What sorts of issues might develop when a computer's storage and processing capabilities are limited to integers only? There is an issue with this situation. What do we do?
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What sorts of issues might develop when a computer's storage and processing capabilities are limited to integers only? There is an issue with this situation. What do we do?
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- When we already have RAM (Random Access Memory), which is a kind of memory that is regarded as volatile, why do we need cache memory?Both cache memory and random access memory (RAM) rely on electrical parts known as transistors. If it's even conceivable, can a computer do all of its operations using only one kind of memory?When we already have RAM (Random Access Memory), which is a kind of memory that is regarded as volatile, why do we need cache memory? Both cache memory and random access memory (RAM) rely on electrical parts known as transistors. If it's even conceivable, can a computer do all of its operations using only one kind of memory?If you have 11 bits available for RAM addresses, how many memory cells can theoretically exist? If you have 8 MiB of memory, then how many bits are needed to represent all memory addresses?
- the ones with red are wrong please do correct me the green one's are correct. topic: memory basicsThere are many parameters that could be used to describe disk performance; among them are: number of bits per track disk capacity (in bits) number of disk surfaces rotational speed rotational latency transfer rate tracks per surface sectors per track blocks per track sectors per block seek time speed of disk arm block-read time number of blocks Some of these parameters are independent, and others are (approximately) linearly related. That is, doubling one doubles the other. Decide which of these parameters are linearly related. Then, select from the list below, the relationship that is true, to within a close approximation. Note: none of the statements may be true exactly, but one will always be much closer to the truth than the other three. Also note: you should assume all dimensions and parameters of the disk are unchanged except for the ones mentioned. a) If you divide tracks into half as many blocks, then you double the read time for a block.…There are many parameters that could be used to describe disk performance; among them are: number of bits per track disk capacity (in bits) number of disk surfaces rotational speed rotational latency transfer rate tracks per surface sectors per track blocks per track sectors per block seek time speed of disk arm block-read time number of blocks Some of these parameters are independent, and others are (approximately) linearly related. That is, doubling one doubles the other. Decide which of these parameters are linearly related. Then, select from the list below, the relationship that is true, to within a close approximation. Note: none of the statements may be true exactly, but one will always be much closer to the truth than the other three. Also note: you should assume all dimensions and parameters of the disk are unchanged except for the ones mentioned. a) If you double the number of sectors per block, then you double the number of blocks on the disk. b)…
- A computer has 64 MB (megabytes) of memory. Each word is 4 bytes. How many bits are needed to address each single word in memory? 2. How many bytes of memory are needed to store a full screen of data if the screen is made of 24 lines with 80 characters in each line? The system uses ASCII code, with each ASCII character stored as a byte.In the table below, to have 8 memory addresses where each memory address holds one byte of data (byte-addressable), we need 3 bits to index every address. (check image) If you have 64 GiB of RAM memory, then how many bits are needed to have memory addresses for every byte-addressable memory location?Addressing Memory Suppose that there are 226 bytes in memory. In binary the lowest address is 00...00, and the highest address is 11...11. a. What is the lowest address (in decimal) if memory is byte addressable? b. What is the highest address (in decimal) if memory is byte addressable? c. Suppose that a word is 16-bits long. What is the lowest address (in decimal) if memory is word addressable? d. Suppose that a word is 16-bits long. What is the highest address (in decimal) if memory is word addressable? e. Suppose that a word is 32-bits long. What is the lowest address (in decimal) if memory is word addressable? f. Suppose that a word is 32-bits long. What is the highest address (in decimal) if memory is word addressable?
- In Feynman's lecture he wondered "why cannot we write the entire 24 volumes of the Encyclopedia Brittanica on the head of a pin". For a modern hard disk drive the area of a single bit of information on the surface of the disk is roughly 10 x 40 nm² in area. In such a hard drive would the area required to store the data for 24 volumes of the Encyclopedia Brittanica be greater or less than the head of a pin? In Feynman's lecture he estimates the 24 million books as big as the Encyclopedia Brittanica has 10¹5 bits of information.Since both RAM and ROM are built using transistors, I don't see the need in having cache memory. Temporary storage may be thought of as temporarily free RAM (random access memory). Can you imagine a computer with just one kind of memory?Can all of our needs really be met by computer memory, given that RAM (Random Access Memory) is a volatile storage medium?