Right triangle calculator - the result
Right scalene triangle.
The lengths of the sides of the triangle:a = 8
b = 12
c = 14.42222051019
Area: T = 48
Perimeter: p = 34.42222051019
Semiperimeter: s = 17.21111025509
Angle ∠ A = α = 33.6990067526° = 33°41'24″ = 0.58880026035 rad
Angle ∠ B = β = 56.3109932474° = 56°18'36″ = 0.98327937232 rad
Angle ∠ C = γ = 90° = 1.57107963268 rad
Altitude (height) to the side a: ha = 12
Altitude (height) to the side b: hb = 8
Altitude (height) to the side c: hc = 6.65664023547
Median: ma = 12.64991106407
Median: mb = 10
Median: mc = 7.21111025509
Line segment ca = 9.98546035321
Line segment cb = 4.43876015698
Inradius: r = 2.78988974491
Circumradius: R = 7.21111025509
Vertex coordinates: A[14.42222051019; 0] B[0; 0] C[4.43876015698; 6.65664023547]
Centroid: CG[6.28766022239; 2.21988007849]
Coordinates of the circumscribed circle: U[7.21111025509; 0]
Coordinates of the inscribed circle: I[5.21111025509; 2.78988974491]
Exterior (or external, outer) angles of the triangle:
∠ A' = α' = 146.3109932474° = 146°18'36″ = 0.58880026035 rad
∠ B' = β' = 123.6990067526° = 123°41'24″ = 0.98327937232 rad
∠ C' = γ' = 90° = 1.57107963268 rad
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How did we calculate this triangle?
The calculation of the triangle has two phases. The first phase calculates all three sides of the triangle from the input parameters. The first phase is different for the different triangles query entered. The second phase calculates other triangle characteristics, such as angles, area, perimeter, heights, the center of gravity, circle radii, etc. Some input data also results in two to three correct triangle solutions (e.g., if the specified triangle area and two sides - typically resulting in both acute and obtuse) triangle).1. Input data entered: cathetus a and area S
a=8 S=48
2. From the area S and cathetus a, we calculate cathetus b:
3. From the cathetus a and cathetus b, we calculate hypotenuse c - Pythagorean theorem:
c2=a2+b2 c=a2+b2=82+122=208=14.422
4. From the area S and hypotenuse c, we calculate height h:
We know the lengths of all three sides of the triangle, so the triangle is uniquely specified. Next, we calculate another of its characteristics - the same procedure for calculating the triangle from the known three sides (SSS).
a=8 b=12 c=14.42
5. The triangle perimeter is the sum of the lengths of its three sides
p=a+b+c=8+12+14.42=34.42
6. The semiperimeter of the triangle
The semiperimeter of the triangle is half its perimeter. The semiperimeter frequently appears in formulas for triangles to be given a separate name. By the triangle inequality, the longest side length of a triangle is less than the semiperimeter.s=2p=234.42=17.21
7. The triangle area - from two legs
T=2ab=28⋅ 12=48
8. Calculate the heights of the right triangle from its area.
ha=b=12 hb=a=8 T=2chc hc=c2 T=14.422⋅ 48=6.66
9. Calculation of the inner angles of the triangle - basic use of sine function
sinα=ca α=arcsin(ca)=arcsin(14.428)=33°41′24" sinβ=cb β=arcsin(cb)=arcsin(14.4212)=56°18′36" γ=90°
10. Inradius
An incircle of a triangle is a tangent circle to each side. An incircle center is called an incenter and has a radius named inradius. All triangles have an incenter, and it always lies inside the triangle. The incenter is the intersection of the three-angle bisectors. The product of a triangle's inradius and semiperimeter (half the perimeter) is its area.T=rs r=sT=17.2148=2.79
11. Circumradius
The circumcircle of a triangle is a circle that passes through all of the triangle's vertices, and the circumradius of a triangle is the radius of the triangle's circumcircle. The circumcenter (center of the circumcircle) is the point where the perpendicular bisectors of a triangle intersect.R=2c=214.42=7.21
12. Calculation of medians
A median of a triangle is a line segment joining a vertex to the opposite side's midpoint. Every triangle has three medians, and they all intersect each other at the triangle's centroid. The centroid divides each median into parts in the ratio of 2:1, with the centroid being twice as close to the midpoint of a side as it is to the opposite vertex. We use Apollonius's theorem to calculate a median's length from its side's lengths.ma2=b2+(a/2)2 ma=b2+(a/2)2=122+(8/2)2=12.649 mb2=a2+(b/2)2 mb=a2+(b/2)2=82+(12/2)2=10 mc=R=2c=214.42=7.211
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