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A larger horizontal resolution directly increases the horizontal field of view, and a larger vertical resolution increases the vertical field of view. [11] Vert-(vertical minus) is a scaling method used by some games that support a wide variety of resolutions. In Vert- games, as the aspect ratio widens, the vertical component of the field of ...
A vertically scrolling video game or vertical scroller is a video game in which the player views the field of play principally from a top-down perspective, while the background scrolls from the top of the screen to the bottom (or, less often, from the bottom to the top) to create the illusion that the player character is moving in the game world.
In the mid-1980s, side-scrolling character action games (also called "side-scrolling action games" or side-scrolling "character-driven" games) emerged, combining elements from earlier side-view, single-screen character action games, such as single-screen platform games, with the side-scrolling of space/vehicle games, such as scrolling space shoot 'em ups.
The horizontal to vertical ratio of each pixel. Storage aspect ratio (SAR) The horizontal to vertical ratio of solely the number of pixels in each direction. [note 1] Display aspect ratio (DAR) The combination (which occurs by multiplication) of both the pixel aspect ratio and storage aspect ratio giving the aspect ratio as experienced by the ...
Although not an official name, this term is now used to refer to 1152×864, which is the largest 4:3 array yielding less than a binary megapixel (2^20, 1048576 pixels, 1048 decimal kilopixels), thus allowing the greatest "normal" resolution at common colour depths with a standard amount of video memory (128 kB, 512 kB, 1 MB, 2 MB, etc.).
Video games, which use a wide variety of rendering engines, tend to benefit visually from vertical synchronization since a rendering engine is normally expected to build each frame in real-time, based on whatever the engine's variables specify at the moment a frame is requested.
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Thus, GPUs can process far more pictures and graphical data per second than a traditional CPU. Migrating data into graphical form and then using the GPU to scan and analyze it can create a large speedup. GPGPU pipelines were developed at the beginning of the 21st century for graphics processing (e.g. for better shaders).