Insphere Radius of Disphenoid given Volume and Total Surface Area Solution

STEP 0: Pre-Calculation Summary
Formula Used
Insphere Radius of Disphenoid = (3*Volume of Disphenoid)/Total Surface Area of Disphenoid
ri = (3*V)/TSA
This formula uses 3 Variables
Variables Used
Insphere Radius of Disphenoid - (Measured in Meter) - Insphere Radius of Disphenoid is the radius of the sphere that is contained by the Disphenoid in such a way that all the faces just touching the sphere.
Volume of Disphenoid - (Measured in Cubic Meter) - Volume of Disphenoid is the quantity of three dimensional space enclosed by the entire surface of Disphenoid.
Total Surface Area of Disphenoid - (Measured in Square Meter) - The Total Surface Area of Disphenoid is the amount or quantity of two dimensional space covered on the entire surface of Disphenoid.
STEP 1: Convert Input(s) to Base Unit
Volume of Disphenoid: 165 Cubic Meter --> 165 Cubic Meter No Conversion Required
Total Surface Area of Disphenoid: 255 Square Meter --> 255 Square Meter No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
ri = (3*V)/TSA --> (3*165)/255
Evaluating ... ...
ri = 1.94117647058824
STEP 3: Convert Result to Output's Unit
1.94117647058824 Meter --> No Conversion Required
FINAL ANSWER
1.94117647058824 1.941176 Meter <-- Insphere Radius of Disphenoid
(Calculation completed in 00.020 seconds)

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Insphere Radius of Disphenoid Calculators

Insphere Radius of Disphenoid
​ LaTeX ​ Go Insphere Radius of Disphenoid = 3/4*sqrt(((Side A of Disphenoid^2+Side B of Disphenoid^2-Side C of Disphenoid^2)*(Side A of Disphenoid^2-Side B of Disphenoid^2+Side C of Disphenoid^2)*(-Side A of Disphenoid^2+Side B of Disphenoid^2+Side C of Disphenoid^2))/72)/sqrt(Perimeter of Disphenoid/8*(Perimeter of Disphenoid/8-Side A of Disphenoid)*(Perimeter of Disphenoid/8-Side B of Disphenoid)*(Perimeter of Disphenoid/8-Side C of Disphenoid))
Insphere Radius of Disphenoid given Volume and Total Surface Area
​ LaTeX ​ Go Insphere Radius of Disphenoid = (3*Volume of Disphenoid)/Total Surface Area of Disphenoid

Insphere Radius of Disphenoid given Volume and Total Surface Area Formula

​LaTeX ​Go
Insphere Radius of Disphenoid = (3*Volume of Disphenoid)/Total Surface Area of Disphenoid
ri = (3*V)/TSA

What is a Disphenoid?

In geometry, a Disphenoid (from Greek sphenoeides, "wedgelike") is a tetrahedron whose four faces are congruent acute-angled triangles. It can also be described as a tetrahedron in which every two edges that are opposite each other have equal lengths. Other names for the same shape are sphenoid, bisphenoid, isosceles tetrahedron, equifacial tetrahedron, almost regular tetrahedron, and tetramonohedron. All the solid angles and vertex figures of a Disphenoid are the same, and the sum of the face angles at each vertex is equal to two right angles. However, a Disphenoid is not a regular polyhedron, because, in general, its faces are not regular polygons, and its edges have three different lengths.

How to Calculate Insphere Radius of Disphenoid given Volume and Total Surface Area?

Insphere Radius of Disphenoid given Volume and Total Surface Area calculator uses Insphere Radius of Disphenoid = (3*Volume of Disphenoid)/Total Surface Area of Disphenoid to calculate the Insphere Radius of Disphenoid, Insphere Radius of Disphenoid given Volume and Total Surface Area formula is defined as the radius of the sphere that is contained by the Disphenoid in such a way that all the faces just touching the sphere, and is calculated using the volume and total surface area of Disphenoid. Insphere Radius of Disphenoid is denoted by ri symbol.

How to calculate Insphere Radius of Disphenoid given Volume and Total Surface Area using this online calculator? To use this online calculator for Insphere Radius of Disphenoid given Volume and Total Surface Area, enter Volume of Disphenoid (V) & Total Surface Area of Disphenoid (TSA) and hit the calculate button. Here is how the Insphere Radius of Disphenoid given Volume and Total Surface Area calculation can be explained with given input values -> 1.941176 = (3*165)/255.

FAQ

What is Insphere Radius of Disphenoid given Volume and Total Surface Area?
Insphere Radius of Disphenoid given Volume and Total Surface Area formula is defined as the radius of the sphere that is contained by the Disphenoid in such a way that all the faces just touching the sphere, and is calculated using the volume and total surface area of Disphenoid and is represented as ri = (3*V)/TSA or Insphere Radius of Disphenoid = (3*Volume of Disphenoid)/Total Surface Area of Disphenoid. Volume of Disphenoid is the quantity of three dimensional space enclosed by the entire surface of Disphenoid & The Total Surface Area of Disphenoid is the amount or quantity of two dimensional space covered on the entire surface of Disphenoid.
How to calculate Insphere Radius of Disphenoid given Volume and Total Surface Area?
Insphere Radius of Disphenoid given Volume and Total Surface Area formula is defined as the radius of the sphere that is contained by the Disphenoid in such a way that all the faces just touching the sphere, and is calculated using the volume and total surface area of Disphenoid is calculated using Insphere Radius of Disphenoid = (3*Volume of Disphenoid)/Total Surface Area of Disphenoid. To calculate Insphere Radius of Disphenoid given Volume and Total Surface Area, you need Volume of Disphenoid (V) & Total Surface Area of Disphenoid (TSA). With our tool, you need to enter the respective value for Volume of Disphenoid & Total Surface Area of Disphenoid 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 Insphere Radius of Disphenoid?
In this formula, Insphere Radius of Disphenoid uses Volume of Disphenoid & Total Surface Area of Disphenoid. We can use 1 other way(s) to calculate the same, which is/are as follows -
  • Insphere Radius of Disphenoid = 3/4*sqrt(((Side A of Disphenoid^2+Side B of Disphenoid^2-Side C of Disphenoid^2)*(Side A of Disphenoid^2-Side B of Disphenoid^2+Side C of Disphenoid^2)*(-Side A of Disphenoid^2+Side B of Disphenoid^2+Side C of Disphenoid^2))/72)/sqrt(Perimeter of Disphenoid/8*(Perimeter of Disphenoid/8-Side A of Disphenoid)*(Perimeter of Disphenoid/8-Side B of Disphenoid)*(Perimeter of Disphenoid/8-Side C of Disphenoid))
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