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Remote sensing allows for monitoring of changes over time by providing data and images from a distance. By analyzing multiple remote sensing images taken at different times, scientists can track changes in the environment, such as urban sprawl, deforestation, or sea level rise, over days, months, or years.

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How do you use remote sensing in controlling gully erosions?

Remote sensing can be used to monitor gully erosion by providing data on land surface changes over time, identifying erosion-prone areas, and assessing the extent of gully erosion. Satellite images and LiDAR data can be used to map gully features, track erosion rates, and inform erosion control measures. Remote sensing can also help in early detection of gully erosion and monitoring the effectiveness of erosion control interventions.


Which of geographys three key questions can the technology of remote sensing help us to answer?

Remote sensing technology can help us answer the question "where" by providing precise location information through satellite imagery and GPS. This technology allows us to map the Earth's surface, track changes over time, and monitor natural disasters or environmental changes from a distance.


How is using remote sensing more reliable and valuable for collecting data?

Because when you have feelings, your feelings come alive to become the greatest piece of history in the submarine. It also helps because science is just an alternative to religion such as catholic or lemon.


What are the differences between ground based research methods and remote sensing research methods?

In remote sensing, aircraft or satellites provide the platforms for sensing applications. The primary difference is that in the remote sensing methods, a lot more area can becovered in a very short period of time than with ground-based methods. There are details that cannot be resolved by the remote methods that can be determined on the ground, but there are trade offs with the two methods of investigation. More and more sophisticated way of "looking" at the ground from remote platforms continue to be developed. The location of South American temples hidden in the jungle is just one example of the capability of the remote platform.


What is the role of remote sensing in mineral exploration?

Remote sensing plays a crucial role in mineral exploration by providing valuable data on the Earth's surface without physical contact. It helps in identifying potential areas for mineral exploration by detecting geological features, alterations, and anomalies that indicate the presence of minerals. Remote sensing techniques like satellite imagery and hyperspectral imaging aid in reducing exploration costs and time by narrowing down areas for further detailed exploration.

Related Questions

What are five reasons for remote sencing?

Remote sensing provides valuable data for various applications, including environmental monitoring, urban planning, and disaster management. It allows for the collection of data over large areas without physical presence, making it efficient and cost-effective. Additionally, remote sensing can capture real-time information, aiding in timely decision-making and response efforts. Finally, it enables the analysis of changes over time, facilitating studies on climate change, land use, and resource management.


How could a scientist use satellites to determine whether a rain forest was becoming smaller over time?

remote sensing i think yea.


What are the uses of remote sensing?

The advantages of remote sensing include the ability to collect information over large spatial areas; to characterize natural features or physical objects on the ground; to observe surface areas and objects on a systematic basis and monitor their changes over time;


How do you use remote sensing in controlling gully erosions?

Remote sensing can be used to monitor gully erosion by providing data on land surface changes over time, identifying erosion-prone areas, and assessing the extent of gully erosion. Satellite images and LiDAR data can be used to map gully features, track erosion rates, and inform erosion control measures. Remote sensing can also help in early detection of gully erosion and monitoring the effectiveness of erosion control interventions.


Which of geographys three key questions can the technology of remote sensing help us to answer?

Remote sensing technology can help us answer the question "where" by providing precise location information through satellite imagery and GPS. This technology allows us to map the Earth's surface, track changes over time, and monitor natural disasters or environmental changes from a distance.


What does scientists do to collect data remotely?

Remote sensing is the small- or large-scaleacquisition of information of an object or phenomenon, by the use of either recording or real-time sensing device(s) to collect data in inaccessible areas etc.


How does the remote sensing and GIS contribute to geographic studies?

Remote sensing and Geographic Information Systems (GIS) significantly enhance geographic studies by providing tools for data collection, analysis, and visualization. Remote sensing allows for the acquisition of spatial data from satellite images and aerial surveys, enabling researchers to monitor environmental changes and land use patterns over time. GIS integrates and analyzes this data, facilitating complex spatial analyses and the creation of detailed maps. Together, they enable more informed decision-making in urban planning, environmental management, and disaster response.


What kind of information do remote sensing give?

Remote sensing provides a wide range of information about the Earth's surface and atmosphere by collecting data through satellite or aerial sensors. It can capture details on land use, vegetation health, soil moisture, water bodies, and urban development, as well as monitor environmental changes, weather patterns, and natural disasters. This data is crucial for applications in agriculture, forestry, urban planning, and climate studies, enabling informed decision-making and resource management. Additionally, remote sensing can help track changes over time, offering insights into trends and patterns.


What are the differences between ground based research methods and remote sensing research methods?

In remote sensing, aircraft or satellites provide the platforms for sensing applications. The primary difference is that in the remote sensing methods, a lot more area can becovered in a very short period of time than with ground-based methods. There are details that cannot be resolved by the remote methods that can be determined on the ground, but there are trade offs with the two methods of investigation. More and more sophisticated way of "looking" at the ground from remote platforms continue to be developed. The location of South American temples hidden in the jungle is just one example of the capability of the remote platform.


How is using remote sensing more reliable and valuable for collecting data?

Because when you have feelings, your feelings come alive to become the greatest piece of history in the submarine. It also helps because science is just an alternative to religion such as catholic or lemon.


What is the role of remote sensing in mineral exploration?

Remote sensing plays a crucial role in mineral exploration by providing valuable data on the Earth's surface without physical contact. It helps in identifying potential areas for mineral exploration by detecting geological features, alterations, and anomalies that indicate the presence of minerals. Remote sensing techniques like satellite imagery and hyperspectral imaging aid in reducing exploration costs and time by narrowing down areas for further detailed exploration.


What has the author Philip E Ardanuy written?

Philip E. Ardanuy has written: 'Remote sensing system engineering' -- subject(s): Systems engineering, Congresses, Orbiting geophysical satellites, Remote sensing, Artificial satellites in remote sensing, Design and construction 'Final report on the near-real-time TOMS, telecommunications, and meteorological support for the 1987 Airborne Antarctic Ozone Experiment' -- subject(s): Ozone, Antarctic regions, Airborne Antarctic Ozone Experiment