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Base Surface Area of a Conical Frustum Solution

STEP 0: Pre-Calculation Summary
Formula Used
base_surface_area = pi*(Radius 2)^2
BSA = pi*(r2)^2
This formula uses 1 Constants, 1 Variables
Constants Used
pi - Archimedes' constant Value Taken As 3.14159265358979323846264338327950288
Variables Used
Radius 2 - Radius 2 is a radial line from the focus to any point of a curve. (Measured in Meter)
STEP 1: Convert Input(s) to Base Unit
Radius 2: 13 Meter --> 13 Meter No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
BSA = pi*(r2)^2 --> pi*(13)^2
Evaluating ... ...
BSA = 530.929158456675
STEP 3: Convert Result to Output's Unit
530.929158456675 Square Meter --> No Conversion Required
FINAL ANSWER
530.929158456675 Square Meter <-- Base Surface Area
(Calculation completed in 00.016 seconds)

11 Other formulas that you can solve using the same Inputs

Lateral Surface Area of a Conical Frustum
lateral_surface_area = pi*(Radius 1+Radius 2)*sqrt((Radius 1-Radius 2)^2+Height^2) Go
Volume of a Conical Frustum
volume = (1/3)*pi*Height*(Radius 1^2+Radius 2^2+(Radius 1*Radius 2)) Go
Total Surface Area of Hollow Cylinder
surface_area = 2*pi*(Radius 1+Radius 2)*(Radius 2-Radius 1+Height) Go
Radius of inscribed sphere in a cone when radius and height of cone are known
radius_1 = (Radius 2*Height)/(sqrt(Radius 2^2+Height^2)+Radius 2) Go
Curved Surface area of Frustum of right circular cone
curved_surface_area = pi*(Radius 1+Radius 2)*Slant Height Go
Curved Surface Area of Hollow cylinder
curved_surface_area = 2*pi*Height*(Radius 1+Radius 2) Go
Slant height of Frustum of right circular cone
slant_height = sqrt(Height^2+(Radius 1-Radius 2)^2) Go
Slant Height of Frustum
slant_height = sqrt(Height^2+(Radius 1-Radius 2)^2) Go
Lateral surface area of hollow cylinder
surface_area = 2*pi*Height*(Radius 1+Radius 2) Go
Volume of hollow cylinder
volume = pi*Height*(Radius 2^2-Radius 1^2) Go
Area of a Torus
area = pi^2*(Radius 2^2-Radius 1^2) Go

5 Other formulas that calculate the same Output

Plan Area when Settling Velocity is Given
base_surface_area = Discharge/Settling velocity Go
Base Surface Area of Oblique Prism given Volume
base_surface_area = Volume/Height Go
Base Surface Area of a Hemisphere
base_surface_area = pi*Radius^2 Go
Base Surface Area of a Cone
base_surface_area = pi*Radius^2 Go
Base Surface Area of a Pyramid
base_surface_area = Side^2 Go

Base Surface Area of a Conical Frustum Formula

base_surface_area = pi*(Radius 2)^2
BSA = pi*(r2)^2

How to Calculate Base Surface Area of a Conical Frustum?

Base Surface Area of a Conical Frustum calculator uses base_surface_area = pi*(Radius 2)^2 to calculate the Base Surface Area, Base Surface Area of a Conical Frustum can be defined as the surface area of the base of a conical frustum. Base Surface Area and is denoted by BSA symbol.

How to calculate Base Surface Area of a Conical Frustum using this online calculator? To use this online calculator for Base Surface Area of a Conical Frustum, enter Radius 2 (r2) and hit the calculate button. Here is how the Base Surface Area of a Conical Frustum calculation can be explained with given input values -> 530.9292 = pi*(13)^2.

FAQ

What is Base Surface Area of a Conical Frustum?
Base Surface Area of a Conical Frustum can be defined as the surface area of the base of a conical frustum and is represented as BSA = pi*(r2)^2 or base_surface_area = pi*(Radius 2)^2. Radius 2 is a radial line from the focus to any point of a curve.
How to calculate Base Surface Area of a Conical Frustum?
Base Surface Area of a Conical Frustum can be defined as the surface area of the base of a conical frustum is calculated using base_surface_area = pi*(Radius 2)^2. To calculate Base Surface Area of a Conical Frustum, you need Radius 2 (r2). With our tool, you need to enter the respective value for Radius 2 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 Base Surface Area?
In this formula, Base Surface Area uses Radius 2. We can use 5 other way(s) to calculate the same, which is/are as follows -
  • base_surface_area = pi*Radius^2
  • base_surface_area = pi*Radius^2
  • base_surface_area = Side^2
  • base_surface_area = Discharge/Settling velocity
  • base_surface_area = Volume/Height
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