GIS Data Collection, Analysis, Visualization and Mapping Course
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GIS Data Collection, Analysis, Visualization and Mapping Course

10 Days Online - Virtual Training

NB: HOW TO REGISTER TO ATTEND

Please choose your preferred schedule.Fill out the form with your personal and organizational details and submit it. We will promptly process your invitation letter and invoice to facilitate your attendance at our workshops. We eagerly anticipate your registration and participation in our Skill Impact Trainings. Thank you.

# Start Date End Date Duration Location Registration
53 25/11/2024 06/12/2024 10 Days Live Online Training
54 02/12/2024 13/12/2024 10 Days Live Online Training
55 09/12/2024 20/12/2024 10 Days Live Online Training
56 16/12/2024 27/12/2024 10 Days Live Online Training
57 16/12/2024 27/12/2024 10 Days Live Online Training
58 23/12/2024 03/01/2025 10 Days Live Online Training
59 06/01/2025 17/01/2025 10 Days Live Online Training
60 20/01/2025 31/01/2025 10 Days Live Online Training
61 03/02/2025 14/02/2025 10 Days Live Online Training
62 03/02/2025 14/02/2025 10 Days Live Online Training
63 17/02/2025 28/02/2025 10 Days Live Online Training
64 03/03/2025 14/03/2025 10 Days Live Online Training
65 17/03/2025 28/03/2025 10 Days Live Online Training
66 31/03/2025 11/04/2025 10 Days Live Online Training
67 14/04/2025 25/04/2025 10 Days Live Online Training
68 28/04/2025 09/05/2025 10 Days Live Online Training
69 12/05/2025 23/05/2025 10 Days Live Online Training
70 26/05/2025 06/06/2025 10 Days Live Online Training
71 09/06/2025 20/06/2025 10 Days Live Online Training
72 23/06/2025 04/07/2025 10 Days Live Online Training

GIS Data Collection, Analysis, Visualization, and Mapping Course

Introduction

The GIS Data Collection, Analysis, Visualization, and Mapping Course is designed to equip professionals with the essential skills to gather, analyze, and visualize geographic data for informed decision-making. Geographic Information Systems (GIS) play a crucial role in many industries, including urban planning, environmental management, transportation, and infrastructure development. This course will provide participants with practical knowledge of GIS software tools like QGIS, ArcGIS, and other open-source platforms, enabling them to handle complex datasets and create accurate maps and visualizations. With the rising demand for GIS specialists, this course offers a pathway to mastering spatial data management and geospatial analysis.

Participants will gain hands-on experience in data collection techniques, including GPS surveying, remote sensing, and using mobile applications for field data gathering. The course covers the complete GIS workflow, from data import and processing to spatial analysis and map creation. Through case studies, participants will learn how GIS is applied in real-world scenarios such as land use planning, environmental monitoring, and disaster management. This course is ideal for professionals looking to enhance their GIS data analysis skills and create impactful maps for decision-making.

Course Objectives

  1. Understand the fundamentals of GIS data collection techniques, including GPS, remote sensing, and field data.
  2. Learn how to process and manage spatial datasets using GIS software.
  3. Perform spatial analysis and geospatial modeling to solve real-world problems.
  4. Gain skills in data visualization and creating effective GIS maps.
  5. Explore the use of open-source GIS tools like QGIS and their applications.
  6. Learn about data formats such as shapefiles, GeoTIFF, and GeoJSON.
  7. Apply GIS in fields like urban planning, environmental management, and disaster mitigation.
  8. Understand how to integrate satellite imagery with GIS data for enhanced analysis.
  9. Analyze case studies in GIS for sustainable development and infrastructure projects.
  10. Develop proficiency in creating professional maps with layers, legends, and geospatial features.

Organization Benefits

  1. Improve decision-making with accurate geospatial data and analysis.
  2. Streamline operations with efficient GIS data collection and mapping.
  3. Enhance planning for infrastructure, urban development, and resource management.
  4. Strengthen project outcomes with visual insights from GIS mapping.
  5. Increase organizational capacity in environmental monitoring and disaster response.
  6. Facilitate spatial analysis for better land use and zoning decisions.
  7. Improve cross-department collaboration through shared geospatial platforms.
  8. Optimize data management processes with open-source GIS tools.
  9. Develop customized GIS solutions for various business needs.
  10. Boost innovation by applying GIS technologies to solve complex geographic challenges.

Target Participants

  • GIS Professionals seeking to enhance their skills in data collection, analysis, and mapping.
  • Urban Planners involved in land use, zoning, and infrastructure planning.
  • Environmental Scientists and managers focused on natural resource management and monitoring.
  • Disaster Response Teams looking to improve preparedness and response using GIS mapping.
  • Surveyors and geospatial analysts working in data collection for construction and infrastructure projects.
  • Academics and Researchers interested in applying GIS for geospatial analysis.
  • Government Officials responsible for spatial data management and planning.
  • Data Analysts working in organizations that require spatial insights and map visualizations.
  • Civil Engineers involved in the planning and management of infrastructure using GIS tools.
  • NGO Workers and professionals working on community development projects requiring spatial data analysis.

Course Outline

Module 1: Introduction to GIS and Spatial Data

  1. Overview of GIS concepts and principles.
  2. Understanding geospatial data types: vector and raster.
  3. Common GIS data formats: shapefiles, GeoJSON, KML, etc.
  4. Importing and managing spatial data in GIS software.
  5. Case Study: Applications of GIS in urban planning.
  6. Exploring GIS tools: QGIS and ArcGIS.

