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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. Check FAQs
RA/V=((203)+(325+(105)))6(3-(([phi]2+[phi]-5272)13+([phi]2-[phi]-5272)13)2)322rm11-0.94315125924(((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))
RA/V - Surface to Volume Ratio of Snub Dodecahedron?rm - Midsphere Radius 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?

Surface to Volume Ratio of Snub Dodecahedron given Midsphere Radius Example

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

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

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

0.1468Edit=((203)+(325+(105)))6(3-((1.6182+1.618-5272)13+(1.6182-1.618-5272)13)2)32221Edit11-0.94315125924(((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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Surface to Volume Ratio of Snub Dodecahedron given Midsphere Radius Solution

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

FIRST Step Consider the formula
RA/V=((203)+(325+(105)))6(3-(([phi]2+[phi]-5272)13+([phi]2-[phi]-5272)13)2)322rm11-0.94315125924(((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
RA/V=((203)+(325+(105)))6(3-(([phi]2+[phi]-5272)13+([phi]2-[phi]-5272)13)2)32221m11-0.94315125924(((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
RA/V=((203)+(325+(105)))6(3-((1.6182+1.618-5272)13+(1.6182-1.618-5272)13)2)32221m11-0.94315125924(((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
RA/V=((203)+(325+(105)))6(3-((1.6182+1.618-5272)13+(1.6182-1.618-5272)13)2)3222111-0.94315125924(((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
RA/V=0.146767937253493m⁻¹
LAST Step Rounding Answer
RA/V=0.1468m⁻¹

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

Variables
Constants
Functions
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.
Midsphere Radius of Snub Dodecahedron
Midsphere Radius of Snub Dodecahedron is the radius of the sphere for which all the edges of the Snub Dodecahedron become a tangent line on that sphere.
Symbol: rm
Measurement: LengthUnit: m
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 Surface to Volume Ratio of Snub Dodecahedron

​Go Surface to Volume Ratio of Snub Dodecahedron
RA/V=((203)+(325+(105)))6(3-(([phi]2+[phi]-5272)13+([phi]2-[phi]-5272)13)2)32le(((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))
​Go Surface to Volume Ratio of Snub Dodecahedron given Total Surface Area
RA/V=((203)+(325+(105)))6(3-(([phi]2+[phi]-5272)13+([phi]2-[phi]-5272)13)2)32TSA(203)+(325+(105))(((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))
​Go Surface to Volume Ratio of Snub Dodecahedron given Volume
RA/V=((203)+(325+(105)))6(3-(([phi]2+[phi]-5272)13+([phi]2-[phi]-5272)13)2)32(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(((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))
​Go Surface to Volume Ratio of Snub Dodecahedron given Circumsphere Radius
RA/V=((203)+(325+(105)))6(3-(([phi]2+[phi]-5272)13+([phi]2-[phi]-5272)13)2)322rc2-0.943151259241-0.94315125924(((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))

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

Surface to Volume Ratio of Snub Dodecahedron given Midsphere Radius evaluator uses Surface to Volume Ratio of Snub Dodecahedron = (((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))/((2*Midsphere Radius of Snub Dodecahedron)/sqrt(1/(1-0.94315125924))*(((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 Surface to Volume Ratio of Snub Dodecahedron, Surface to Volume Ratio of Snub Dodecahedron given Midsphere Radius formula is defined as the numerical ratio of the total surface area of a Snub Dodecahedron to the volume of the Snub Dodecahedron, and calculated using the midsphere radius of the Snub Dodecahedron. Surface to Volume Ratio of Snub Dodecahedron is denoted by RA/V symbol.

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

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

What is the formula to find Surface to Volume Ratio of Snub Dodecahedron given Midsphere Radius?
The formula of Surface to Volume Ratio of Snub Dodecahedron given Midsphere Radius is expressed as Surface to Volume Ratio of Snub Dodecahedron = (((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))/((2*Midsphere Radius of Snub Dodecahedron)/sqrt(1/(1-0.94315125924))*(((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- 0.146768 = (((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))/((2*21)/sqrt(1/(1-0.94315125924))*(((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 Surface to Volume Ratio of Snub Dodecahedron given Midsphere Radius?
With Midsphere Radius of Snub Dodecahedron (rm) we can find Surface to Volume Ratio of Snub Dodecahedron given Midsphere Radius using the formula - Surface to Volume Ratio of Snub Dodecahedron = (((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))/((2*Midsphere Radius of Snub Dodecahedron)/sqrt(1/(1-0.94315125924))*(((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 Surface to Volume Ratio of Snub Dodecahedron?
Here are the different ways to Calculate Surface to Volume Ratio of Snub Dodecahedron-
  • Surface to Volume Ratio of Snub Dodecahedron=(((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))/(Edge Length 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)))OpenImg
  • Surface to Volume Ratio of Snub Dodecahedron=(((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))/(sqrt(Total Surface Area of Snub Dodecahedron/((20*sqrt(3))+(3*sqrt(25+(10*sqrt(5))))))*(((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)))OpenImg
  • Surface to Volume Ratio of Snub Dodecahedron=(((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))/(((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)*(((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)))OpenImg
Can the Surface to Volume Ratio of Snub Dodecahedron given Midsphere Radius be negative?
No, the Surface to Volume Ratio of Snub Dodecahedron given Midsphere Radius, measured in Reciprocal Length cannot be negative.
Which unit is used to measure Surface to Volume Ratio of Snub Dodecahedron given Midsphere Radius?
Surface to Volume Ratio of Snub Dodecahedron given Midsphere Radius is usually measured using the 1 per Meter[m⁻¹] for Reciprocal Length. 1 per Kilometer[m⁻¹], 1 per Mile[m⁻¹], 1 per Yard[m⁻¹] are the few other units in which Surface to Volume Ratio of Snub Dodecahedron given Midsphere Radius can be measured.
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