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Displacement (vector)

 

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Displacement (vector)



 
 
In physics
Physics

Physics is the natural science which examines basic concepts such as energy, force, and spacetime and all that derives from these, such as mass, charge, matter and its Motion ....
, displacement is the vector that specifies the change in position of a point or a particle in reference to a previous position. When the previous point is the origin, this is better referred to as a position
Position vector

clude>A position, location or radius vector is a vector which represents the position of an object in Space#Classical_mechanics in relation to an arbitrary reference Point_....
.

A position vector is a simplified representation of motion
Motion (physics)

In physics, motion means a constant change in the location of a body. Change in motion is the result of applied force. Motion is typically described in terms of velocity, acceleration, Displacement , and time....
. Namely, it indicates both the length and direction of a hypothetical motion along a straight line from the reference position, and may be described as a sequence of very small displacements.






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In physics
Physics

Physics is the natural science which examines basic concepts such as energy, force, and spacetime and all that derives from these, such as mass, charge, matter and its Motion ....
, displacement is the vector that specifies the change in position of a point or a particle in reference to a previous position. When the previous point is the origin, this is better referred to as a position
Position vector

clude>A position, location or radius vector is a vector which represents the position of an object in Space#Classical_mechanics in relation to an arbitrary reference Point_....
.

A position vector is a simplified representation of motion
Motion (physics)

In physics, motion means a constant change in the location of a body. Change in motion is the result of applied force. Motion is typically described in terms of velocity, acceleration, Displacement , and time....
. Namely, it indicates both the length and direction of a hypothetical motion along a straight line from the reference position, and may be described as a sequence of very small displacements. On the other hand, a distance
Distance

Distance is a numerical description of how far apart objects are. In physics or everyday discussion, distance may refer to a physical length, a period of time, or an estimation based on other criteria ....
 is typically defined as a scalar
Scalar (physics)

In physics, a scalar is a simple physical quantity that is not changed by coordinate system rotations or translations , or by Lorentz transformations or space-time translations ....
 quantity and can be used to indicate both the length of a displacement (minimum distance) and the length of a curved path (traveled distance), but not the direction of the motion.

The displacement vector is the difference between the final and initial positions. This difference, divided by the time needed to perform the motion, defines the average velocity
Velocity

In physics, velocity is defined as the Derivative of Position vector. It is a vector physical quantity; both speed and direction are required to define it....
 of the point or particle.

In dealing with the motion of a rigid body
Rigid body

In physics, a rigid body is an idealization of a solid Physical body of finite size in which deformation is neglected. In other words, the distance between any two given Point s of a rigid body remains constant in time regardless of external forces exerted on it....
, the term displacement may also include the rotation
Rotation

A rotation is a movement of an object in a circular motion. A two-dimensional object rotates around a center of rotation. A Three-dimensional space object rotates around a line called an axis....
s of the body. In this case, the displacement of a particle of the body is called linear displacement (displacement along a line), while the rotation is called angular displacement.

Distance Travelled

If the position of an object is described by a vector function , then the distance traveled as a function of is described by the integral of one with respect to arc length
Arc length

Determining the length of an irregular arc segment ? also called rectification of a curve ? was historically difficult. Although many methods were used for specific curves, the advent of calculus led to a general formula that provides closed-form expression in some cases....
. where is the arc length differential The arc length differential is described by the following equation: where is velocity is speed.

Displacement, position, and velocity


A position
Position

Position may refer to:* A location in a coordinate system, usually in two or more dimensions; the science of position and its generalizations is topology...
 vector can be viewed as an hypothetical displacement of a point or particle from the origin of a coordinate system
Coordinate system

In mathematics and its applications, a coordinate system is a system for assigning an n-tuple of numbers or scalar to each Point in an n-dimensional space....
 to the location of a point at a given time.

On a graph representing the position of a particle with respect to time (position vs. time graph), the slope of the straight line joining two points on the graph is the average velocity
Velocity

In physics, velocity is defined as the Derivative of Position vector. It is a vector physical quantity; both speed and direction are required to define it....
 of the particle during the corresponding time interval, while the slope of the tangent to the graph at a given point is the instantaneous velocity at the corresponding time (first derivative
Derivative

In calculus, a branch of mathematics, the derivative is a measure of how a function changes as its input changes. Loosely speaking, a derivative can be thought of as how much a quantity is changing at a given point....
 of the particle position).

Displacement and the equations of motion

To calculate displacement all vectors and scalars must be taken into consideration. The following formulas can be used to calculate displacement, '..





Where:

Initial velocity Final velocity Acceleration Time ? Displacement Position (in one dimension) Position (in three dimensions)

  • It should also emphasized that vector directions, negative and positive signs, are important when calculating displacement


Height displacement

Height displacement is the distance an object peaks in height vertically. If, for example, a ball was thrown up in the air and back into the owners hand the displacement would be
zero, since displacement over a period of time is defined as the distance between an object's starting and finishing points.

However using the equation can be shortened to to calculate overall
vertical height meaning time is an important factor in the calculation. is the acceleration caused by gravity which stays constant at approximately , depending on the direction of the object is travelling a negative or positive sign is required since it is an equation of motion and is a vector,quantity.

See also

  • Position vector
    Position vector

    clude>A position, location or radius vector is a vector which represents the position of an object in Space#Classical_mechanics in relation to an arbitrary reference Point_....
  • Affine space
    Affine space

    In mathematics, an affine space is a geometric structure that generalizes the affine geometry properties of Euclidean space. It can be thought of informally as a vector space where one has forgotten which point is the origin....
    , which distinguishes between points in space and displacements between them