It is a translation on the Cartesian plane
A translation moves every point on a shape in the same distance and in the same direction on the Cartesian plane
The transformation where a figure is slid from one position to another without being turned is called a translation. In a translation, every point of the figure moves the same distance and in the same direction. This type of transformation preserves the shape and size of the figure, maintaining its orientation throughout the movement.
On the Cartesian plane a translation moves every point on a shape in the same distance and direction
To find the rate of change. Velocity, for example, is the rate of change of distance - in a specified direction. Acceleration is the rate of change of velocity.
On the Cartesian plane a relfection in a line produces a mirror image On the Cartesian plane a translation moves every point on a shape the same distance and in the same direction
translation
A translation.
A translation moves every point on a shape in the same distance and in the same direction on the Cartesian plane
The rule for the transformation above is translation. Translation is a transformation that moves every point of a figure the same distance in the same direction.
A circle.
An isometry that moves or maps every point of the plane the same distance and direction is a translation, which is one of 4 transformations that can be plotted on the Cartesian plane.
the answer is translation, i had to know the answer to that question for a worksheet
A translation will slide a figure either horizontally, vertically, or both, without changing its orientation or shape. The position of every point on the figure is shifted by the same amount and in the same direction.
It's a translation.
Yes.
On the Cartesian plane a translation moves every point on a shape in the same distance and direction
A translation is a type of rigid motion, which means it preserves distances and angles between points. In a translation, every point in a figure moves the same distance and direction. Rigid motions also include rotations and reflections.