Arc Length & Sector Area Calculator
Enter the circle radius r and central angle θ (choose degrees or radians) to instantly get the arc length s = r·θ, sector area A = ½·r²·θ, chord 2r·sin(θ/2) and sector perimeter (arc + two radii). Degree inputs are converted to radians (rad = deg × π/180) under the hood.
Enter a positive radius and a non-negative central angle.
Arc length s
10.4720
s = r · θ (θ in radians)
Sector area A
52.3599
A = ½ · r² · θ
Chord length
10
chord = 2r · sin(θ / 2)
Sector perimeter
30.4720
perimeter = arc length + 2r (the two radii)
Angle in radians
1.0472
Angle in degrees
60
Formula
s = r · θ ; A = ½ · r² · θ ; chord = 2r · sin(θ / 2) (θ in radians)
Degrees are auto-converted to radians (rad = deg × π / 180). Use any length unit you like (cm, m, in, ft, km); the sector area comes back in that unit squared.
Formula
s = r · θ ; A = ½ · r² · θ chord = 2 r · sin(θ / 2) (θ in radians) sector perimeter = s + 2 r
- · θ inside the formulas must be in radians — plugging degrees in directly gives an answer that is off by a factor of π/180.
- · Convert degrees → radians: θ(rad) = θ(°) × π / 180. Common values: 90° = π/2, 180° = π, 360° = 2π.
- · Chord = 2r·sin(θ/2) depends only on the two endpoints, so θ and 360° − θ give the same chord; for θ > 360° the chord uses θ mod 360°.
- · A sector takes up θ / (2π) of the circle, equivalently sectorArea / (πr²) — useful as a sanity check.
- · Length units are your choice (cm, m, in, ft, km, …); radius, arc and chord share one unit, and the sector area comes back in that unit squared.
- · References: CRC Standard Mathematical Tables and Formulae (31st ed., §4.6.2); Bronshtein & Semendyayev, Handbook of Mathematics, §3.1.6.
Frequently asked
Why must the angle be converted to radians before plugging in?
The derivation s = r·θ defines a radian as “the angle whose arc length equals the radius”. So θ in the formula isn’t an angle measure per se — it’s “how many radius-lengths of arc you’ve travelled”. Plug a degree value in directly and the answer is off by 180/π ≈ 57.296. This calculator defaults to degrees and multiplies by π/180 internally, so 60° and 1.0472 rad give the exact same result.
What’s the difference between chord length and arc length?
The arc length s is the curved distance measured along the rim of the circle (s = r·θ). The chord is the straight line joining the two endpoints (chord = 2r·sin(θ/2)) — the distance “as the crow flies”. For small θ they agree (sin(x) ≈ x); at θ = 180° the chord equals the diameter 2r; at θ = 360° the endpoints coincide and the chord collapses to zero.
When is the sector perimeter actually useful?
A sector’s perimeter = arc + two radii = s + 2r — different from the arc length alone, because a sector is a pie slice whose boundary is the curved arc plus the two straight radii. Real uses: cutting fabric / leather / cardboard into a sector, edging a wedge-shaped garden bed, sizing a strip of LEDs around a wedge light, or just answering geometry-textbook perimeter questions.
Can I use this to compute the full circle’s circumference and area?
Yes — feed θ = 360° (or 2π rad) and you go full circle: arc length = 2πr is the circumference, sector area = πr² is the disk area, and the chord collapses to 0 since the endpoints meet. If you just want to interconvert radius / diameter / circumference / area without an angle, the dedicated Circle Calculator is more direct.
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