Software: Tableau

 

 

 

Develop a list of best practices for creating visualizations of numeric data.
Use your unit readings and other resources as necessary to develop the list of best practices.
Evaluate numeric data visualizations based upon best practices.
Based on the list of best practices, create a table comparing different visualization options for numeric data.
List at least five different types of visualizations for numeric data. Go beyond the list of visualizations you created in Unit 2 (which included a histogram, a stem-and-leaf plot, a dot plot, a box plot, a scatter plot, and a simple time series graph).
Include a link to a sample of each type of visualization.
Describe the value or purpose of each visualization.
Evaluate each sample according to the list of best practices you developed.
Apply best practices for visualizations of numeric data.
Based on the best practices, develop a new set of at least five unique visualizations for the numeric bank data. These can be different visualizations on the same variables or different visualizations across multiple numeric variables; include five different types of visualizations of numeric data. Be sure to create different types of visualizations than those you created with the los and readmissions data in Unit 2.
Your assignment will be graded according to the following criteria:

Develop a list of best practices for creating visualizations of numeric data.
Evaluate numeric data visualizations based upon best practices.
Describe the value or purpose of visualizations.
Apply best practices for visualizations of numeric data.
Present findings in a manner appropriate for an executive leadership audience.

 

 

 

Sample Solution

ily be tracked by monitoring the global sea level heights together with the seafloor morphology and glacial ice mensuration. This is due to the fact that sooner or later the glacial meltwater will end up in the oceans and due to the sped-up melting treated in 3.3 and 3.4, the rate will increase drastically in the future. It is also useful to create models of inundation, coastal erosion and potential storm damage in order to thwart these catastrophes since they are a predictable consequence of sea-level rise (National Research Council 2010, Chuvieco 2008). 3.6 Accumulating natural disasters The last point is the accumulation of extreme events. The USA experiences more and more record high temperatures every year, congruously the record low temperatures occur fewer than ever. However extreme events also include heat waves, droughts, floods, cyclones, and wildfires. Changes in the earth’s system diversity also follow as a response to weather and climate extremes. Species that prove unable to adapt to the new circumstances will ultimately disappear or have to surrender to more successfully adapted species. An increased number of strong blusters with mounting intensity is also an indicator for these extreme events, just like frequent insect infestations. Insects are the profiteers of global changes in wind patterns and/or sea level rise, as they can be transported great distances into regions usually not inhabited by them (Dukes 2009). Global changes can also cause epidemic diseases dangerous for humans, as wind and sea can transport disease vectors communicated by insects. Diseases are especially dangerous; As a side effect they result in the attenuation of a population’s resilience and ability to counteract or even respond to climate as well as other stressors. The consequences of such extremes range from the disruption of food production and water supply to increased rates of morbidity and mortality and consequences for the physical and psychological health of human beings (IPCC 2014). There are quite a few ways to survey climatic extremes, as these can be very diverse. In order to monitor severe storms, it is possible to track the annual storm number together with maximum wind speed, geographic storm tracks, precipitation and flash floods. With regard to insect infestations and whether they were dislocated, taking the number of insect infestations, the insect type, the land cover of the infestations, the crop impacts and the historic recurrence into account is helpful. Human diseases can be evaluated by the number and type of epidemics and the impacts they had concerning the fatalities or in general the number hospitalised, the historic recurrence and the geographically affected

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