Consider a four-hour film to be displayed on a computer at 24 fps. Each frame is 420 x 270 pixels and a 24-bit RGB color encoding is being used
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Q: Consider a four-hour film to be displayed on a computer at 24 fps. Each frame is 420 x 270 pixels…
A: Given: Consider a four-hour film to be displayed on a computer at 24 fps. Each frame is 420 x 270…
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- Consider a four-hour film to be displayed on a computer at 24 fps. Each frame is 420 x 270 pixels and a 24-bit RGB color encoding is being used In how many gigabytes the film in (a.) can be represented?Consider a four-hour film to be displayed on a computer at 24 fps. Each frame is 420 x 270 pixels and a 24-bit RGB color encoding is being used How many bytes will be required to represent the whole film?Suppose a RGB raster system is to be designed using an 8 inch by 10 inch screen with a resolution of 100 pixels per inch in each direction. How long would it take to load this raster system in frame buffer with 24 bits per pixel, if 10^5 bits can be transferred per second?
- Assuming that a certain full-colour (24-bit per pixel) RGB raster system has a 512-by-512 frame buffer, how many distinct colour choices (intensity levels) would be available? How many different colours could be displayed at any one time?Suppose the resolution of an image is 1024×768 pixels. If 24 bits are required to encode the color and intensity of each pixel, how many bytes are required to hold the image?Suppose an RGB raster system is to be designed using an 8-inch x 10-inch screen with a resolution of 100 pixels per inch in each direction. If we want to store 12 bits/pixel in the frame buffer, how much storage (in bytes) do we need for the frame buffer?
- Given a 25cm x 20cm display operating in 1024 x 768 x 16 color mode which is refreshed30 times per second, and for which 10% of the refresh cycle is spent in retrace, calculatea. The pixel aspect ratio,b. The size of the frame buffer, andc. The required data transfer rate in kilobytes per second.Computer Science Construct a transmission rate needed to transmit a 4" x 6" photograph (with a resolution of 1200 dots per inch and 24 bits per pixel) in 1 second?Given a 1000 × 1000 picture in true color (24-bit depth), how many bytes will be needed to store this image if we use a color look-up table and assume the image has only 256 different colors?
- a) Elaborate the frame types in video compression. b) Explain the Motion compensation technique in Video compression.Data for a particular graphics display: color and intensity must be encoded at a resolution of 1024 x 768 pixels, with each pixel requiring at total of 8 bits.To store the contents of the screen in memory, how many bytes are required?Data for a particular graphics display: color and intensity must be encoded at a resolution of 1024 x 768 pixels, with each pixel requiring at total of 8 bits. To store the contents of the screen in memory, how many bytes are required?