![]() ![]() However, graphical techniques (such as categorized graphs discussed in this section) offer unique advantages that cannot be substituted by any computational method alone: they can reveal patterns that cannot be easily quantified (e.g., complex interactions, exceptions, anomalies) and they provide unique, multidimensional, global analytic perspectives to explore or “ mine” the data.Ĭategorized graphs (the term first used in STATISTICA software by StatSoft in 1990 also recently called Trellis graphs, by Becker, Cleveland, and Clark, at Bell Labs) produce a series of 2D, 3D, ternary, or nD graphs (such as histograms, scatterplots, line plots, surface plots, ternary scatterplots, etc.), one for each selected category of cases (i.e., subset of cases), for example, respondents from New York, Chicago, Dallas, etc. There are many computational techniques that capitalize on grouping and that are designed to quantify the differences that the grouping will reveal (e.g., ANOVA/MANOVA). The regression slopes can be different in different experimental groups. The process capability indices or capability histograms can be different for periods of time supervised by different operators. A promising relation between taking a drug and a decrease of the cholesterol level may be present only in women with a low blood pressure and only in their thirties and forties. For example: A positive relation between the age and the risk of a heart attack may be different in males and females (it may be stronger in males). This common technique is known under a variety of terms (such as breaking down, grouping, categorizing, splitting, slicing, drilling-down, or conditioning) and it is used both in exploratory data analyses and hypothesis testing. One of the most important, general, and also powerful analytic methods involves dividing (“splitting”) the data set into categories in order compare the patterns of data between the resulting subsets. Brief Overviews of Types of Graphs 2D Graphs ![]()
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