Consider two raster systems with the resolutions of 640 x 480 and 1280 x 1024. a) How many pixels could be accessed per second in each of these systems by a display controller that refreshes the screen at a rate of 60 frames per second?
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Consider two raster systems with the resolutions of 640 x 480 and 1280 x 1024.
a) How many pixels could be accessed per second in each of these systems by a display controller that refreshes the screen at a rate of 60 frames per second?
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- Consider two raster system with the resolution 640 * 480 and 1280 * 1024. How many pixels could be accessed per second in each of these systems by a display controller that refreshes the screen at a rate of 120 frames per second? What is the access time per pixel in each system?Consider a raster system with resolution of 640*480. What size frame buffer is needed to store 12 bits per pixel? How much storage is required if 24 bits per pixel are to be used?Consider a raster display system with resolution of 800 by 400. How many pixels could be accessed per second by a display controller that refreshes the screen at the rate of 60 frames per second?
- Explain how Bresenham’s Algorithm takes advantage of the connectivity of pixels in drawing straight lines on raster output. Use suitable examples. Consider two raster system with the resolution 640 * 480 and 1280 * 1024. How many pixels could be accessed per second in each of these systems by a display controller that refreshes the screen at a rate of 60 frames per second? What is the access time per pixel in each system? Consider a raster system with the resolution 1024 * 768 pixels and the color palette calls for 65,536 colors. What is the minimum amount of video RAM that the computer must have to support the above-mentioned resolution and number of colors? An object is in location (1,3), (1,6), (3,3) and (3,6). Do two repeated translation operations on the object with the scaling factors, (2,1) and (4,3). Write the new positions. An object is in location (0,0), (1,0), (0,1) and (1,1). Write the new positions after shearing the object about x-direction. Take shear parameter along…Assume a color display using 16 bits for each of the primary colors (red, green, blue) per pixel and a frame size of 1920 x 1080. a) What is the minimum size in bytes of the frame buffer to store a frame (1 byte = 8 bits)? b) How long would it take, at a minimum, for the frame to be sent over a 100Mbps network?Suppose a color monitor has a 1600x900 frame size and uses 8 bits for each of the three primary colors per pixel. What is the minimum size in bits of the frame buffer to store a frame?
- Suppose a color monitor has a 1920x1080 frame size and uses 8 bits for each of the three primary colors per pixel. What is the minimum size in bytes of the frame buffer to store a frame?Question 2: A system with 32768 possible colors is used to transmit 612 × 459 pixel image.1. What is the color depth of this system?2. How much storage is required for one image?3. What is the system bit rate if one image takes 1.3169 sec for transmission?Consider a 32-bit machine where four-level paging scheme is used. If the hit ratio to TLB is 98%, and it takes 20 nanosecond to search the TLB and 100 nanoseconds to access the main memory what is effective memory access time in nanoseconds?
- In light of advancements in optical computing, how might future ALU designs be influenced?Which among the MIMD architectures is a better solution to a Video Rendering of a very large video production such as the Avatar?Consider an I/O bus that can transfer 6 bytes of data in one bus cycle.Suppose that a designer is considering to attach the following two components to this bus. Hard drive with a transfer rate of 100 M bytes/sec Video card with a transfer rate of 128 M bytes/sec What will be the implications?(The maximum frequency of the bus is 30 MHz)