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Weather Dashboard — Wells Tannery

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Environmental & Demographic Profile — Wells Tannery, PA (16691)

Postal region 16691 covers Wells Tannery, PA within Fulton County. With an estimated population of 297 residents and a population density of 4.0 people/sq mi, local atmospheric dynamics are regularly evaluated. Located in the America/New_York time zone, live monitoring tracks real-time shifts in ambient conditions.

Wells Tannery operates within a low-density regional landscape. While direct vehicle output is localized, air quality metrics remain susceptible to agricultural particulate movement and wide-area wind dispersal.

Geographic & Administrative Details

  • County: Fulton County
  • Coordinates: 40.0774, -78.1473
  • Timezone: America/New_York
  • Associated Regions: Fulton

Frequently Asked Questions About Wells Tannery Air Quality

What is the primary air pollutant in Wells Tannery, PA?

Primary pollutants monitored in Wells Tannery include Fine Particulate Matter (PM2.5), Coarse Particulate Matter (PM10), Ground-level Ozone (O₃), Carbon Monoxide (CO), Nitrogen Dioxide (NO₂), and Sulfur Dioxide (SO₂).

Is it safe to exercise outdoors today in Wells Tannery (16691)?

Safety depends on the live Air Quality Index (AQI). An index between 0 and 50 represents ideal conditions. If readings rise above 100, sensitive individuals should reduce outdoor exertion.

How often is air quality data updated for ZIP code 16691?

Telemetry feeds and station observations update live via atmospheric tracking models.

How Weather Data is Calculated

Weather measurements on AQIFinder.com are computed via high-resolution numerical weather prediction models and meteorological station observations provided directly through open API data sources.

1. Temperature & Atmospheric Physics

Air temperature measurements are recorded in degrees Celsius (°C). Sensors utilize radiation shields to filter interference from solar reflection, guaranteeing precise ambient readings.

2. Integration with Air Quality (AQI)

Atmospheric dynamics like boundary layer height, temperature inversions, and local wind fields directly determine particulate dispersal (PM2.5 / PM10) and chemical pollutant behavior.