Linked from
The 29 pages that link to Vector, each with the reason it gives.
Coulomb's lawNarrower topic: Electric force has direction as well as magnitude, so the law is applied vectorially.
ForceNarrower topic: Force has direction, so its effects depend on vector addition.
AccelerationRelated: Velocity and acceleration both require direction as well as magnitude.
MomentumNarrower topic: Momentum's direction makes vector addition essential when combining bodies' motion.
VelocityNarrower topic: Velocity belongs to this family because direction is part of its value.
Angular velocityNarrower topic: In three dimensions angular velocity carries an axis direction as well as magnitude.
Linear algebraRelated: Vectors are the objects that linear combinations and transformations act on.
Coordinate geometryRelated: Vector components encode direction and displacement between coordinate points.
Cross productNarrower topic: The cross product takes two vectors as inputs and returns another vector.
Newton's second lawNarrower topic: Force, momentum, and acceleration must be combined with their directions intact.
Dot productNarrower topic: The dot product takes two vectors as its inputs.
Vector additionNarrower topic: Vector addition acts on these objects and returns another vector.
Affine spaceRelated: Differences of points in an affine space are vectors.
DisplacementNarrower topic: Displacement is a vector, not merely a distance.
Euclidean normNarrower topic: The Euclidean norm assigns a length to each coordinate vector.
SpeedCompared with: Velocity is vector-valued, unlike the speed derived from its magnitude.
Centripetal accelerationNarrower topic: Acceleration's vector direction points inward while its magnitude follows the speed-radius relation.
Hadamard productBroader topic: For vectors, the Hadamard product multiplies components position by position.
Scalar multiplicationNarrower topic: Scalar multiplication acts on vectors and produces another vector.
Electric dipoleRelated: The dipole moment points from negative charge toward positive charge.
Point (geometry)Compared with: A vector can describe displacement between points, but is not itself a position.
Electrostatic forceNarrower topic: Electrostatic force has direction as well as strength, so vector addition is essential.
Vector geometryNarrower topic: Vectors are the basic objects used to represent directions and displacements in geometry.
Right-hand ruleNarrower topic: The rule determines a direction, not a field’s strength.
Wave vectorNarrower topic: Its vector structure separates propagation direction from spatial frequency.
Magnitude (mathematics)Related: Vector magnitude measures its size while leaving its direction separate.
Multivariable calculusNarrower topic: Vectors describe points, directions, and rates of change.
Vector notationNarrower topic: Vector notation is the symbolic language used to write these quantities.
Three-dimensional system (spatial)Related: Vectors encode positions, forces, and motions within three-dimensional space.