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Circumsphere Radius of Snub Dodecahedron is the radius of the sphere that contains the Snub Dodecahedron in such a way that all the vertices are lying on the sphere. Check FAQs
rc=2-0.943151259241-0.943151259242((203)+(325+(105)))6(3-(([phi]2+[phi]-5272)13+([phi]2-[phi]-5272)13)2)32RA/V(((12((3[phi])+1))((([phi]2+[phi]-5272)13+([phi]2-[phi]-5272)13)2)-(((36[phi])+7)(([phi]2+[phi]-5272)13+([phi]2-[phi]-5272)13)))-((53[phi])+6))
rc - Circumsphere Radius of Snub Dodecahedron?RA/V - Surface to Volume Ratio of Snub Dodecahedron?[phi] - Golden ratio?[phi] - Golden ratio?[phi] - Golden ratio?[phi] - Golden ratio?[phi] - Golden ratio?[phi] - Golden ratio?[phi] - Golden ratio?[phi] - Golden ratio?[phi] - Golden ratio?[phi] - Golden ratio?[phi] - Golden ratio?[phi] - Golden ratio?[phi] - Golden ratio?[phi] - Golden ratio?[phi] - Golden ratio?

Circumsphere Radius of Snub Dodecahedron given Surface to Volume Ratio Example

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Here is how the Circumsphere Radius of Snub Dodecahedron given Surface to Volume Ratio equation looks like with Values.

Here is how the Circumsphere Radius of Snub Dodecahedron given Surface to Volume Ratio equation looks like with Units.

Here is how the Circumsphere Radius of Snub Dodecahedron given Surface to Volume Ratio equation looks like.

15.8426Edit=2-0.943151259241-0.943151259242((203)+(325+(105)))6(3-((1.6182+1.618-5272)13+(1.6182-1.618-5272)13)2)320.2Edit(((12((31.618)+1))(((1.6182+1.618-5272)13+(1.6182-1.618-5272)13)2)-(((361.618)+7)((1.6182+1.618-5272)13+(1.6182-1.618-5272)13)))-((531.618)+6))
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Circumsphere Radius of Snub Dodecahedron given Surface to Volume Ratio Solution

Follow our step by step solution on how to calculate Circumsphere Radius of Snub Dodecahedron given Surface to Volume Ratio?

FIRST Step Consider the formula
rc=2-0.943151259241-0.943151259242((203)+(325+(105)))6(3-(([phi]2+[phi]-5272)13+([phi]2-[phi]-5272)13)2)32RA/V(((12((3[phi])+1))((([phi]2+[phi]-5272)13+([phi]2-[phi]-5272)13)2)-(((36[phi])+7)(([phi]2+[phi]-5272)13+([phi]2-[phi]-5272)13)))-((53[phi])+6))
Next Step Substitute values of Variables
rc=2-0.943151259241-0.943151259242((203)+(325+(105)))6(3-(([phi]2+[phi]-5272)13+([phi]2-[phi]-5272)13)2)320.2m⁻¹(((12((3[phi])+1))((([phi]2+[phi]-5272)13+([phi]2-[phi]-5272)13)2)-(((36[phi])+7)(([phi]2+[phi]-5272)13+([phi]2-[phi]-5272)13)))-((53[phi])+6))
Next Step Substitute values of Constants
rc=2-0.943151259241-0.943151259242((203)+(325+(105)))6(3-((1.6182+1.618-5272)13+(1.6182-1.618-5272)13)2)320.2m⁻¹(((12((31.618)+1))(((1.6182+1.618-5272)13+(1.6182-1.618-5272)13)2)-(((361.618)+7)((1.6182+1.618-5272)13+(1.6182-1.618-5272)13)))-((531.618)+6))
Next Step Prepare to Evaluate
rc=2-0.943151259241-0.943151259242((203)+(325+(105)))6(3-((1.6182+1.618-5272)13+(1.6182-1.618-5272)13)2)320.2(((12((31.618)+1))(((1.6182+1.618-5272)13+(1.6182-1.618-5272)13)2)-(((361.618)+7)((1.6182+1.618-5272)13+(1.6182-1.618-5272)13)))-((531.618)+6))
Next Step Evaluate
rc=15.8426164004686m
LAST Step Rounding Answer
rc=15.8426m

