Total Surface Area of Spherical Sector given Surface to Volume Ratio Solution

STEP 0: Pre-Calculation Summary
Formula Used
Total Surface Area of Spherical Sector = 2/3*pi*Surface to Volume Ratio of Spherical Sector*Spherical Radius of Spherical Sector^2*Spherical Cap Height of Spherical Sector
TSA = 2/3*pi*RA/V*rSphere^2*hCap
This formula uses 1 Constants, 4 Variables
Constants Used
pi - Archimedes' constant Value Taken As 3.14159265358979323846264338327950288
Variables Used
Total Surface Area of Spherical Sector - (Measured in Square Meter) - Total Surface Area of Spherical Sector is defined as the total quantity of two-dimensional space enclosed on the entire surface of the Spherical Sector.
Surface to Volume Ratio of Spherical Sector - (Measured in 1 per Meter) - Surface to Volume Ratio of Spherical Sector is defined as the numerical ratio of the total surface area of a Spherical Sector to the volume of the Spherical Sector.
Spherical Radius of Spherical Sector - (Measured in Meter) - Spherical Radius of Spherical Sector is the distance from centre to any point on the surface of the sphere from which the Spherical Sector is cut.
Spherical Cap Height of Spherical Sector - (Measured in Meter) - Spherical Cap Height of Spherical Sector is the vertical distance from the topmost point to the bottom level of the cap surface of the Spherical Sector.
STEP 1: Convert Input(s) to Base Unit
Surface to Volume Ratio of Spherical Sector: 0.6 1 per Meter --> 0.6 1 per Meter No Conversion Required
Spherical Radius of Spherical Sector: 10 Meter --> 10 Meter No Conversion Required
Spherical Cap Height of Spherical Sector: 4 Meter --> 4 Meter No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
TSA = 2/3*pi*RA/V*rSphere^2*hCap --> 2/3*pi*0.6*10^2*4
Evaluating ... ...
TSA = 502.654824574367
STEP 3: Convert Result to Output's Unit
502.654824574367 Square Meter --> No Conversion Required
FINAL ANSWER
502.654824574367 502.6548 Square Meter <-- Total Surface Area of Spherical Sector
(Calculation completed in 00.019 seconds)

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Total Surface Area of Spherical Sector Calculators

Total Surface Area of Spherical Sector given Spherical Cap Radius
​ LaTeX ​ Go Total Surface Area of Spherical Sector = pi/2*((Spherical Cap Radius of Spherical Sector^2)/Spherical Cap Height of Spherical Sector+Spherical Cap Height of Spherical Sector)*((2*Spherical Cap Height of Spherical Sector)+Spherical Cap Radius of Spherical Sector)
Total Surface Area of Spherical Sector given Volume and Spherical Cap Height
​ LaTeX ​ Go Total Surface Area of Spherical Sector = pi*sqrt((3*Volume of Spherical Sector)/(2*pi*Spherical Cap Height of Spherical Sector))*((2*Spherical Cap Height of Spherical Sector)+Spherical Cap Radius of Spherical Sector)
Total Surface Area of Spherical Sector given Surface to Volume Ratio and Spherical Cap Radius
​ LaTeX ​ Go Total Surface Area of Spherical Sector = (3*pi*(2*Spherical Cap Height of Spherical Sector+Spherical Cap Radius of Spherical Sector)^2)/(2*Spherical Cap Height of Spherical Sector*Surface to Volume Ratio of Spherical Sector)
Total Surface Area of Spherical Sector
​ LaTeX ​ Go Total Surface Area of Spherical Sector = pi*Spherical Radius of Spherical Sector*((2*Spherical Cap Height of Spherical Sector)+Spherical Cap Radius of Spherical Sector)

Total Surface Area of Spherical Sector given Surface to Volume Ratio Formula

​LaTeX ​Go
Total Surface Area of Spherical Sector = 2/3*pi*Surface to Volume Ratio of Spherical Sector*Spherical Radius of Spherical Sector^2*Spherical Cap Height of Spherical Sector
TSA = 2/3*pi*RA/V*rSphere^2*hCap

What is Spherical Sector?

In geometry, a Spherical Sector, also known as a spherical cone, is a portion of a sphere or of a ball defined by a conical boundary with apex at the center of the sphere. It can be described as the union of a spherical cap and the cone formed by the center of the sphere and the base of the cap. It is the three-dimensional analogue of the sector of a circle.

