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  2. Axonometric projection - Wikipedia

    en.wikipedia.org/wiki/Axonometric_projection

    In isometric projection, the most commonly used form of axonometric projection in engineering drawing, [4] the direction of viewing is such that the three axes of space appear equally foreshortened, and there is a common angle of 120° between them. As the distortion caused by foreshortening is uniform, the proportionality between lengths is ...

  3. Axonometry - Wikipedia

    en.wikipedia.org/wiki/Axonometry

    If the three foreshortenings are equal, the projection is called isometric. If all foreshortenings are different, the projection is called trimetric . The parameters in the diagram at right (e.g. of the house drawn on graph paper) are: α = 135 ∘ , β = 90 ∘ , v y = v z = 1 , v x = 1 / 2 . {\displaystyle \alpha =135^{\circ },\beta =90 ...

  4. 3D projection - Wikipedia

    en.wikipedia.org/wiki/3D_projection

    On the flat drawing, two axes, x and z on the figure, are perpendicular and the length on these axes are drawn with a 1:1 scale; it is thus similar to the dimetric projections, although it is not an axonometric projection, as the third axis, here y, is drawn in diagonal, making an arbitrary angle with the x″ axis, usually 30 or 45°. The ...

  5. Isometric projection - Wikipedia

    en.wikipedia.org/wiki/Isometric_projection

    Despite the name, isometric computer graphics are not necessarily truly isometric—i.e., the x, y, and z axes are not necessarily oriented 120° to each other. Instead, a variety of angles are used, with dimetric projection and a 2:1 pixel ratio being the most common.

  6. Technical illustration - Wikipedia

    en.wikipedia.org/wiki/Technical_illustration

    Parallel projections (oblique, planometric, isometric, dimetric, and trimetric), and; many types of perspective projections (with one, two, or three vanishing points). Technical illustration and computer-aided design can also use 3D and solid-body projections, such as rapid prototyping.

  7. Orthographic projection - Wikipedia

    en.wikipedia.org/wiki/Orthographic_projection

    Orthographic projection (also orthogonal projection and analemma) [a] is a means of representing three-dimensional objects in two dimensions.Orthographic projection is a form of parallel projection in which all the projection lines are orthogonal to the projection plane, [2] resulting in every plane of the scene appearing in affine transformation on the viewing surface.

  8. Isometric video game graphics - Wikipedia

    en.wikipedia.org/wiki/Isometric_video_game_graphics

    One of the most common problems with programming games that use isometric (or more likely dimetric) projections is the ability to map between events that happen on the 2d plane of the screen and the actual location in the isometric space, called world space. A common example is picking the tile that lies right under the cursor when a user clicks.

  9. Parallel projection - Wikipedia

    en.wikipedia.org/wiki/Parallel_projection

    The primary views include plans, elevations and sections; and the isometric, dimetric and trimetric projections could be considered auxiliary views. A typical (but non-obligatory) characteristic of multiview orthographic projections is that one axis of space usually is displayed as vertical.