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Grade 12 GIS Summary - Geography

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This document is a comprehensive summary of GIS (Geographical Information Systems) for Grade 12 Geography. It explains key concepts, data types, vector vs raster data, data sources, remote sensing, map overlays, buffering, spatial queries and practical exam applications. Clear, structured and perfect for revision.

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Voorbeeld van de inhoud

Geographical engineering system (GIS)
➔​ A computer-based tool that captures, stores, analyses, and displays geographically referenced
information

➔​ Purpose if to create, manage, analyze, and map all types of data →allows users to visualise
and analyze data related to locations on Earth's surface.



Examination of a selection of satellite images

Artificial satellites orbiting earth → some carry remote sensors that record data about earth and
transmit it to ground stations

➔​ Give info about: earthquakes, volcanoes, drought, floods, air pollution, crops, animal migration,
deforestation, urban growth, atmospheric process

Atmospheric data - data readings taken at different heights, of air temperature, pressure, humidity,
movement (winds), pollution, gas ingredients, cloudiness

GIS layer - a digital map of a specific element (roads, buildings, power lines, vegetation) that can be
viewed together with other layers for a complete overview of an area

GIS concepts




GIS allows us to create geographical knowledge (data) by:

●​ Measuring features on earth, in sea + in atmosphere
●​ Organising this data
●​ Analysing + modelling many geographical processes and their relationships more precisely

➔​ GIS helps scientists, planners and researchers more efficiently and accurately manage its
resources

➔​ GIS obtains new geographic data with remote sensing from satellites + aeroplanes

➢​ These collect data about the atmosphere, oceans, earth surface + material below
earths surface

, Remote sensing

★​ Method of obtaining data about the environment and the surface of earth from a distance
(satellites/air craft)

➔​ Every feature on earth (including in the sea/air) reflects electromagnetic energy

➔​ Instruments in satellites + aeroplanes called remote sensors measure this reflected energy

They do this by recording the electromagnetic radiation that is:

●​ Emitted by the sun + then reflected back into space continuously

●​ Emitted by the satellite in the form of microwave energy that is reflected back to the satellite

Resolution

★​ The sharpness of an image; a measure of the accuracy or detail of a graphic display expressed
as dots per inch, pixels per line or lines per millimeter

●​ Spatial resolution
●​ Spectral resolution
●​ Temporal resolution

Spatial resolution


★​ The size of an object that can be recorded; and the most usual measure is the pixel size

Pixel - the smallest single element in an image on a computer screen
- each pixel has an address defined by its coordinates

When pixels represent small areas of ground → the image will show greater detail: the image will have
a high spatial resolution

➔​ Many pixels used to make high resolution image

High resolution image - fine grained photo

Spectral resolution

★​ The bandwidth of the electromagnetic spectrum that is measured by a sensor


➔​ Remote sensors can collect data in visible part of the spectrum (to provide images like aerial
photographs)

➔​ Other sensors may collect data in invisible sectors like infrared and ultraviolet

➔​ A panchromatic (all colours) sensor has low spectral resolution

➔​ Sensor that record just green wavelength of light → has higher spectral resolution

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