Circumsphere Radius of Snub Dodecahedron given Surface to Volume Ratio Formula Elements

Variables
Constants
Functions
Circumsphere Radius of Snub Dodecahedron
Circumsphere Radius of Snub Dodecahedron is the radius of the sphere that contains the Snub Dodecahedron in such a way that all the vertices are lying on the sphere.
Symbol: rc
Measurement: LengthUnit: m
Note: Value should be greater than 0.
Surface to Volume Ratio of Snub Dodecahedron
Surface to Volume Ratio of Snub Dodecahedron is the numerical ratio of the total surface area of a Snub Dodecahedron to the volume of the Snub Dodecahedron.
Symbol: RA/V
Measurement: Reciprocal LengthUnit: m⁻¹
Note: Value should be greater than 0.
Golden ratio
The Golden ratio occurs when the ratio of two numbers is the same as the ratio of their sum to the larger of the two numbers.
Symbol: [phi]
Value: 1.61803398874989484820458683436563811
Golden ratio
The Golden ratio occurs when the ratio of two numbers is the same as the ratio of their sum to the larger of the two numbers.
Symbol: [phi]
Value: 1.61803398874989484820458683436563811
Golden ratio
The Golden ratio occurs when the ratio of two numbers is the same as the ratio of their sum to the larger of the two numbers.
Symbol: [phi]
Value: 1.61803398874989484820458683436563811
Golden ratio
The Golden ratio occurs when the ratio of two numbers is the same as the ratio of their sum to the larger of the two numbers.
Symbol: [phi]
Value: 1.61803398874989484820458683436563811
Golden ratio
The Golden ratio occurs when the ratio of two numbers is the same as the ratio of their sum to the larger of the two numbers.
Symbol: [phi]
Value: 1.61803398874989484820458683436563811
Golden ratio
The Golden ratio occurs when the ratio of two numbers is the same as the ratio of their sum to the larger of the two numbers.
Symbol: [phi]
Value: 1.61803398874989484820458683436563811
Golden ratio
The Golden ratio occurs when the ratio of two numbers is the same as the ratio of their sum to the larger of the two numbers.
Symbol: [phi]
Value: 1.61803398874989484820458683436563811
Golden ratio
The Golden ratio occurs when the ratio of two numbers is the same as the ratio of their sum to the larger of the two numbers.
Symbol: [phi]
Value: 1.61803398874989484820458683436563811
Golden ratio
The Golden ratio occurs when the ratio of two numbers is the same as the ratio of their sum to the larger of the two numbers.
Symbol: [phi]
Value: 1.61803398874989484820458683436563811
Golden ratio
The Golden ratio occurs when the ratio of two numbers is the same as the ratio of their sum to the larger of the two numbers.
Symbol: [phi]
Value: 1.61803398874989484820458683436563811
Golden ratio
The Golden ratio occurs when the ratio of two numbers is the same as the ratio of their sum to the larger of the two numbers.
Symbol: [phi]
Value: 1.61803398874989484820458683436563811
Golden ratio
The Golden ratio occurs when the ratio of two numbers is the same as the ratio of their sum to the larger of the two numbers.
Symbol: [phi]
Value: 1.61803398874989484820458683436563811
Golden ratio
The Golden ratio occurs when the ratio of two numbers is the same as the ratio of their sum to the larger of the two numbers.
Symbol: [phi]
Value: 1.61803398874989484820458683436563811
Golden ratio
The Golden ratio occurs when the ratio of two numbers is the same as the ratio of their sum to the larger of the two numbers.
Symbol: [phi]
Value: 1.61803398874989484820458683436563811
Golden ratio
The Golden ratio occurs when the ratio of two numbers is the same as the ratio of their sum to the larger of the two numbers.
Symbol: [phi]
Value: 1.61803398874989484820458683436563811
sqrt
A square root function is a function that takes a non-negative number as an input and returns the square root of the given input number.
Syntax: sqrt(Number)

