived Landsat data to achieve radiometric and geometric consistency of Level-1 products through time and across all Landsat sensors.
This is the third video in a series describing the new U.S. Geological Survey (USGS) Landsat Collection 1 inventory structure. Collection 1 required the reprocessing of all archived Landsat data to achieve radiometric and geometric consistency of Level-1 products through time and across all Landsat sensors.
Getting Started with VIIRS Surface Reflectance Data Part 1
Getting Started with VIIRS Surface Reflectance Data Part 1Getting Started with VIIRS Surface Reflectance Data Part 1: All About Accessing Data
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Getting Started with VIIRS Surface Reflectance Data Part 1
Getting Started with VIIRS Surface Reflectance Data Part 1Getting Started with VIIRS Surface Reflectance Data Part 1: All About Accessing Data
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Getting Started with VIIRS Surface Reflectance Data Part 2
Getting Started with VIIRS Surface Reflectance Data Part 2Getting Started with VIIRS Surface Reflectance Data Part 2: Using the Data
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Getting Started with VIIRS Surface Reflectance Data Part 2
Getting Started with VIIRS Surface Reflectance Data Part 2Getting Started with VIIRS Surface Reflectance Data Part 2: Using the Data
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USGS Public Lecture: Warm Ice—Dynamics of Rapidly Changing Glaciers
USGS Public Lecture: Warm Ice—Dynamics of Rapidly Changing Glaciers- Glacier Numerology – The how big, how long, how thick, how much, how often, of glacier science.
- Glacier Photography – While a picture may be worth a thousand words, a collection of images may tell a complete forensic story.
USGS Public Lecture: Warm Ice—Dynamics of Rapidly Changing Glaciers
USGS Public Lecture: Warm Ice—Dynamics of Rapidly Changing Glaciers- Glacier Numerology – The how big, how long, how thick, how much, how often, of glacier science.
- Glacier Photography – While a picture may be worth a thousand words, a collection of images may tell a complete forensic story.