How to Calculate Total Surface Area of Spherical Sector given Surface to Volume Ratio?

Total Surface Area of Spherical Sector given Surface to Volume Ratio calculator uses Total Surface Area of Spherical Sector = 2/3*pi*Surface to Volume Ratio of Spherical Sector*Spherical Radius of Spherical Sector^2*Spherical Cap Height of Spherical Sector to calculate the Total Surface Area of Spherical Sector, Total Surface Area of Spherical Sector given Surface to Volume Ratio formula is defined as the total quantity of two dimensional space enclosed on the entire surface of the Spherical Sector, calculated using its surface to volume ratio. Total Surface Area of Spherical Sector is denoted by TSA symbol.

How to calculate Total Surface Area of Spherical Sector given Surface to Volume Ratio using this online calculator? To use this online calculator for Total Surface Area of Spherical Sector given Surface to Volume Ratio, enter Surface to Volume Ratio of Spherical Sector (RA/V), Spherical Radius of Spherical Sector (rSphere) & Spherical Cap Height of Spherical Sector (hCap) and hit the calculate button. Here is how the Total Surface Area of Spherical Sector given Surface to Volume Ratio calculation can be explained with given input values -> 502.6548 = 2/3*pi*0.6*10^2*4.

FAQ

What is Total Surface Area of Spherical Sector given Surface to Volume Ratio?
Total Surface Area of Spherical Sector given Surface to Volume Ratio formula is defined as the total quantity of two dimensional space enclosed on the entire surface of the Spherical Sector, calculated using its surface to volume ratio and is represented as TSA = 2/3*pi*RA/V*rSphere^2*hCap or Total Surface Area of Spherical Sector = 2/3*pi*Surface to Volume Ratio of Spherical Sector*Spherical Radius of Spherical Sector^2*Spherical Cap Height of Spherical Sector. Surface to Volume Ratio of Spherical Sector is defined as the numerical ratio of the total surface area of a Spherical Sector to the volume of the Spherical Sector, Spherical Radius of Spherical Sector is the distance from centre to any point on the surface of the sphere from which the Spherical Sector is cut & Spherical Cap Height of Spherical Sector is the vertical distance from the topmost point to the bottom level of the cap surface of the Spherical Sector.
How to calculate Total Surface Area of Spherical Sector given Surface to Volume Ratio?
Total Surface Area of Spherical Sector given Surface to Volume Ratio formula is defined as the total quantity of two dimensional space enclosed on the entire surface of the Spherical Sector, calculated using its surface to volume ratio is calculated using Total Surface Area of Spherical Sector = 2/3*pi*Surface to Volume Ratio of Spherical Sector*Spherical Radius of Spherical Sector^2*Spherical Cap Height of Spherical Sector. To calculate Total Surface Area of Spherical Sector given Surface to Volume Ratio, you need Surface to Volume Ratio of Spherical Sector (RA/V), Spherical Radius of Spherical Sector (rSphere) & Spherical Cap Height of Spherical Sector (hCap). With our tool, you need to enter the respective value for Surface to Volume Ratio of Spherical Sector, Spherical Radius of Spherical Sector & Spherical Cap Height of Spherical Sector 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 Total Surface Area of Spherical Sector?
In this formula, Total Surface Area of Spherical Sector uses Surface to Volume Ratio of Spherical Sector, Spherical Radius of Spherical Sector & Spherical Cap Height of Spherical Sector. We can use 3 other way(s) to calculate the same, which is/are as follows -
  • Total Surface Area of Spherical Sector = pi*Spherical Radius of Spherical Sector*((2*Spherical Cap Height of Spherical Sector)+Spherical Cap Radius of Spherical Sector)
  • Total Surface Area of Spherical Sector = pi/2*((Spherical Cap Radius of Spherical Sector^2)/Spherical Cap Height of Spherical Sector+Spherical Cap Height of Spherical Sector)*((2*Spherical Cap Height of Spherical Sector)+Spherical Cap Radius of Spherical Sector)
  • Total Surface Area of Spherical Sector = pi*sqrt((3*Volume of Spherical Sector)/(2*pi*Spherical Cap Height of Spherical Sector))*((2*Spherical Cap Height of Spherical Sector)+Spherical Cap Radius of Spherical Sector)
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