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      • The standard temperature decreases 2 °C or 3.5 °F for every 1,000 feet gained, and this is reasonably accurate up to 36,000 feet msl. From 36,000 feet to 80,000 feet msl, the temperature zone is considered constant around –55 °C or –65 °F.
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  2. Jan 18, 2024 · The result of the product will be the temperature difference: 32360 * 0.00356 = 115.2 °F. Since the temperature decreases in this layer, we subtract 115.2 °F from the temperature at 2640 ft to get the temperature at our desired altitude. 59 - 115.2 = -56.2 °F. Temperature at 35000 feet : -56.2 °F.

  3. Aug 31, 2022 · 🙋 Input the desired starting temperature in our temperature at altitude calculator and find the corresponding altitude-temperature chart. You can also insert a specific altitude to obtain the numeric value!

  4. The "U.S. Standard Atmosphere 1976" is an atmospheric model of how the pressure, temperature, density, and viscosity of the Earth's atmosphere changes with altitude. It is defined as having a temperature of 288.15 K (15 o C, 59 o F) at the sea level 0 km geometrical height and 101325 Pa (1013.25 hPa, 1013.25 mbar, 760 mm Hg, 29.92 in Hg) .

  5. The average temperature range is 11.4 °C. [7] Variability throughout the year is small (standard deviation of 2.31 °C for the maximum monthly average and 4.11 °C for the minimum). The graph also shows the typical phenomenon of increased temperature ranges during winter.

  6. May 6, 2013 · Multiply that by 3.5, and divide by 1000, that’s 47.059 degrees change in temperature. 75.2F – 47.059 (initial temperature minus your change) and we get 28.141 F. Convert that back to C for your local usage, and that’s -2.144 C. Nice and chilly!

  7. en.wikipedia.org › wiki › FahrenheitFahrenheit - Wikipedia

    Fahrenheit temperature conversion formulae from Fahrenheit to Fahrenheit Celsius: x °F ≘ (x − 32) × 5 / 9 °C x °C ≘ (x × 9 / 5 + 32) °F Kelvin: x °F ≘ (x + 459.67) × 5 / 9 K x K ≘ (x × 9 / 5 − 459.67) °F Rankine: x °F ≘ (x + 459.67) °R x °R ≘ (x − 459.67) °F

  8. 1 day ago · The Fahrenheit temperature scale is a scale based on 32 degrees for the freezing point of water and 212 degrees for the boiling point of water, the interval between the two being divided into 180 equal parts.

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