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Surface-volume-ratio of triakis tetrahedron given Area Solution

STEP 0: Pre-Calculation Summary
Formula Used
surface_to_volume_ratio = 4*(sqrt(11/2))*(sqrt((3*sqrt(11))/(5*Area)))
r = 4*(sqrt(11/2))*(sqrt((3*sqrt(11))/(5*A)))
This formula uses 1 Functions, 1 Variables
Functions Used
sqrt - Squre root function, sqrt(Number)
Variables Used
Area - The area is the amount of two-dimensional space taken up by an object. (Measured in Square Meter)
STEP 1: Convert Input(s) to Base Unit
Area: 50 Square Meter --> 50 Square Meter No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
r = 4*(sqrt(11/2))*(sqrt((3*sqrt(11))/(5*A))) --> 4*(sqrt(11/2))*(sqrt((3*sqrt(11))/(5*50)))
Evaluating ... ...
r = 1.87145819579688
STEP 3: Convert Result to Output's Unit
1.87145819579688 Hundred --> No Conversion Required
FINAL ANSWER
1.87145819579688 Hundred <-- surface to volume ratio
(Calculation completed in 00.000 seconds)

7 Surface-to-volume ratio of Triakis Tetrahedron Calculators

Surface-volume-ratio of triakis tetrahedron given Area
surface_to_volume_ratio = 4*(sqrt(11/2))*(sqrt((3*sqrt(11))/(5*Area))) Go
Surface-volume-ratio of triakis tetrahedron given Volume
surface_to_volume_ratio = 4*(sqrt(11/2))*(((3*sqrt(2))/(20*Volume))^(1/3)) Go
Surface-volume-ratio of triakis tetrahedron given Height
surface_to_volume_ratio = 4*(sqrt(11/2))*((3*sqrt(6))/(5*Height)) Go
Surface-to-volume ratio (A/V) of triakis tetrahedron given edge length of tetrahedron(a)
surface_to_volume_ratio = (4*sqrt(11))/(Side A*sqrt(2)) Go
Surface-volume-ratio of triakis tetrahedron given Edge length of pyramid(b)
surface_to_volume_ratio = 4*(sqrt(11/2))*(3/(5*Side B)) Go
Surface-volume-ratio of triakis tetrahedron given Midsphere radius
surface_to_volume_ratio = sqrt(11)/Radius Go
Surface-volume-ratio of triakis tetrahedron given Insphere radius
surface_to_volume_ratio = 3/Radius Go

Surface-volume-ratio of triakis tetrahedron given Area Formula

surface_to_volume_ratio = 4*(sqrt(11/2))*(sqrt((3*sqrt(11))/(5*Area)))
r = 4*(sqrt(11/2))*(sqrt((3*sqrt(11))/(5*A)))

What are properties of triakis tetrahedron?

The triakis tetrahedron can be seen as a tetrahedron with a triangular pyramid added to each face; that is, it is the Kleetope of the tetrahedron. It is very similar to the net for the 5-cell, as the net for a tetrahedron is a triangle with other triangles added to each edge, the net for the 5-cell a tetrahedron with pyramids attached to each face.

How to Calculate Surface-volume-ratio of triakis tetrahedron given Area?

Surface-volume-ratio of triakis tetrahedron given Area calculator uses surface_to_volume_ratio = 4*(sqrt(11/2))*(sqrt((3*sqrt(11))/(5*Area))) to calculate the surface to volume ratio, The Surface-volume-ratio of triakis tetrahedron given area formula is defined as what part of or fraction of total volume of triakis tetrahedron is the surface area. surface to volume ratio and is denoted by r symbol.

How to calculate Surface-volume-ratio of triakis tetrahedron given Area using this online calculator? To use this online calculator for Surface-volume-ratio of triakis tetrahedron given Area, enter Area (A) and hit the calculate button. Here is how the Surface-volume-ratio of triakis tetrahedron given Area calculation can be explained with given input values -> 1.871458 = 4*(sqrt(11/2))*(sqrt((3*sqrt(11))/(5*50))).

FAQ

What is Surface-volume-ratio of triakis tetrahedron given Area?
The Surface-volume-ratio of triakis tetrahedron given area formula is defined as what part of or fraction of total volume of triakis tetrahedron is the surface area and is represented as r = 4*(sqrt(11/2))*(sqrt((3*sqrt(11))/(5*A))) or surface_to_volume_ratio = 4*(sqrt(11/2))*(sqrt((3*sqrt(11))/(5*Area))). The area is the amount of two-dimensional space taken up by an object.
How to calculate Surface-volume-ratio of triakis tetrahedron given Area?
The Surface-volume-ratio of triakis tetrahedron given area formula is defined as what part of or fraction of total volume of triakis tetrahedron is the surface area is calculated using surface_to_volume_ratio = 4*(sqrt(11/2))*(sqrt((3*sqrt(11))/(5*Area))). To calculate Surface-volume-ratio of triakis tetrahedron given Area, you need Area (A). With our tool, you need to enter the respective value for Area 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 surface to volume ratio?
In this formula, surface to volume ratio uses Area. We can use 7 other way(s) to calculate the same, which is/are as follows -
  • surface_to_volume_ratio = (4*sqrt(11))/(Side A*sqrt(2))
  • surface_to_volume_ratio = 4*(sqrt(11/2))*(sqrt((3*sqrt(11))/(5*Area)))
  • surface_to_volume_ratio = 4*(sqrt(11/2))*(3/(5*Side B))
  • surface_to_volume_ratio = 4*(sqrt(11/2))*((3*sqrt(6))/(5*Height))
  • surface_to_volume_ratio = 3/Radius
  • surface_to_volume_ratio = sqrt(11)/Radius
  • surface_to_volume_ratio = 4*(sqrt(11/2))*(((3*sqrt(2))/(20*Volume))^(1/3))
Where is the Surface-volume-ratio of triakis tetrahedron given Area calculator used?
Among many, Surface-volume-ratio of triakis tetrahedron given Area calculator is widely used in real life applications like {FormulaUses}. Here are few more real life examples -
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