Module 2: Data Collection Techniques for GIS

  1. Methods of data collection: GPS, remote sensing, field surveys.
  2. Integrating mobile GIS for field data gathering.
  3. Using satellite imagery in GIS analysis.
  4. Real-time data collection with GPS and mobile apps.
  5. Case Study: Using GIS for natural disaster management.
  6. Data validation and quality control in field surveys.

Module 3: GIS Data Processing and Management

  1. Organizing spatial datasets for effective management.
  2. Introduction to geoprocessing tools.
  3. Handling large datasets with spatial databases.
  4. Automating workflows with GIS scripting tools.
  5. Case Study: GIS data processing in environmental monitoring.
  6. Best practices for data storage and backups.

Module 4: Spatial Analysis Techniques

  1. Performing spatial queries and analysis.
  2. Georeferencing maps and data layers.
  3. Analyzing proximity, overlays, and buffers in GIS.
  4. Using GIS for land use planning and zoning analysis.
  5. Case Study: Spatial analysis in transportation network planning.
  6. Exploring advanced tools like geostatistics.

Module 5: GIS Data Visualization and Mapping

  1. Designing effective maps with GIS visualization tools.
  2. Adding layers, legends, and annotations to maps.
  3. Exploring color schemes and symbology in map design.
  4. Creating dynamic maps for data visualization.
  5. Case Study: Using GIS to map biodiversity and ecosystems.
  6. Exporting and sharing maps in multiple formats.

Module 6: GIS Software and Tools

  1. Introduction to QGIS and its functionalities.
  2. Overview of ArcGIS and its applications.
  3. Exploring open-source alternatives to ArcGIS.
  4. Integrating web GIS platforms for real-time mapping.
  5. Case Study: Leveraging QGIS for community planning.
  6. Troubleshooting common issues in GIS software.

Module 7: Remote Sensing and GIS Integration

  1. Overview of remote sensing technologies.
  2. Integrating satellite imagery with GIS data.
  3. Using remote sensing for land cover mapping.
  4. Case Study: Remote sensing for agricultural monitoring.
  5. Analyzing temporal changes using remote sensing data.
  6. Best practices for satellite data processing.

Module 8: GIS in Environmental Management

  1. Applications of GIS in environmental monitoring.
  2. Using GIS to track wildlife and natural resources.
  3. Case Study: GIS for monitoring deforestation.
  4. Modeling environmental risks with spatial data.
  5. Creating environmental impact maps for project assessments.
  6. Managing ecosystems using GIS tools.

Module 9: GIS for Urban Planning and Infrastructure Development

  1. Role of GIS in urban planning.
  2. Using GIS for transportation and infrastructure mapping.
  3. Case Study: GIS in smart city development.
  4. Analyzing population density and land use with GIS.
  5. GIS applications in utility management.
  6. Planning urban green spaces using GIS.

Module 10: GIS for Disaster Management

  1. Introduction to GIS for disaster preparedness.
  2. Using GIS to assess disaster risks and hazards.
  3. Mapping disaster-prone areas with spatial data.
  4. Case Study: GIS in flood risk management.
  5. Developing early warning systems using GIS.
  6. Post-disaster recovery planning with GIS.

Module 11: Advanced GIS Applications

  1. Introduction to geospatial modeling.
  2. Using GIS for spatial decision-making.
  3. Case Study: Advanced GIS
  4. Analyzing climate change impacts with GIS.
  5. Exploring 3D GIS applications in infrastructure.
  6. Automating processes using Python in GIS.

Module 12: GIS Project Management

  1. Planning and managing GIS projects.
  2. Budgeting for GIS technology and resources.
  3. Case Study: Managing a large-scale GIS project
  4. Monitoring project progress with GIS.
  5. GIS project documentation and reporting.
  6. Strategies for ensuring successful GIS project delivery.

General Information

  1. Customized Training: All our courses can be tailored to meet the specific needs of participants.
  2. Language Proficiency: Participants should have a good command of the English language.
  3. Comprehensive Learning: Our training includes well-structured presentations, practical exercises, web-based tutorials, and collaborative group work. Our facilitators are seasoned experts with over a decade of experience.
  4. Certification: Upon successful completion of training, participants will receive a certificate from Foscore Development Center (FDC-K).
  5. Training Locations: Training sessions are conducted at Foscore Development Center (FDC-K) centers. We also offer options for in-house and online training, customized to the client's schedule.
  6. Flexible Duration: Course durations are adaptable, and content can be adjusted to fit the required number of days.
  7. Onsite Training Inclusions: The course fee for onsite training covers facilitation, training materials, two coffee breaks, a buffet lunch, and a Certificate of Successful Completion. Participants are responsible for their travel expenses, airport transfers, visa applications, dinners, health/accident insurance, and personal expenses.
  8. Additional Services: Accommodation, pickup services, freight booking, and visa processing arrangements are available upon request at discounted rates.
  9. Equipment: Tablets and laptops can be provided to participants at an additional cost.
  10. Post-Training Support: We offer one year of free consultation and coaching after the course.
  11. Group Discounts: Register as a group of more than two and enjoy a discount ranging from 10% to 50%.
  12. Payment Terms: Payment should be made before the commencement of the training or as mutually agreed upon, to the Foscore Development Center account. This ensures better preparation for your training.
  13. Contact Us: For any inquiries, please reach out to us at training@fdc-k.org or call us at +254712260031.
  14. Website: Visit our website at www.fdc-k.org for more information.

 

 

 

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