Reflected Radiation given Incident, Absorbed and Transmitted Radiation Solution

STEP 0: Pre-Calculation Summary
Formula Used
Reflected Radiation = Incident Radiation-Absorbed Radiation-Transmitted Radiation
Gref = Gi-Gabs-Gtr
This formula uses 4 Variables
Variables Used
Reflected Radiation - (Measured in Watt per Square Meter) - The Reflected Radiation is the portion of incident radiation that is reflected off a surface, playing a crucial role in heat transfer and energy balance in various applications.
Incident Radiation - (Measured in Watt per Square Meter) - The Incident Radiation is the energy from electromagnetic waves striking a surface, influencing heat transfer and material interactions in various engineering applications.
Absorbed Radiation - (Measured in Watt per Square Meter) - The Absorbed Radiation is the portion of incident radiation energy that is absorbed by a material, influencing its temperature and thermal behavior.
Transmitted Radiation - (Measured in Watt per Square Meter) - The Transmitted Radiation is the portion of radiant energy that passes through a material, influencing heat transfer and energy efficiency in various applications.
STEP 1: Convert Input(s) to Base Unit
Incident Radiation: 600 Watt per Square Meter --> 600 Watt per Square Meter No Conversion Required
Absorbed Radiation: 390 Watt per Square Meter --> 390 Watt per Square Meter No Conversion Required
Transmitted Radiation: 120 Watt per Square Meter --> 120 Watt per Square Meter No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
Gref = Gi-Gabs-Gtr --> 600-390-120
Evaluating ... ...
Gref = 90
STEP 3: Convert Result to Output's Unit
90 Watt per Square Meter --> No Conversion Required
FINAL ANSWER
90 Watt per Square Meter <-- Reflected Radiation
(Calculation completed in 00.020 seconds)

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Absorptivity, Reflectivity and Transmissivity Calculators

Absorbed Radiation using Incident, Reflected and Transmitted Radiation
​ LaTeX ​ Go Absorbed Radiation = Incident Radiation-Reflected Radiation-Transmitted Radiation
Absorbed Radiation using Absorptivity and Incident Radiation
​ LaTeX ​ Go Absorbed Radiation = Absorptivity*Incident Radiation
Absorptivity
​ LaTeX ​ Go Absorptivity = Absorbed Radiation/Incident Radiation
Absorptivity using Reflectivity and Transmissivity
​ LaTeX ​ Go Absorptivity = 1-Reflectivity-Transmissivity

Reflected Radiation given Incident, Absorbed and Transmitted Radiation Formula

​LaTeX ​Go
Reflected Radiation = Incident Radiation-Absorbed Radiation-Transmitted Radiation
Gref = Gi-Gabs-Gtr

What is Reflected Radiation?

When radiation strikes a surface, part of it is absorbed, part of it is reflected, and the remaining part, if any, is transmitted. The part of the incident radiation which is reflected is known as reflected radiation.

How to Calculate Reflected Radiation given Incident, Absorbed and Transmitted Radiation?

Reflected Radiation given Incident, Absorbed and Transmitted Radiation calculator uses Reflected Radiation = Incident Radiation-Absorbed Radiation-Transmitted Radiation to calculate the Reflected Radiation, Reflected Radiation given Incident, Absorbed and Transmitted Radiation formula is defined as a measure of the amount of radiation that is bounced back by a surface after it has absorbed and transmitted some of the incident radiation, providing valuable information about the surface's properties and behavior. Reflected Radiation is denoted by Gref symbol.

How to calculate Reflected Radiation given Incident, Absorbed and Transmitted Radiation using this online calculator? To use this online calculator for Reflected Radiation given Incident, Absorbed and Transmitted Radiation, enter Incident Radiation (Gi), Absorbed Radiation (Gabs) & Transmitted Radiation (Gtr) and hit the calculate button. Here is how the Reflected Radiation given Incident, Absorbed and Transmitted Radiation calculation can be explained with given input values -> 90 = 600-390-120.

FAQ

What is Reflected Radiation given Incident, Absorbed and Transmitted Radiation?
Reflected Radiation given Incident, Absorbed and Transmitted Radiation formula is defined as a measure of the amount of radiation that is bounced back by a surface after it has absorbed and transmitted some of the incident radiation, providing valuable information about the surface's properties and behavior and is represented as Gref = Gi-Gabs-Gtr or Reflected Radiation = Incident Radiation-Absorbed Radiation-Transmitted Radiation. The Incident Radiation is the energy from electromagnetic waves striking a surface, influencing heat transfer and material interactions in various engineering applications, The Absorbed Radiation is the portion of incident radiation energy that is absorbed by a material, influencing its temperature and thermal behavior & The Transmitted Radiation is the portion of radiant energy that passes through a material, influencing heat transfer and energy efficiency in various applications.
How to calculate Reflected Radiation given Incident, Absorbed and Transmitted Radiation?
Reflected Radiation given Incident, Absorbed and Transmitted Radiation formula is defined as a measure of the amount of radiation that is bounced back by a surface after it has absorbed and transmitted some of the incident radiation, providing valuable information about the surface's properties and behavior is calculated using Reflected Radiation = Incident Radiation-Absorbed Radiation-Transmitted Radiation. To calculate Reflected Radiation given Incident, Absorbed and Transmitted Radiation, you need Incident Radiation (Gi), Absorbed Radiation (Gabs) & Transmitted Radiation (Gtr). With our tool, you need to enter the respective value for Incident Radiation, Absorbed Radiation & Transmitted Radiation and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
How many ways are there to calculate Reflected Radiation?
In this formula, Reflected Radiation uses Incident Radiation, Absorbed Radiation & Transmitted Radiation. We can use 1 other way(s) to calculate the same, which is/are as follows -
  • Reflected Radiation = Surface Reflectivity*Incident Radiation
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