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University of Nairobi School of EngineeringUSING GEOGRAPHIC INFORMATION SYSTEMS (GIS) FOR INVENTORY OF SAFARI COM FOUNDATION PROJECTS. A CASE STUDY: NAIROBI COUNTYBYEDEMBA CHURCHILL MALIKA F56/68761/2011A
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How to fill out using geographic information systems:

01
Start by gathering all relevant data that you want to incorporate into the geographic information system (GIS). This can include maps, aerial imagery, satellite imagery, survey data, and any other spatial data that you have access to.
02
Once you have gathered the necessary data, import it into your GIS software. Most GIS software allows you to load different types of data, so make sure to choose the appropriate one for your specific data types.
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Organize your data layers. GIS software allows you to create different layers for different types of data. This helps in managing and analyzing your data more efficiently.
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Start digitizing. Digitizing refers to the process of converting analog or printed maps into a digital format that can be used in a GIS. Use the tools available in your GIS software to trace over the existing maps or aerial imagery to create new digital map layers.
05
Attribute your data. Each feature or object in your GIS should have associated attribute data. This can include information such as names, addresses, and other relevant details. Make sure to input this information accurately and consistently.
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Perform data analysis. GIS software provides a wide range of tools for analyzing your spatial data. You can perform spatial queries, overlay different data layers to identify patterns and relationships, perform geoprocessing operations, and much more.
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Generate reports and visualizations. Once you have analyzed your data, you can generate reports and visualizations to communicate your findings effectively. Use the tools available in your GIS software to create maps, charts, and graphs that convey the information in a clear and visually appealing way.

Who needs using geographic information systems:

01
Urban planners and city administrators: GIS can be used to analyze population growth, identify areas of high density, and plan for efficient transportation routes and infrastructure development.
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Environmental scientists and ecologists: GIS allows them to analyze patterns of biodiversity, track changes in land use, and monitor the impacts of climate change on natural ecosystems.
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Emergency management professionals: GIS can be used to identify high-risk areas prone to natural disasters, plan evacuation routes, and manage emergency response efforts.
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Business analysts: GIS can help in site selection for new businesses, analyzing customer demographics, identifying market trends, and optimizing supply chain logistics.
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Government agencies: GIS can be used for land management, zoning regulations, transportation planning, and resource allocation.
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Health professionals: GIS can assist in disease mapping, analyzing population health data, tracking the spread of epidemics, and identifying areas with high healthcare demand.
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Archaeologists and historians: GIS can help in mapping ancient civilizations, analyzing historical sites, and understanding changes in landscapes over time.
In conclusion, filling out using geographic information systems involves gathering and organizing data, digitizing maps, attributing data, analyzing spatial patterns, and generating reports and visualizations. GIS is a valuable tool for a wide range of professionals, including urban planners, environmental scientists, emergency management professionals, business analysts, government agencies, health professionals, archaeologists, and historians.
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Geographic Information Systems (GIS) is a system designed to capture, store, analyze, manage, and present spatial or geographic data.
Any individual or organization that needs to analyze or visualize spatial data may use Geographic Information Systems.
Users can input data through various methods such as on-screen digitizing, GPS, or importing existing data sets.
The purpose of using GIS is to better understand spatial relationships and patterns, make informed decisions, and solve complex problems.
The information reported in GIS can include spatial data about locations, attributes, relationships, and patterns.
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