Time required to emit specified amount of radiation energy from black body Solution

STEP 0: Pre-Calculation Summary
Formula Used
Time interval or time period = Energy/([Stefan-BoltZ]*(Temperature^4)*Total Surface Area)
Δt = E/([Stefan-BoltZ]*(T^4)*SATotal)
This formula uses 1 Constants, 4 Variables
Constants Used
[Stefan-BoltZ] - Stefan-Boltzmann Constant Value Taken As 5.670367E-8
Variables Used
Time interval or time period - (Measured in Second) - Time interval or time period is the time duration between two events/entities of interest.
Energy - (Measured in Joule) - Energy is the amount of work done.
Temperature - (Measured in Kelvin) - Temperature is the degree or intensity of heat present in a substance or object.
Total Surface Area - (Measured in Square Meter) - Total Surface Area is the total area of the surface of a three-dimensional object.
STEP 1: Convert Input(s) to Base Unit
Energy: 240 Joule --> 240 Joule No Conversion Required
Temperature: 85 Kelvin --> 85 Kelvin No Conversion Required
Total Surface Area: 53 Square Meter --> 53 Square Meter No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
Δt = E/([Stefan-BoltZ]*(T^4)*SATotal) --> 240/([Stefan-BoltZ]*(85^4)*53)
Evaluating ... ...
Δt = 1.52984876712818
STEP 3: Convert Result to Output's Unit
1.52984876712818 Second --> No Conversion Required
FINAL ANSWER
1.52984876712818 1.529849 Second <-- Time interval or time period
(Calculation completed in 00.004 seconds)

Credits

Vallurupalli Nageswara Rao Vignana Jyothi Institute of Engineering and Technology (VNRVJIET), Hyderabad
Sai Venkata Phanindra Chary Arendra has created this Calculator and 100+ more calculators!
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8 Radiation Calculators

Thermal Resistance of black body surface due to radiation
Go Total Thermal Resistance = 1/(([Stefan-BoltZ])*Area*((Initial Temperature)^2+(Final Temperature)^2)* (Initial Temperature+Final Temperature)*Radiation Shape Factor(Geometry depended))
Temperature of black body to emit certain amount of radiation energy
Go Temperature = (Energy/([Stefan-BoltZ]*Total Surface Area*Time interval or time period))^0.25
Spectral black body emissive power Planck's law
Go Spectral Blackbody Emissive Power = (0.374177107*(10^(-15)))/((Wavelength^5)*(e^(0.014387752/(Wavelength*Temperature))-1))
Surface Area of Black Body required to Emit certain amount of Radiation Energy
Go Total Surface Area = Energy/([Stefan-BoltZ]*(Temperature^4)*Time interval or time period)
Time required to emit specified amount of radiation energy from black body
Go Time interval or time period = Energy/([Stefan-BoltZ]*(Temperature^4)*Total Surface Area)
Radiation energy emitted by black body in time interval given temperature
Go Energy = [Stefan-BoltZ]*Temperature^4*Total Surface Area*Time interval or time period
Radiation energy emitted by black body in time interval given emissive power
Go Energy = Emissive Power of Black Body*Surface Area*Time Interval from the Peak
Radiation energy emitted by black body per unit time and surface area
Go Heat Flux = [Stefan-BoltZ]*Temperature^4

Time required to emit specified amount of radiation energy from black body Formula

Time interval or time period = Energy/([Stefan-BoltZ]*(Temperature^4)*Total Surface Area)
Δt = E/([Stefan-BoltZ]*(T^4)*SATotal)

What is radiation energy?

In physics, radiation is the emission or transmission of energy in the form of waves or particles through space or through a material medium.

How to Calculate Time required to emit specified amount of radiation energy from black body?

Time required to emit specified amount of radiation energy from black body calculator uses Time interval or time period = Energy/([Stefan-BoltZ]*(Temperature^4)*Total Surface Area) to calculate the Time interval or time period, The Time required to emit specified amount of radiation energy from black body formula is defined as the time required for the black body to emit a specified amount of radiation from its surface. Time interval or time period is denoted by Δt symbol.

How to calculate Time required to emit specified amount of radiation energy from black body using this online calculator? To use this online calculator for Time required to emit specified amount of radiation energy from black body, enter Energy (E), Temperature (T) & Total Surface Area (SATotal) and hit the calculate button. Here is how the Time required to emit specified amount of radiation energy from black body calculation can be explained with given input values -> 1.529849 = 240/([Stefan-BoltZ]*(85^4)*53).

FAQ

What is Time required to emit specified amount of radiation energy from black body?
The Time required to emit specified amount of radiation energy from black body formula is defined as the time required for the black body to emit a specified amount of radiation from its surface and is represented as Δt = E/([Stefan-BoltZ]*(T^4)*SATotal) or Time interval or time period = Energy/([Stefan-BoltZ]*(Temperature^4)*Total Surface Area). Energy is the amount of work done, Temperature is the degree or intensity of heat present in a substance or object & Total Surface Area is the total area of the surface of a three-dimensional object.
How to calculate Time required to emit specified amount of radiation energy from black body?
The Time required to emit specified amount of radiation energy from black body formula is defined as the time required for the black body to emit a specified amount of radiation from its surface is calculated using Time interval or time period = Energy/([Stefan-BoltZ]*(Temperature^4)*Total Surface Area). To calculate Time required to emit specified amount of radiation energy from black body, you need Energy (E), Temperature (T) & Total Surface Area (SATotal). With our tool, you need to enter the respective value for Energy, Temperature & Total Surface Area 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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