sin 30°
- I want
- Function of an angle
- Function
- sin
- Sudut
- 30
- Angle unit
- Derajat
- Hasil
- 0.5
- Nilai tepat
- 1/2
- cos
- 0.8660254038
Sumber pemeriksaan: Standard special value (A&S Table 4.3); Python 3.8 math: cos(radians(30))
Hitung sin, cos, tan, sec, csc dan cot dalam derajat, radian atau gradian, nilai eksak pada kelipatan 15°, serta semua solusi fungsi invers.
Diperbarui Contoh terverifikasi: 13
sin 30° = 0.5 (exactly 1/2). The angle sits in Quadrant I, where the point on the unit circle is (0.866, 0.5).
| Function | Nilai | Eksak |
|---|---|---|
| sin | 0.5 | 1/2 |
| cos | 0.866 | √3/2 |
| tan | 0.5774 | √3/3 |
| sec | 1.1547 | 2√3/3 |
| csc | 2 | 2 |
| cot | 1.7321 | √3 |
Quadrant I; reference angle 30°.
Exact: sin 30° = 1/2.
Enter an angle in degrees, radians or gradians to get all six trigonometric functions. Sine and cosine are the coordinates of the matching point on the unit circle; the rest follow as tan = sin/cos, sec = 1/cos, csc = 1/sin and cot = cos/sin. At multiples of 15° the exact surd form is shown as well, such as sin 60° = √3/2. The inverse mode turns a value back into an angle and lists every angle that shares it.
The default, sin 30°, is exactly 1/2, and the drawing puts the point at (0.866, 0.5). The same functions convert between angles and slopes: a roof pitched at 37° rises tan 37° = 0.7536 m per metre of run.
Principal values follow the NIST Digital Library of Mathematical Functions: arcsin and arctan return −90° to 90°, arccos 0° to 180°. arccot uses the continuous range 0° to 180°, which differs from the DLMF definition for negative inputs.
Sumber pemeriksaan: Standard special value (A&S Table 4.3); Python 3.8 math: cos(radians(30))
Sumber pemeriksaan: Standard special value; Python 3.8 math: 1/cos(pi/4)
Sumber pemeriksaan: cos(180° − 60°) = −cos 60° = −1/2
Sumber pemeriksaan: Python 3.8 math: sin(pi/4) = √2/2
Multiply by π/180: 30° is π/6 ≈ 0.5236 rad, 45° is π/4 ≈ 0.7854 rad and 180° is π rad. To go back, multiply radians by 180/π ≈ 57.2958. Mixing the two is the most common trig mistake: sin 30 with the angle read as radians is −0.988, not 0.5.
sin 30° = 1/2, sin 45° = √2/2 ≈ 0.7071 and sin 60° = √3/2 ≈ 0.8660; cosine takes the same values in reverse order, so cos 30° = √3/2 and cos 60° = 1/2. tan 30° = √3/3 ≈ 0.5774, tan 45° = 1 and tan 60° = √3 ≈ 1.7321. All of them come from the 30-60-90 and 45-45-90 triangles.
Because tan θ = sin θ / cos θ and cos 90° = 0, so the ratio divides by zero. As θ approaches 90° from below, tan θ grows without bound: tan 89° ≈ 57.29 and tan 89.9° ≈ 572.96. The same happens at 270° and every 90° + 180°k. Secant is undefined at those angles too, and cosecant and cotangent wherever sin θ = 0.
No. sin⁻¹ x, also written arcsin x, is the inverse function: the angle whose sine is x, so sin⁻¹ 0.5 = 30°. 1/sin x is the reciprocal, called cosecant: csc 30° = 1/0.5 = 2. The clash arises because sin² x means (sin x)², while the −1 exponent on a function name means its inverse; writing arcsin avoids the ambiguity.
A function must return a single value, so arcsin is restricted to a principal range of −90° to 90° (DLMF §4.23). Every other angle with the same sine follows from θ and 180° − θ plus whole turns: sin θ = 0.5 for θ = 30° + 360°k or 150° + 360°k, with k any integer. For arccos the range is 0° to 180° and the other family is −θ + 360°k.
Akurasi bergantung pada masukan dan asumsi metode. Aritmetika desimal memakai 50 digit signifikan, tetapi perkiraan, metode numerik dan data sumber bisa kurang presisi; pembulatan yang ditampilkan tidak menghilangkan batasan itu. Contoh penyelesaian yang diperiksa dengan sumber independen: 13. Misalnya, “sin 30°” diperiksa dengan Standard special value (A&S Table 4.3); Python 3.8 math: cos(radians(30)).
NIST Digital Library of Mathematical Functions §4.14 (definitions) and §4.23 (inverse trigonometric functions, principal values); Abramowitz & Stegun, Handbook of Mathematical Functions, Table 4.3 — special values of the trigonometric functions.
Kalkulator ini mencakup 13 contoh perhitungan dengan jawaban dari sumber independen. Contoh tersebut dijalankan dalam rangkaian pengujian dan dapat Anda jalankan di sini juga.
Konversikan derajat desimal, derajat-menit-detik (DMS), radian, gradian, putaran, menit busur, detik busur dan miliradian.
Hitung hipotenusa, sisi yang belum diketahui, sudut lancip, luas dan keliling dari dua nilai dengan teorema Pythagoras dan trigonometri.
Cari sisi, sudut, luas, keliling, tinggi, serta jari-jari lingkaran dalam dan luar dari tiga ukuran, termasuk kedua solusi SSA yang mungkin.