Temperature of diffusely emitting black body given radiation intensity Solution

STEP 0: Pre-Calculation Summary
Formula Used
Temperature = ((Radiation Intensity of Black Body*pi)/[Stefan-BoltZ])^0.25
T = ((Ib*pi)/[Stefan-BoltZ])^0.25
This formula uses 2 Constants, 2 Variables
Constants Used
[Stefan-BoltZ] - Stefan-Boltzmann Constant Value Taken As 5.670367E-8
pi - Archimedes' constant Value Taken As 3.14159265358979323846264338327950288
Variables Used
Temperature - (Measured in Kelvin) - Temperature is the degree or intensity of heat present in a substance or object.
Radiation Intensity of Black Body - (Measured in Watt per Square Meter Steradian) - Radiation intensity of black body is the intensity of radiation emitted by a black body.
STEP 1: Convert Input(s) to Base Unit
Radiation Intensity of Black Body: 200 Watt per Square Meter Steradian --> 200 Watt per Square Meter Steradian No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
T = ((Ib*pi)/[Stefan-BoltZ])^0.25 --> ((200*pi)/[Stefan-BoltZ])^0.25
Evaluating ... ...
T = 324.445813795041
STEP 3: Convert Result to Output's Unit
324.445813795041 Kelvin --> No Conversion Required
FINAL ANSWER
324.445813795041 324.4458 Kelvin <-- Temperature
(Calculation completed in 00.004 seconds)

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11 Diffuse Radiation Calculators

Radiosity given incident and reflected radiation
Go Radiosity = pi*(Intensity of Reflected Radiation+Intensity of Emitted Radiation)
Intensity of diffusely emitted radiation given radiosity and reflected radiation
Go Intensity of Emitted Radiation = Radiosity/pi-Intensity of Reflected Radiation
Intensity of diffusely reflected radiation given radiosity and emitted radiation
Go Intensity of Reflected Radiation = Radiosity/pi-Intensity of Emitted Radiation
Temperature of diffusely emitting black body given radiation intensity
Go Temperature = ((Radiation Intensity of Black Body*pi)/[Stefan-BoltZ])^0.25
Intensity of radiation emitted by black body at absolute temperature
Go Radiation Intensity of Black Body = ([Stefan-BoltZ]*(Temperature^4))/pi
Emissive power of diffusely emitted black body radiation given radiation intensity
Go Emissive Power of Black Body = pi*Radiation Intensity of Black Body
Radiation intensity given emissive power for diffusely emitting black body
Go Radiation Intensity of Black Body = Emissive Power of Black Body/pi
Intensity of diffusely incident radiation given irradiation
Go Intensity of Incident Radiation = Irradiation/pi
Irradiation for diffusely incident radiation
Go Irradiation = pi*Intensity of Incident Radiation
Emissive Power given Radiation Intensity for Diffusely Emitting Surface
Go Emitted Radiation = Radiation Intensity*pi
Radiation intensity given emissive power for diffusely emitting surface
Go Radiation Intensity = Emissive Power/pi

Temperature of diffusely emitting black body given radiation intensity Formula

Temperature = ((Radiation Intensity of Black Body*pi)/[Stefan-BoltZ])^0.25
T = ((Ib*pi)/[Stefan-BoltZ])^0.25

what is a black body?

A black body or blackbody is an idealized physical body that absorbs all incident electromagnetic radiation, regardless of frequency or angle of incidence. The name "black body" is given because it absorbs radiation in all frequencies, not because it only absorbs: a black body can emit black-body radiation.

How to Calculate Temperature of diffusely emitting black body given radiation intensity?

Temperature of diffusely emitting black body given radiation intensity calculator uses Temperature = ((Radiation Intensity of Black Body*pi)/[Stefan-BoltZ])^0.25 to calculate the Temperature, The Temperature of diffusely emitting black body given radiation intensity formula is defined as the temperature of a black body diffusely emitting radiation when the intensity of radiation is known. Temperature is denoted by T symbol.

How to calculate Temperature of diffusely emitting black body given radiation intensity using this online calculator? To use this online calculator for Temperature of diffusely emitting black body given radiation intensity, enter Radiation Intensity of Black Body (Ib) and hit the calculate button. Here is how the Temperature of diffusely emitting black body given radiation intensity calculation can be explained with given input values -> 324.4458 = ((200*pi)/[Stefan-BoltZ])^0.25.

FAQ

What is Temperature of diffusely emitting black body given radiation intensity?
The Temperature of diffusely emitting black body given radiation intensity formula is defined as the temperature of a black body diffusely emitting radiation when the intensity of radiation is known and is represented as T = ((Ib*pi)/[Stefan-BoltZ])^0.25 or Temperature = ((Radiation Intensity of Black Body*pi)/[Stefan-BoltZ])^0.25. Radiation intensity of black body is the intensity of radiation emitted by a black body.
How to calculate Temperature of diffusely emitting black body given radiation intensity?
The Temperature of diffusely emitting black body given radiation intensity formula is defined as the temperature of a black body diffusely emitting radiation when the intensity of radiation is known is calculated using Temperature = ((Radiation Intensity of Black Body*pi)/[Stefan-BoltZ])^0.25. To calculate Temperature of diffusely emitting black body given radiation intensity, you need Radiation Intensity of Black Body (Ib). With our tool, you need to enter the respective value for Radiation Intensity of Black Body and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
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