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https://mathworld.wolfram.com/CircularSegment.html

Circular Segment -- from Wolfram MathWorld

A circular segment is a portion of a disk whose upper boundary is a (circular) arc and whose lower boundary is a chord making a central angle theta<pi radians (180 degrees), illustrated above as the shaded region. The entire wedge-shaped area is known as a circular sector. Circular segments are implemented in the Wolfram Language as DiskSegment[{x, y}, r, {q1, q2}]. Elliptical segments are similarly implemented as DiskSegment[{x, y}, {r1, r2}, {q1, q2}]. Let R be the radius of the...



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Circular Segment -- from Wolfram MathWorld

https://mathworld.wolfram.com/CircularSegment.html

A circular segment is a portion of a disk whose upper boundary is a (circular) arc and whose lower boundary is a chord making a central angle theta<pi radians (180 degrees), illustrated above as the shaded region. The entire wedge-shaped area is known as a circular sector. Circular segments are implemented in the Wolfram Language as DiskSegment[{x, y}, r, {q1, q2}]. Elliptical segments are similarly implemented as DiskSegment[{x, y}, {r1, r2}, {q1, q2}]. Let R be the radius of the...



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https://mathworld.wolfram.com/CircularSegment.html

Circular Segment -- from Wolfram MathWorld

A circular segment is a portion of a disk whose upper boundary is a (circular) arc and whose lower boundary is a chord making a central angle theta<pi radians (180 degrees), illustrated above as the shaded region. The entire wedge-shaped area is known as a circular sector. Circular segments are implemented in the Wolfram Language as DiskSegment[{x, y}, r, {q1, q2}]. Elliptical segments are similarly implemented as DiskSegment[{x, y}, {r1, r2}, {q1, q2}]. Let R be the radius of the...

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      Circular Segment -- from Wolfram MathWorld
    • DC.Title
      Circular Segment
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      Weisstein, Eric W.
    • DC.Description
      A circular segment is a portion of a disk whose upper boundary is a (circular) arc and whose lower boundary is a chord making a central angle theta<pi radians (180 degrees), illustrated above as the shaded region. The entire wedge-shaped area is known as a circular sector. Circular segments are implemented in the Wolfram Language as DiskSegment[{x, y}, r, {q1, q2}]. Elliptical segments are similarly implemented as DiskSegment[{x, y}, {r1, r2}, {q1, q2}]. Let R be the radius of the...
    • description
      A circular segment is a portion of a disk whose upper boundary is a (circular) arc and whose lower boundary is a chord making a central angle theta<pi radians (180 degrees), illustrated above as the shaded region. The entire wedge-shaped area is known as a circular sector. Circular segments are implemented in the Wolfram Language as DiskSegment[{x, y}, r, {q1, q2}]. Elliptical segments are similarly implemented as DiskSegment[{x, y}, {r1, r2}, {q1, q2}]. Let R be the radius of the...
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      Circular Segment -- from Wolfram MathWorld
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      A circular segment is a portion of a disk whose upper boundary is a (circular) arc and whose lower boundary is a chord making a central angle theta<pi radians (180 degrees), illustrated above as the shaded region. The entire wedge-shaped area is known as a circular sector. Circular segments are implemented in the Wolfram Language as DiskSegment[{x, y}, r, {q1, q2}]. Elliptical segments are similarly implemented as DiskSegment[{x, y}, {r1, r2}, {q1, q2}]. Let R be the radius of the...
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      Circular Segment -- from Wolfram MathWorld
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      A circular segment is a portion of a disk whose upper boundary is a (circular) arc and whose lower boundary is a chord making a central angle theta<pi radians (180 degrees), illustrated above as the shaded region. The entire wedge-shaped area is known as a circular sector. Circular segments are implemented in the Wolfram Language as DiskSegment[{x, y}, r, {q1, q2}]. Elliptical segments are similarly implemented as DiskSegment[{x, y}, {r1, r2}, {q1, q2}]. Let R be the radius of the...
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