Carlo Romano Marcello Alessandro Santagiustina, Matteo Iacopini
arXiv 29 Jun 2020 · Statistics — Methodology
arXiv:2006.16063 · PDF · DOI · OpenAlex · Extracted main text
We propose a user-friendly graphical tool, the half-disk density strip (HDDS), for visualizing and comparing probability density functions. The HDDS exploits color shading for representing a distribution in an intuitive way. In univariate settings, the half-disk density strip allows to immediately discern the key characteristics of a density, such as symmetry, dispersion, and multi-modality. In the multivariate settings, we define HDDS tables to generalize the concept of contingency tables. It is an array of half-disk density strips, which compactly displays the univariate marginal and conditional densities of a variable of interest, together with the joint and marginal densities of the conditioning variables. Moreover, HDDSs are by construction well suited to easily compare pairs of densities. To highlight the concrete benefits of the proposed methods, we show how to use HDDSs for analyzing income distribution and life-satisfaction, conditionally on continuous and categorical controls, from survey data. The code for implementing HDDS methods is made available through a dedicated R package.
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The works this paper leans on most, across its whole bibliography — not restricted to papers in our corpus. Ranked by composite intensity, which combines how often a work is mentioned, how many sections mention it, and how much of that falls in the main text rather than the appendix.
| Reference | Intensity | Mentions | Sections | Main text | |
|---|---|---|---|---|---|
| 1 | Christopher H Jackson (2008) Displaying uncertainty with shading | 1.000 | 7 | 4 | 100% |
| 2 | Adrian W Bowman (2019) Graphics for uncertainty | 0.843 | 3 | 3 | 100% |
| 3 | Andrew Gelman, Cristian Pasarica, and Rahul Dodhia (2002) Let's practice what we preach: turning tables into graphs | 0.737 | 3 | 2 | 100% |
| 4 | Chun-houh Chen, Wolfgang Karl Härdle, and Antony Unwin (2007) Handbook of data visualization | 0.644 | 2 | 2 | 100% |
| 5 | Marc Vandemeulebroecke, Mark Baillie, Alison Margolskee, and Baldur… (2019) Effective visual communication for the quantitative scientist | 0.511 | 2 | 1 | 100% |
| 6 | Peter Fox and James Hendler (2011) Changing the equation on scientific data visualization | 0.405 | 1 | 1 | 100% |
| 7 | Ben Shneiderman (2014) The big picture for big data: Visualization | 0.405 | 1 | 1 | 100% |
| 8 | Jacques Bertin (2011) Graphics and graphic information processing | 0.405 | 1 | 1 | 100% |
| 9 | Marianne Bertrand, Emir Kamenica, and Jessica Pan (2015) Gender identity and relative income within households | 0.405 | 1 | 1 | 100% |
| 10 | Christopher J Boyce, Gordon DA Brown, and Simon C Moore (2010) Money and happiness: Rank of income, not income, affects life satisfaction | 0.405 | 1 | 1 | 100% |
Showing the top 10 of 20 scored citations.