Winkel umrechnen: Grad, Radiant, DMS und Gon

Winkel zwischen Dezimalgrad, Grad-Minuten-Sekunden (DMS), Radiant, Gon, Umdrehungen, Bogenminuten, Bogensekunden und Milliradiant umrechnen.

Aktualisiert Geprüfte Beispiele: 8

Degrees accept DMS such as 12°30'15", 12 30 15 or 33°51'35" S; radians accept expressions such as pi/4
Ausprobieren
Grad
°
Grad: 12.5041666667 °
Maximale Nachkommastellen: 10; Zum nächsten Wert, bei Gleichstand von null weg
Degrees, minutes, seconds
12° 30′ 15″
Radiant
0.2182388786rad
Gon
13.8935185185grad
Turns
0.0347337963
Arcminutes
750.25′
Arcseconds
45,015″
Milliradians
218.23887855mrad
Same direction within 0°–360°
12.5041666667°

12°30'15" is 12.50416667° (12° 30′ 15″), which is 0.21823888 rad, 13.89351852 grad or 0.0347338 of a turn.

The angle measured from the positive x-axis

12.5°
So wird gerechnet S
  1. To degrees

    (12+3060+153600)=12.5041666667∘\left(12 + \frac{30}{60} + \frac{15}{3600}\right) = 12.5041666667^\circ

    Degrees + minutes/60 + seconds/3600.

  2. To radians

    12.5041666667∘×π180=0.2182388786 rad12.5041666667^\circ \times \frac{\pi}{180} = 0.2182388786\ \text{rad}
  3. To gradians and turns

    12.5041666667∘×109=13.8935185185 grad12.5041666667∘360∘=0.0347337963 turn\begin{gathered} 12.5041666667^\circ \times \frac{10}{9} = 13.8935185185\ \text{grad} \\[6pt] \frac{12.5041666667^\circ}{360^\circ} = 0.0347337963\ \text{turn} \end{gathered}
  4. To degrees, minutes, seconds

    12° 30′ 15″ (seconds rounded to at most 4 decimals).

Über Winkel umrechnen: Grad, Radiant, DMS und Gon

Type an angle in any of seven units and it is converted to all the others. Degrees accept decimals or degrees, minutes and seconds: 1° = 60′ = 3,600″, so 12°30′15″ is 12 + 30/60 + 15/3600 = 12.5041667°. Radians use 180° = π rad, gradians 400 to a full turn and milliradians 1,000 to a radian. When the angle is a simple fraction of π, the π form is shown too, such as 5π/72 for 12.5°.

The default, 12°30′15″, is 0.2182389 rad or 45,015″. GPS coordinates and survey bearings are the usual case: a latitude written 33°51′35″ S becomes −33.8597222° for a spreadsheet or mapping tool, with south and west negative.

Only the last DMS part may carry decimals, and minutes and seconds must be below 60. Seconds are rounded to four decimal places, about 3 mm of latitude on the ground.

Durchgerechnete Beispiele

12°30'15" (DMS)

Winkel
12°30'15"
Unit of the angle
Degrees (decimal or DMS)
Grad
12.5041666667 °
Radiant
0.2182388786 rad
Gon
13.8935185185 grad
Degrees, minutes, seconds
12° 30′ 15″
Arcseconds
45,015 ″

Prüfquelle: Python 3.8 fractions: 12 + 30/60 + 15/3600 = 3001/240; math.radians of that; ×10/9 for gradians

1 radian

Winkel
1
Unit of the angle
Radiant
Grad
57.2957795131 °
Degrees, minutes, seconds
57° 17′ 44.8062″
Turns
0.1591549431

Prüfquelle: Python 3.8 math: degrees(1) = 57.29577951308232; 0.2957795…×60 = 17.7467707…′, 0.7467707…×60 = 44.80625″; 1/(2π)

π radians typed as an expression

Winkel
pi
Unit of the angle
Radiant
Grad
180 °
Radians as a multiple of π
π
Gon
200 grad

Prüfquelle: π rad = 180° = 200 grad by definition

400 gradians (full turn, edge case)

Winkel
400
Unit of the angle
Gradians (gon)
Grad
360 °
Turns
1
Same direction within 0°–360°
0 °
Degrees, minutes, seconds
360° 0′ 0″

Prüfquelle: 400 grad = 1 turn = 360° by definition

Fragen

How do you convert degrees, minutes and seconds to decimal degrees?

Add the minutes divided by 60 and the seconds divided by 3,600 to the whole degrees: 12°30′15″ = 12 + 0.5 + 0.0041667 = 12.5041667°. For a south latitude or a west longitude, make the result negative, so 33°51′35″ S is −33.8597222°. The sign applies to the whole angle, not only to the degrees.

How do you convert decimal degrees to degrees, minutes and seconds?

Keep the whole number as degrees, multiply the fractional part by 60 for minutes, then multiply the new fractional part by 60 for seconds. For 57.2957795°: 0.2957795 × 60 = 17.7467707′, and 0.7467707 × 60 = 44.806″, giving 57°17′44.806″. That angle is one radian.

Wie viele Grad hat ein Radiant?

One radian is 180/π ≈ 57.2958°, or 57°17′44.8″. It is the angle at the centre of a circle cut off by an arc as long as the radius, so a full turn is 2π ≈ 6.2832 rad. The radian is the SI unit of plane angle; the degree, minute and second are accepted for use with the SI (BIPM SI Brochure, Table 8).

Was ist ein Gon?

A gradian, or gon, is 1/400 of a full turn, so a right angle is exactly 100 grad and 1 grad = 0.9°. It is used mainly in surveying in parts of continental Europe, where splitting the right angle into 100 parts suits decimal arithmetic. 200 grad equals 180°, or π rad.

What is a milliradian?

A milliradian (mrad) is one thousandth of a radian, about 0.0573° or 3.44 arcminutes. At a distance of 1,000 m it spans about 1 m, which is why rifle scopes use it for holdover and range estimates. The NATO mil used for artillery is a rounded version: 6,400 to a circle, against 6,283.2 true milliradians.

Wie genau arbeitet „Winkel umrechnen: Grad, Radiant, DMS und Gon“?

Die Genauigkeit hängt von Ihren Eingaben und den Annahmen der Methode ab. Die Dezimalrechnung nutzt 50 signifikante Stellen, doch Schätzungen, numerische Verfahren und Quelldaten können ungenauer sein. Die angezeigte Rundung beseitigt diese Grenzen nicht. Anhand unabhängiger Quellen geprüfte Rechenbeispiele: 8. Beispielsweise wird „12°30'15" (DMS)“ anhand von Python 3.8 fractions: 12 + 30/60 + 15/3600 = 3001/240; math.radians of that; ×10/9 for gradians geprüft.

Woher stammt die Methode?

BIPM, The International System of Units (SI brochure, 9th ed.), Table 8 — degree, minute and second of arc; NIST SP 811 (2008), Appendix B.9 — factors for plane angle.

Über diesen Rechner

1∘=60′=3600′′=π180 rad=109 grad=1360 turn1^\circ = 60' = 3600'' = \frac{\pi}{180}\,\text{rad} = \frac{10}{9}\,\text{grad} = \frac{1}{360}\,\text{turn}

Quellen

  1. BIPM, The International System of Units (SI brochure, 9th ed.), Table 8 — degree, minute and second of arc
  2. NIST SP 811 (2008), Appendix B.9 — factors for plane angle

Anhand von Quellen geprüft

Dieser Rechner enthält 8 Rechenbeispiele mit Ergebnissen aus unabhängigen Quellen. Sie laufen in der Testsuite und können auch hier ausgeführt werden.

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