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## First angle of Rhombohedron given surface area Solution

STEP 0: Pre-Calculation Summary
Formula Used
angle_a = asin(Surface Area/(6*Side^2))
∠A = asin(SA/(6*S^2))
This formula uses 2 Functions, 2 Variables
Functions Used
sin - Trigonometric sine function, sin(Angle)
asin - Inverse trigonometric sine function, asin(Number)
Variables Used
Surface Area - The surface area of a three-dimensional shape is the sum of all of the surface areas of each of the sides. (Measured in Square Meter)
Side - The side is an upright or sloping surface of a structure or object that is not the top or bottom and generally not the front or back. (Measured in Meter)
STEP 1: Convert Input(s) to Base Unit
Surface Area: 50 Square Meter --> 50 Square Meter No Conversion Required
Side: 9 Meter --> 9 Meter No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
∠A = asin(SA/(6*S^2)) --> asin(50/(6*9^2))
Evaluating ... ...
∠A = 0.103063017204641
STEP 3: Convert Result to Output's Unit
0.103063017204641 Radian -->5.90507590971126 Degree (Check conversion here)
5.90507590971126 Degree <-- Angle A
(Calculation completed in 00.000 seconds)

## < 3 Angle of Rhombohedron Calculators

First angle of Rhombohedron given surface area
angle_a = asin(Surface Area/(6*Side^2)) Go
Second angle of Rhombohedron
angle_b = pi-(Angle A) Go
First angle of Rhombohedron
angle_a = pi-Angle B Go

### First angle of Rhombohedron given surface area Formula

angle_a = asin(Surface Area/(6*Side^2))
∠A = asin(SA/(6*S^2))

## What is a rhombohedron?

In geometry, a rhombohedron (also called a rhombic hexahedron) is a three-dimensional figure like a cuboid (also called a rectangular parallelepiped), except that its faces are not rectangles but rhombi. It is a special case of a parallelepiped where all edges are the same length. It can be used to define the rhombohedral lattice system, a honeycomb with rhombohedral cells. In general a rhombohedron can have up to three types of rhombic faces in congruent opposite pairs, Ci symmetry, order 2.

## How to Calculate First angle of Rhombohedron given surface area?

First angle of Rhombohedron given surface area calculator uses angle_a = asin(Surface Area/(6*Side^2)) to calculate the Angle A, The First angle of Rhombohedron given surface area formula is defined as the figure formed by two rays of rhombohedron, where angle_a = first angle of rhombohedron. Angle A and is denoted by ∠A symbol.

How to calculate First angle of Rhombohedron given surface area using this online calculator? To use this online calculator for First angle of Rhombohedron given surface area, enter Surface Area (SA) & Side (S) and hit the calculate button. Here is how the First angle of Rhombohedron given surface area calculation can be explained with given input values -> 5.905076 = asin(50/(6*9^2)).

### FAQ

What is First angle of Rhombohedron given surface area?
The First angle of Rhombohedron given surface area formula is defined as the figure formed by two rays of rhombohedron, where angle_a = first angle of rhombohedron and is represented as ∠A = asin(SA/(6*S^2)) or angle_a = asin(Surface Area/(6*Side^2)). The surface area of a three-dimensional shape is the sum of all of the surface areas of each of the sides & The side is an upright or sloping surface of a structure or object that is not the top or bottom and generally not the front or back.
How to calculate First angle of Rhombohedron given surface area?
The First angle of Rhombohedron given surface area formula is defined as the figure formed by two rays of rhombohedron, where angle_a = first angle of rhombohedron is calculated using angle_a = asin(Surface Area/(6*Side^2)). To calculate First angle of Rhombohedron given surface area, you need Surface Area (SA) & Side (S). With our tool, you need to enter the respective value for Surface Area & Side 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 Angle A?
In this formula, Angle A uses Surface Area & Side. We can use 3 other way(s) to calculate the same, which is/are as follows -
• angle_b = pi-(Angle A)
• angle_a = pi-Angle B
• angle_a = asin(Surface Area/(6*Side^2)) Let Others Know