Other Formulas to find Circumsphere Radius of Snub Dodecahedron

​Go Circumsphere Radius of Snub Dodecahedron
rc=2-0.943151259241-0.943151259242le
​Go Circumsphere Radius of Snub Dodecahedron given Total Surface Area
rc=2-0.943151259241-0.943151259242TSA(203)+(325+(105))
​Go Circumsphere Radius of Snub Dodecahedron given Volume
rc=2-0.943151259241-0.943151259242(V6(3-(([phi]2+[phi]-5272)13+([phi]2-[phi]-5272)13)2)32((12((3[phi])+1))((([phi]2+[phi]-5272)13+([phi]2-[phi]-5272)13)2)-(((36[phi])+7)(([phi]2+[phi]-5272)13+([phi]2-[phi]-5272)13)))-((53[phi])+6))13
​Go Circumsphere Radius of Snub Dodecahedron given Midsphere Radius
rc=rm2-0.94315125924

How to Evaluate Circumsphere Radius of Snub Dodecahedron given Surface to Volume Ratio?

Circumsphere Radius of Snub Dodecahedron given Surface to Volume Ratio evaluator uses Circumsphere Radius of Snub Dodecahedron = sqrt((2-0.94315125924)/(1-0.94315125924))/2*(((20*sqrt(3))+(3*sqrt(25+(10*sqrt(5)))))*6*(3-(([phi]/2+sqrt([phi]-5/27)/2)^(1/3)+([phi]/2-sqrt([phi]-5/27)/2)^(1/3))^2)^(3/2))/(Surface to Volume Ratio of Snub Dodecahedron*(((12*((3*[phi])+1))*((([phi]/2+sqrt([phi]-5/27)/2)^(1/3)+([phi]/2-sqrt([phi]-5/27)/2)^(1/3))^2)-(((36*[phi])+7)*(([phi]/2+sqrt([phi]-5/27)/2)^(1/3)+([phi]/2-sqrt([phi]-5/27)/2)^(1/3))))-((53*[phi])+6))) to evaluate the Circumsphere Radius of Snub Dodecahedron, Circumsphere Radius of Snub Dodecahedron given Surface to Volume Ratio formula is defined as the radius of the sphere that contains the Snub Dodecahedron in such a way that all the vertices are lying on the sphere, and calculated using the surface to volume ratio of the Snub Dodecahedron. Circumsphere Radius of Snub Dodecahedron is denoted by rc symbol.

How to evaluate Circumsphere Radius of Snub Dodecahedron given Surface to Volume Ratio using this online evaluator? To use this online evaluator for Circumsphere Radius of Snub Dodecahedron given Surface to Volume Ratio, enter Surface to Volume Ratio of Snub Dodecahedron (RA/V) and hit the calculate button.

