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Assessing Strontium and Vulnerability to Strontium in Private Drinking…
Assessing Strontium and Vulnerability to Strontium in Private Drinking Water Systems in Virginia
Global Issues :globe_with_meridians:
Public Health :<3:
Bone Deterioration
Accesibility
Children
Possible Solutions :bulb:
Accessibility :fire:
Less Food Deserts
Higher Protein Diets
Higher Calcium Diets
Affordability : :explode:
Water Testing
PDW Mechanisms
Exploratory Strategies :pen:
Statistical Analysis
Model
Plots & R^2 Value
Quartile Values
Mean/Median
T-Tests
Min/Max Values
Kruskal-Wallis
RStudio 1.0.153
Results
No Softener = More Strontium
Water Softener = Less Strontium
Lower Income = More Strontium
Spatial Analysis - ArcMap
Geographical Hot Spots
Spatial Autocorrelation
Statistical Significance
Food Deserts
SNAP
Households without Vehicle (HUNV)
Water Quality Data
Low-Cost PDW Tests
EPA Method
Drinking Water Clinics
GPS Data From Collection
Water Samples
Geological Map
VAHWQP
US Census Data
Water Systems :star:
Regional
Coastal Plain
Piedmont
Blue Ridge
Ridge and Valley
Appalachian
Rock Influence
Rock Age
Rock Type
Not Mobilized Strontium
Igneous
Metamorphic
High in Strotium
Coal
Slate
Limestone
Shale
Sandstones
Watershed
Fertilizer Runoff
Increase Strontium
Proximity to Agriculture
Challenges :red_flag:
Safe Drinking Water Act :expressionless:
Only Public Water
Not Strotium
Gap in Safety
Strontium in Water :warning:
Geological Surroundings
Harms Bone Growth
Children
Social Vulnerabilities :silhouettes:
Water Testing :red_cross:
Good Diet :red_cross: