Surface to Volume Ratio of Paraboloid given Height Solution

STEP 0: Pre-Calculation Summary
Formula Used
Surface to Volume Ratio of Paraboloid = (1/(6*Shape Parameter of Paraboloid)*((1+(4*Shape Parameter of Paraboloid*Height of Paraboloid))^(3/2)-1)+Height of Paraboloid)/(1/2*Height of Paraboloid^2)
RA/V = (1/(6*p)*((1+(4*p*h))^(3/2)-1)+h)/(1/2*h^2)
This formula uses 3 Variables
Variables Used
Surface to Volume Ratio of Paraboloid - (Measured in 1 per Meter) - Surface to Volume Ratio of Paraboloid is the numerical ratio of the total surface area of the Paraboloid to the volume of the Paraboloid.
Shape Parameter of Paraboloid - Shape Parameter of Paraboloid is the total length of the boundary or outer edge of Paraboloid.
Height of Paraboloid - (Measured in Meter) - Height of Paraboloid is the vertical distance from the centre of the circular face to the local extreme point of the Paraboloid.
STEP 1: Convert Input(s) to Base Unit
Shape Parameter of Paraboloid: 2 --> No Conversion Required
Height of Paraboloid: 50 Meter --> 50 Meter No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
RA/V = (1/(6*p)*((1+(4*p*h))^(3/2)-1)+h)/(1/2*h^2) --> (1/(6*2)*((1+(4*2*50))^(3/2)-1)+50)/(1/2*50^2)
Evaluating ... ...
RA/V = 0.575267916146321
STEP 3: Convert Result to Output's Unit
0.575267916146321 1 per Meter --> No Conversion Required
FINAL ANSWER
0.575267916146321 0.575268 1 per Meter <-- Surface to Volume Ratio of Paraboloid
(Calculation completed in 00.004 seconds)

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6 Surface to Volume Ratio of Paraboloid Calculators

Surface to Volume Ratio of Paraboloid
​ Go Surface to Volume Ratio of Paraboloid = ((pi*Radius of Paraboloid)/(6*Height of Paraboloid^2)*((Radius of Paraboloid^2+(4*Height of Paraboloid^2))^(3/2)-Radius of Paraboloid^3)+(pi*Radius of Paraboloid^2))/(1/2*pi*Radius of Paraboloid^2*Height of Paraboloid)
Surface to Volume Ratio of Paraboloid given Radius
​ Go Surface to Volume Ratio of Paraboloid = ((pi/(6*Shape Parameter of Paraboloid^2)*((1+(4*Shape Parameter of Paraboloid^2*Radius of Paraboloid^2))^(3/2)-1))+pi*Radius of Paraboloid^2)/(1/2*pi*Shape Parameter of Paraboloid*Radius of Paraboloid^4)
Surface to Volume Ratio of Paraboloid given Volume
​ Go Surface to Volume Ratio of Paraboloid = (((pi*Radius of Paraboloid)/(6*Height of Paraboloid^2)*((Radius of Paraboloid^2+4*Height of Paraboloid^2)^(3/2)-Radius of Paraboloid^3))+(pi*Radius of Paraboloid^2))/(Volume of Paraboloid)
Surface to Volume Ratio of Paraboloid given Height
​ Go Surface to Volume Ratio of Paraboloid = (1/(6*Shape Parameter of Paraboloid)*((1+(4*Shape Parameter of Paraboloid*Height of Paraboloid))^(3/2)-1)+Height of Paraboloid)/(1/2*Height of Paraboloid^2)
Surface to Volume Ratio of Paraboloid given Lateral Surface Area
​ Go Surface to Volume Ratio of Paraboloid = (Lateral Surface Area of Paraboloid+pi*Radius of Paraboloid^2)/(1/2*pi*Radius of Paraboloid^2*Height of Paraboloid)
Surface to Volume Ratio of Paraboloid given Total Surface Area
​ Go Surface to Volume Ratio of Paraboloid = (2*Total Surface Area of Paraboloid)/(pi*Radius of Paraboloid^2*Height of Paraboloid)

Surface to Volume Ratio of Paraboloid given Height Formula

Surface to Volume Ratio of Paraboloid = (1/(6*Shape Parameter of Paraboloid)*((1+(4*Shape Parameter of Paraboloid*Height of Paraboloid))^(3/2)-1)+Height of Paraboloid)/(1/2*Height of Paraboloid^2)
RA/V = (1/(6*p)*((1+(4*p*h))^(3/2)-1)+h)/(1/2*h^2)

What is Paraboloid?

In geometry, a Paraboloid is a quadric surface that has exactly one axis of symmetry and no center of symmetry. The term "paraboloid" is derived from parabola, which refers to a conic section that has a similar property of symmetry. Every plane section of a paraboloid by a plane parallel to the axis of symmetry is a parabola. The paraboloid is hyperbolic if every other plane section is either a hyperbola, or two crossing lines (in the case of a section by a tangent plane). The paraboloid is elliptic if every other nonempty plane section is either an ellipse, or a single point (in the case of a section by a tangent plane). A paraboloid is either elliptic or hyperbolic.

