Plants reflect urban climate and soil conditions with remarkable precision. Using more than 80 million observations from ...
Advance Your GI Science Knowledge With MTU's Remote Sensing Certificate. Mountainous terrain, dense forests, swamps and wetlands, and coastal groves and mangroves. These are some examples of difficult ...
Remote-sensing technology allows engineers and scientists to map land, forests, water bodies, and minerals without physically ...
Remote Sensing Scientists use sensors to analyze data and solve regional, national, and global problems in areas such as natural resource management, urban planning, and climate and weather prediction ...
The American Association for the Advancement of Science (AAAS) is pleased to announce the launch of a new Science Partner Journal, Journal of Remote Sensing, published in affiliation with the ...
The environment is changing, particularly along our coasts where sea levels are rising. Knowing how to mitigate these changes requires a deeper understanding of how the coastal ocean responds to ...
The National Geospatial-Intelligence Agency is funding a team of Rochester Institute of Technology imaging scientists to study the limits of spectral remote sensing imaging systems. Led by principal ...
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Using aerial imagery data and LiDAR, a study remotely identified the hardest-hit areas of Southwest Florida's Estero Island in the aftermath of Hurricane Ian. Researchers estimated the extent of ...
Implementing roadside technology to detect high-emitting vehicles improves urban air quality. Cities that adopt roadside emissions sensors to detect high polluting vehicles, together with an ...
Analyze images and other data to solve problems across disciplines. Imagery and other data collected by satellites, crewed aircraft, and uncrewed aerial systems (UAS) are increasingly important for ...