Tobler's first law of geographyThe First Law of Geography, according to Waldo Tobler, is "everything is related to everything else, but near things are more related than distant things." This first law is the foundation of the fundamental concepts of spatial dependence and spatial autocorrelation and is utilized specifically for the inverse distance weighting method for spatial interpolation and to support the regionalized variable theory for kriging. The first law of geography is the fundamental assumption used in all spatial analysis.
Boundary problem (spatial analysis)A boundary problem in analysis is a phenomenon in which geographical patterns are differentiated by the shape and arrangement of boundaries that are drawn for administrative or measurement purposes. The boundary problem occurs because of the loss of neighbors in analyses that depend on the values of the neighbors. While geographic phenomena are measured and analyzed within a specific unit, identical spatial data can appear either dispersed or clustered depending on the boundary placed around the data.
Distance decayDistance decay is a geographical term which describes the effect of distance on cultural or spatial interactions. The distance decay effect states that the interaction between two locales declines as the distance between them increases. Once the distance is outside of the two locales' activity space, their interactions begin to decrease. It is thus an assertion that the mathematics of the inverse square law in physics can be applied to many geographic phenomena, and is one of the ways in which physics principles such as gravity are often applied metaphorically to geographic situations.
Arbia's law of geographyArbia’s law of geography states, "Everything is related to everything else, but things observed at a coarse spatial resolution are more related than things observed at a finer resolution." Originally proposed as the 2nd law of geography, this is one of several laws competing for that title. Because of this, Arbia's law is sometimes referred to as the second law of geography, or Arbia's second law of geography.
Technical geographyTechnical geography is the branch of geography that involves using, studying, and creating tools to obtain, analyze, interpret, understand, and communicate spatial information. The other branches, most commonly limited to human geography and physical geography, can usually apply the concepts and techniques of technical geography. However, the methods and theory are distinct, and a technical geographer may be more concerned with the technological and theoretical concepts than the nature of the data.
Analyse spatialevignette|200px|Carte de cas de choléra pendant l'épidémie de 1854 à Londres L'analyse spatiale est une approche géographique qui étudie les localisations et les interactions spatiales en tant que composantes actives des fonctionnements sociétaux. Elle part du postulat selon lequel l'espace est acteur organisé. C'est une science nomothétique donc elle vise à proposer une approche modélisée de l'espace géographique en mettant en évidence des formes récurrentes d'organisation spatiales et des théories, notamment à travers diverses notions-clés : distance, réseaux, structure, .
Pondération inverse à la distanceLa pondération inverse à la distance ou PID (en anglais, inverse distance weighting ou IDW) est une méthode d'interpolation spatiale, un processus permettant d'assigner une valeur à tout point d'un espace à partir d'un semis de points connus.
Modifiable temporal unit problemThe Modified Temporal Unit Problem (MTUP) is a source of statistical bias that occurs in time series and spatial analysis when using temporal data that has been aggregated into temporal units. In such cases, choosing a temporal unit (e.g., days, months, years) can affect the analysis results and lead to inconsistencies or errors in statistical hypothesis testing. The MTUP is closely related to the modifiable areal unit problem or MAUP, in that they both relate to the scale of analysis and the issue of choosing an appropriate analysis.
Problème d’agrégation spatialealt=MAUP distortion example|vignette|298x298px|Un exemple de problème d'agrégation spatiale et de distorsion du calcul NOTOC Un problème d’agrégation spatiale (en anglais, modifiable areal unit problem ou MAUP) est une source de biais statistique qui peut affecter radicalement les résultats dans les tests d’hypothèses statistiques. Elle agit lorsque les mesures de phénomènes spatiaux (ex. la densité de population) sont agrégées par secteur. Les sommaires résultants (ex.
Uncertain geographic context problemThe uncertain geographic context problem (UGCoP) is a source of statistical bias that can significantly impact the results of spatial analysis when dealing with aggregate data. The UGCoP is very closely related to the Modifiable areal unit problem (MAUP), and like the MAUP, arises from how we divide the land into areal units. It is caused by the difficulty, or impossibility, of understanding how phenomena under investigation (such as people within a census tract) in different enumeration units interact between enumeration units, and outside of a study area over time.