Space Diagonal of Half Cylinder given Volume and Radius Solution

STEP 0: Pre-Calculation Summary
Formula Used
Space Diagonal of Half Cylinder = sqrt(((2*Volume of Half Cylinder)/(pi*Radius of Half Cylinder^2))^2+Radius of Half Cylinder^2)
dSpace = sqrt(((2*V)/(pi*r^2))^2+r^2)
This formula uses 1 Constants, 1 Functions, 3 Variables
Constants Used
pi - Archimedes' constant Value Taken As 3.14159265358979323846264338327950288
Functions Used
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., sqrt(Number)
Variables Used
Space Diagonal of Half Cylinder - (Measured in Meter) - Space Diagonal of Half Cylinder is a line connecting two vertices that are not on the same face of Half Cylinder.
Volume of Half Cylinder - (Measured in Cubic Meter) - Volume of Half Cylinders is the amount of 3-dimensional space enclosed by the surface of Half Cylinder.
Radius of Half Cylinder - (Measured in Meter) - Radius of Half Cylinder is the radius of the semicircular surface of the Half Cylinder.
STEP 1: Convert Input(s) to Base Unit
Volume of Half Cylinder: 1885 Cubic Meter --> 1885 Cubic Meter No Conversion Required
Radius of Half Cylinder: 10 Meter --> 10 Meter No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
dSpace = sqrt(((2*V)/(pi*r^2))^2+r^2) --> sqrt(((2*1885)/(pi*10^2))^2+10^2)
Evaluating ... ...
dSpace = 15.6207165360305
STEP 3: Convert Result to Output's Unit
15.6207165360305 Meter --> No Conversion Required
FINAL ANSWER
15.6207165360305 15.62072 Meter <-- Space Diagonal of Half Cylinder
(Calculation completed in 00.004 seconds)

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Walchand College of Engineering (WCE), Sangli
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Space Diagonal of Half Cylinder Calculators

Space Diagonal of Half Cylinder given Curved Surface Area and Radius
​ LaTeX ​ Go Space Diagonal of Half Cylinder = sqrt((Curved Surface Area of Half Cylinder/(pi*Radius of Half Cylinder))^2+Radius of Half Cylinder^2)
Space Diagonal of Half Cylinder given Curved Surface Area and Height
​ LaTeX ​ Go Space Diagonal of Half Cylinder = sqrt(Height of Half Cylinder^2+(Curved Surface Area of Half Cylinder/(pi*Height of Half Cylinder))^2)
Space Diagonal of Half Cylinder given Volume and Radius
​ LaTeX ​ Go Space Diagonal of Half Cylinder = sqrt(((2*Volume of Half Cylinder)/(pi*Radius of Half Cylinder^2))^2+Radius of Half Cylinder^2)
Space Diagonal of Half Cylinder
​ LaTeX ​ Go Space Diagonal of Half Cylinder = sqrt(Height of Half Cylinder^2+Radius of Half Cylinder^2)

Space Diagonal of Half Cylinder given Volume and Radius Formula

​LaTeX ​Go
Space Diagonal of Half Cylinder = sqrt(((2*Volume of Half Cylinder)/(pi*Radius of Half Cylinder^2))^2+Radius of Half Cylinder^2)
dSpace = sqrt(((2*V)/(pi*r^2))^2+r^2)

What is Half Cylinder?

A Half-cylindrical shape in mathematics is a three-dimensional solid figure which is obtained when a cylinder is truncated longitudinally. When a horizontal cylinder is cut into two equal pieces parallel to the length of the cylinder, the shapes thus obtained are called half-cylinders.

How to Calculate Space Diagonal of Half Cylinder given Volume and Radius?

Space Diagonal of Half Cylinder given Volume and Radius calculator uses Space Diagonal of Half Cylinder = sqrt(((2*Volume of Half Cylinder)/(pi*Radius of Half Cylinder^2))^2+Radius of Half Cylinder^2) to calculate the Space Diagonal of Half Cylinder, Space Diagonal of Half Cylinder given Volume and Radius formula is defined as the line connecting two vertices that are not on the same face of the Half cylinder, calculated using its volume and radius. Space Diagonal of Half Cylinder is denoted by dSpace symbol.

How to calculate Space Diagonal of Half Cylinder given Volume and Radius using this online calculator? To use this online calculator for Space Diagonal of Half Cylinder given Volume and Radius, enter Volume of Half Cylinder (V) & Radius of Half Cylinder (r) and hit the calculate button. Here is how the Space Diagonal of Half Cylinder given Volume and Radius calculation can be explained with given input values -> 15.62072 = sqrt(((2*1885)/(pi*10^2))^2+10^2).

FAQ

What is Space Diagonal of Half Cylinder given Volume and Radius?
Space Diagonal of Half Cylinder given Volume and Radius formula is defined as the line connecting two vertices that are not on the same face of the Half cylinder, calculated using its volume and radius and is represented as dSpace = sqrt(((2*V)/(pi*r^2))^2+r^2) or Space Diagonal of Half Cylinder = sqrt(((2*Volume of Half Cylinder)/(pi*Radius of Half Cylinder^2))^2+Radius of Half Cylinder^2). Volume of Half Cylinders is the amount of 3-dimensional space enclosed by the surface of Half Cylinder & Radius of Half Cylinder is the radius of the semicircular surface of the Half Cylinder.
How to calculate Space Diagonal of Half Cylinder given Volume and Radius?
Space Diagonal of Half Cylinder given Volume and Radius formula is defined as the line connecting two vertices that are not on the same face of the Half cylinder, calculated using its volume and radius is calculated using Space Diagonal of Half Cylinder = sqrt(((2*Volume of Half Cylinder)/(pi*Radius of Half Cylinder^2))^2+Radius of Half Cylinder^2). To calculate Space Diagonal of Half Cylinder given Volume and Radius, you need Volume of Half Cylinder (V) & Radius of Half Cylinder (r). With our tool, you need to enter the respective value for Volume of Half Cylinder & Radius of Half Cylinder 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 Space Diagonal of Half Cylinder?
In this formula, Space Diagonal of Half Cylinder uses Volume of Half Cylinder & Radius of Half Cylinder. We can use 3 other way(s) to calculate the same, which is/are as follows -
  • Space Diagonal of Half Cylinder = sqrt(Height of Half Cylinder^2+Radius of Half Cylinder^2)
  • Space Diagonal of Half Cylinder = sqrt((Curved Surface Area of Half Cylinder/(pi*Radius of Half Cylinder))^2+Radius of Half Cylinder^2)
  • Space Diagonal of Half Cylinder = sqrt(Height of Half Cylinder^2+(Curved Surface Area of Half Cylinder/(pi*Height of Half Cylinder))^2)
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