squants

SVector

trait SVector[A] extends AnyRef

Root trait for representing Vectors

A

Type for the Vector's coordinate values

Source
SVector.scala
Since

0.3.0

Linear Supertypes
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Type Members

  1. abstract type SVectorType <: SVector[A]

Abstract Value Members

  1. abstract def angle(coordinateX: Int = 0, coordinateY: Int = 1, unit: AngleUnit = Radians): Angle

    The angle between the two Cartesian coordinates at the supplied indices

    The angle between the two Cartesian coordinates at the supplied indices

    coordinateX

    index of the abscissa coordinate (defaults to 0)

    coordinateY

    index of the ordinate coordinate (defaults to 1)

    unit

    unit for the angle (theta) component (defaults to Radians)

    returns

    Angle

  2. abstract def coordinates: Seq[A]

    The list of values that makeup the Vector's Cartesian coordinates

    The list of values that makeup the Vector's Cartesian coordinates

    returns

  3. abstract def crossProduct(that: DoubleVector): SVector[A]

    Create the Cross Product of two Vectors

    Create the Cross Product of two Vectors

    that

    Vector[A]

    returns

  4. abstract def divide(that: Double): SVectorType

    Reduce a Vector

    Reduce a Vector

    that

    Double

    returns

  5. abstract def dotProduct(that: DoubleVector): A

    Create the Dot Product of two Vectors

    Create the Dot Product of two Vectors

    that

    Double

    returns

  6. abstract def magnitude: A

    The scalar value of the Vector

    The scalar value of the Vector

    returns

  7. abstract def minus(that: SVectorType): SVectorType

    Subtract two Vectors

    Subtract two Vectors

    that

    Vector[A]

    returns

  8. abstract def normalize: SVectorType

    Creates the Unit Vector which corresponds to this vector

    Creates the Unit Vector which corresponds to this vector

    returns

  9. abstract def plus(that: SVectorType): SVectorType

    Add two Vectors

    Add two Vectors

    that

    Vector[A]

    returns

  10. abstract def times(that: Double): SVectorType

    Scale a Vector

    Scale a Vector

    that

    Double

    returns

Concrete Value Members

  1. final def !=(arg0: AnyRef): Boolean

    Definition Classes
    AnyRef
  2. final def !=(arg0: Any): Boolean

    Definition Classes
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  3. final def ##(): Int

    Definition Classes
    AnyRef → Any
  4. def #*: (DoubleVector) ⇒ SVector[A]

  5. def *(that: DoubleVector): A

  6. def *: (Double) ⇒ SVectorType

  7. def +: (SVectorType) ⇒ SVectorType

  8. def -: (SVectorType) ⇒ SVectorType

  9. def /(that: Double): SVectorType

  10. final def ==(arg0: AnyRef): Boolean

    Definition Classes
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  11. final def ==(arg0: Any): Boolean

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  12. final def asInstanceOf[T0]: T0

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  13. def clone(): AnyRef

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  14. final def eq(arg0: AnyRef): Boolean

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  15. def equals(arg0: Any): Boolean

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  16. def finalize(): Unit

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  17. final def getClass(): Class[_]

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  18. def hashCode(): Int

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  19. final def isInstanceOf[T0]: Boolean

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  20. final def ne(arg0: AnyRef): Boolean

    Definition Classes
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  21. final def notify(): Unit

    Definition Classes
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  22. final def notifyAll(): Unit

    Definition Classes
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  23. def polar(coordinateX: Int = 0, coordinateY: Int = 1, unit: AngleUnit = Radians): (A, Angle)

    The polar coordinates (r, theta) of the two Cartesian coordinates at the supplied indices

    The polar coordinates (r, theta) of the two Cartesian coordinates at the supplied indices

    coordinateX

    index of the abscissa coordinate (defaults to 0)

    coordinateY

    index of the ordinate coordinate (defaults to 1)

    unit

    unit for the angle (theta) component (defaults to Radians)

    returns

    (A, Angle)

  24. final def synchronized[T0](arg0: ⇒ T0): T0

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  25. def toString(): String

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  26. final def wait(): Unit

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    @throws( ... )
  27. final def wait(arg0: Long, arg1: Int): Unit

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  28. final def wait(arg0: Long): Unit

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