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HOSTED BYEAGEHAGI FIRST ASIA PACIFIC MEETING ON NEAR SURFACE GEOSCIENCE AND ENGINEERING 1112 A PR I L 201 8 YO GYM K A R TA, I N D O N E S I AW W. E A G E. O R SPONSORSHIP & EXHIBITION OPPORTUNITIES
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01
Begin by gathering all the necessary data and information for your near surface geoscience study, such as geological maps, soil samples, and previous surveys or reports.
02
Identify the specific goals and objectives of your study. Determine what you hope to achieve and what specific parameters or properties you are interested in studying.
03
Plan your survey layout and design. This includes selecting appropriate survey methods and techniques, determining the spacing and layout of measurement points or lines, and defining the depth range you want to investigate.
04
Set up your equipment and instruments according to the chosen survey method. This may involve deploying ground-penetrating radar (GPR), electrical resistivity tomography (ERT), or other geophysical instruments and sensors.
05
Collect data by systematically measuring and recording the desired parameters at each designated survey point or line. Ensure quality control by following standardized procedures and taking multiple measurements for accuracy.
06
Process and analyze the collected data using specialized software or algorithms. This may involve filtering or removing noise, transforming raw measurements into interpretable images or profiles, and extracting relevant information or features.
07
Interpret the results of your geoscience study by comparing and correlating the collected data with existing knowledge or models. Identify trends, anomalies, or significant patterns that can contribute to understanding the subsurface geology or environmental conditions.
08
Document and report your findings, conclusions, and recommendations. Use clear and concise language, supported by appropriate visualizations or graphs, to communicate your results to relevant stakeholders or scientific communities.
09
Continuously improve your near surface geoscience skills and knowledge through further research, training, and experience. Stay updated with the latest developments in geophysical surveying and data analysis techniques.

Who needs on near surface geoscience?

01
Near surface geoscience is relevant and beneficial to various professionals and industries, including:
02
- Environmental consultants and engineers who assess and manage contamination risks, groundwater resources, or natural hazards in the near subsurface.
03
- Civil engineers and construction companies who need to understand the geological conditions and stability of the ground for infrastructure projects.
04
- Archaeologists and cultural heritage professionals who investigate subsurface features or artifacts for historical or conservation purposes.
05
- Geotechnical engineers and geologists who study soil properties and behavior for foundation design, slope stability analysis, or construction planning.
06
- Mining and mineral exploration companies who need to locate and characterize subsurface mineral deposits or resources.
07
- Agricultural experts and soil scientists who analyze soil composition, fertility, or moisture content for crop productivity and land management.
08
- Environmental scientists and researchers investigating climate change impacts, land-use planning, or ecosystem dynamics in near-surface environments.
09
- Hydrologists and water resource managers who study groundwater flow, aquifer properties, or contamination pathways in the subsurface.
10
- Geological and geophysical researchers who aim to improve understanding of near-surface processes, earth history, or geological formations.
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Near surface geoscience is the study of geological features and processes that occur close to the Earth's surface.
All companies involved in activities that have potential impacts on the near surface geoscience are required to file.
You can fill out on near surface geoscience by providing detailed information about the geoscience activities and potential impacts.
The purpose of on near surface geoscience is to assess and mitigate potential risks to the environment and surrounding communities.
Information such as location of activities, type of geoscience work, potential impacts, and mitigation measures must be reported.
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