FAQs on Circumsphere Radius of Snub Dodecahedron given Surface to Volume Ratio

What is the formula to find Circumsphere Radius of Snub Dodecahedron given Surface to Volume Ratio?
The formula of Circumsphere Radius of Snub Dodecahedron given Surface to Volume Ratio is expressed as Circumsphere Radius of Snub Dodecahedron = sqrt((2-0.94315125924)/(1-0.94315125924))/2*(((20*sqrt(3))+(3*sqrt(25+(10*sqrt(5)))))*6*(3-(([phi]/2+sqrt([phi]-5/27)/2)^(1/3)+([phi]/2-sqrt([phi]-5/27)/2)^(1/3))^2)^(3/2))/(Surface to Volume Ratio of Snub Dodecahedron*(((12*((3*[phi])+1))*((([phi]/2+sqrt([phi]-5/27)/2)^(1/3)+([phi]/2-sqrt([phi]-5/27)/2)^(1/3))^2)-(((36*[phi])+7)*(([phi]/2+sqrt([phi]-5/27)/2)^(1/3)+([phi]/2-sqrt([phi]-5/27)/2)^(1/3))))-((53*[phi])+6))). Here is an example- 15.84262 = sqrt((2-0.94315125924)/(1-0.94315125924))/2*(((20*sqrt(3))+(3*sqrt(25+(10*sqrt(5)))))*6*(3-(([phi]/2+sqrt([phi]-5/27)/2)^(1/3)+([phi]/2-sqrt([phi]-5/27)/2)^(1/3))^2)^(3/2))/(0.2*(((12*((3*[phi])+1))*((([phi]/2+sqrt([phi]-5/27)/2)^(1/3)+([phi]/2-sqrt([phi]-5/27)/2)^(1/3))^2)-(((36*[phi])+7)*(([phi]/2+sqrt([phi]-5/27)/2)^(1/3)+([phi]/2-sqrt([phi]-5/27)/2)^(1/3))))-((53*[phi])+6))).
How to calculate Circumsphere Radius of Snub Dodecahedron given Surface to Volume Ratio?
With Surface to Volume Ratio of Snub Dodecahedron (RA/V) we can find Circumsphere Radius of Snub Dodecahedron given Surface to Volume Ratio using the formula - Circumsphere Radius of Snub Dodecahedron = sqrt((2-0.94315125924)/(1-0.94315125924))/2*(((20*sqrt(3))+(3*sqrt(25+(10*sqrt(5)))))*6*(3-(([phi]/2+sqrt([phi]-5/27)/2)^(1/3)+([phi]/2-sqrt([phi]-5/27)/2)^(1/3))^2)^(3/2))/(Surface to Volume Ratio of Snub Dodecahedron*(((12*((3*[phi])+1))*((([phi]/2+sqrt([phi]-5/27)/2)^(1/3)+([phi]/2-sqrt([phi]-5/27)/2)^(1/3))^2)-(((36*[phi])+7)*(([phi]/2+sqrt([phi]-5/27)/2)^(1/3)+([phi]/2-sqrt([phi]-5/27)/2)^(1/3))))-((53*[phi])+6))). This formula also uses Golden ratio, Golden ratio, Golden ratio, Golden ratio, Golden ratio, Golden ratio, Golden ratio, Golden ratio, Golden ratio, Golden ratio, Golden ratio, Golden ratio, Golden ratio, Golden ratio, Golden ratio constant(s) and Square Root (sqrt) function(s).
What are the other ways to Calculate Circumsphere Radius of Snub Dodecahedron?
Here are the different ways to Calculate Circumsphere Radius of Snub Dodecahedron-
  • Circumsphere Radius of Snub Dodecahedron=sqrt((2-0.94315125924)/(1-0.94315125924))/2*Edge Length of Snub DodecahedronOpenImg
  • Circumsphere Radius of Snub Dodecahedron=sqrt((2-0.94315125924)/(1-0.94315125924))/2*sqrt(Total Surface Area of Snub Dodecahedron/((20*sqrt(3))+(3*sqrt(25+(10*sqrt(5))))))OpenImg
  • Circumsphere Radius of Snub Dodecahedron=sqrt((2-0.94315125924)/(1-0.94315125924))/2*((Volume of Snub Dodecahedron*6*(3-(([phi]/2+sqrt([phi]-5/27)/2)^(1/3)+([phi]/2-sqrt([phi]-5/27)/2)^(1/3))^2)^(3/2))/(((12*((3*[phi])+1))*((([phi]/2+sqrt([phi]-5/27)/2)^(1/3)+([phi]/2-sqrt([phi]-5/27)/2)^(1/3))^2)-(((36*[phi])+7)*(([phi]/2+sqrt([phi]-5/27)/2)^(1/3)+([phi]/2-sqrt([phi]-5/27)/2)^(1/3))))-((53*[phi])+6)))^(1/3)OpenImg
Can the Circumsphere Radius of Snub Dodecahedron given Surface to Volume Ratio be negative?
No, the Circumsphere Radius of Snub Dodecahedron given Surface to Volume Ratio, measured in Length cannot be negative.
Which unit is used to measure Circumsphere Radius of Snub Dodecahedron given Surface to Volume Ratio?
Circumsphere Radius of Snub Dodecahedron given Surface to Volume Ratio is usually measured using the Meter[m] for Length. Millimeter[m], Kilometer[m], Decimeter[m] are the few other units in which Circumsphere Radius of Snub Dodecahedron given Surface to Volume Ratio can be measured.
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