How to Calculate Surface to Volume Ratio of Paraboloid given Height?

Surface to Volume Ratio of Paraboloid given Height calculator uses Surface to Volume Ratio of Paraboloid = (1/(6*Shape Parameter of Paraboloid)*((1+(4*Shape Parameter of Paraboloid*Height of Paraboloid))^(3/2)-1)+Height of Paraboloid)/(1/2*Height of Paraboloid^2) to calculate the Surface to Volume Ratio of Paraboloid, The Surface to Volume Ratio of Paraboloid given Height formula is defined as the numerical ratio of the total surface area of the Paraboloid to the volume of the Paraboloid, calculated using height of Paraboloid. Surface to Volume Ratio of Paraboloid is denoted by RA/V symbol.

How to calculate Surface to Volume Ratio of Paraboloid given Height using this online calculator? To use this online calculator for Surface to Volume Ratio of Paraboloid given Height, enter Shape Parameter of Paraboloid (p) & Height of Paraboloid (h) and hit the calculate button. Here is how the Surface to Volume Ratio of Paraboloid given Height calculation can be explained with given input values -> 0.575268 = (1/(6*2)*((1+(4*2*50))^(3/2)-1)+50)/(1/2*50^2).

FAQ

What is Surface to Volume Ratio of Paraboloid given Height?
The Surface to Volume Ratio of Paraboloid given Height formula is defined as the numerical ratio of the total surface area of the Paraboloid to the volume of the Paraboloid, calculated using height of Paraboloid and is represented as RA/V = (1/(6*p)*((1+(4*p*h))^(3/2)-1)+h)/(1/2*h^2) or Surface to Volume Ratio of Paraboloid = (1/(6*Shape Parameter of Paraboloid)*((1+(4*Shape Parameter of Paraboloid*Height of Paraboloid))^(3/2)-1)+Height of Paraboloid)/(1/2*Height of Paraboloid^2). Shape Parameter of Paraboloid is the total length of the boundary or outer edge of Paraboloid & Height of Paraboloid is the vertical distance from the centre of the circular face to the local extreme point of the Paraboloid.
How to calculate Surface to Volume Ratio of Paraboloid given Height?
The Surface to Volume Ratio of Paraboloid given Height formula is defined as the numerical ratio of the total surface area of the Paraboloid to the volume of the Paraboloid, calculated using height of Paraboloid is calculated using Surface to Volume Ratio of Paraboloid = (1/(6*Shape Parameter of Paraboloid)*((1+(4*Shape Parameter of Paraboloid*Height of Paraboloid))^(3/2)-1)+Height of Paraboloid)/(1/2*Height of Paraboloid^2). To calculate Surface to Volume Ratio of Paraboloid given Height, you need Shape Parameter of Paraboloid (p) & Height of Paraboloid (h). With our tool, you need to enter the respective value for Shape Parameter of Paraboloid & Height of Paraboloid 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 of Paraboloid?
In this formula, Surface to Volume Ratio of Paraboloid uses Shape Parameter of Paraboloid & Height of Paraboloid. We can use 5 other way(s) to calculate the same, which is/are as follows -
  • Surface to Volume Ratio of Paraboloid = ((pi*Radius of Paraboloid)/(6*Height of Paraboloid^2)*((Radius of Paraboloid^2+(4*Height of Paraboloid^2))^(3/2)-Radius of Paraboloid^3)+(pi*Radius of Paraboloid^2))/(1/2*pi*Radius of Paraboloid^2*Height of Paraboloid)
  • Surface to Volume Ratio of Paraboloid = (((pi*Radius of Paraboloid)/(6*Height of Paraboloid^2)*((Radius of Paraboloid^2+4*Height of Paraboloid^2)^(3/2)-Radius of Paraboloid^3))+(pi*Radius of Paraboloid^2))/(Volume of Paraboloid)
  • Surface to Volume Ratio of Paraboloid = (2*Total Surface Area of Paraboloid)/(pi*Radius of Paraboloid^2*Height of Paraboloid)
  • Surface to Volume Ratio of Paraboloid = (Lateral Surface Area of Paraboloid+pi*Radius of Paraboloid^2)/(1/2*pi*Radius of Paraboloid^2*Height of Paraboloid)
  • Surface to Volume Ratio of Paraboloid = ((pi/(6*Shape Parameter of Paraboloid^2)*((1+(4*Shape Parameter of Paraboloid^2*Radius of Paraboloid^2))^(3/2)-1))+pi*Radius of Paraboloid^2)/(1/2*pi*Shape Parameter of Paraboloid*Radius of Paraboloid^4)
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