What is the difference between windows and Linux with regard to address space and processor support.
Address Space:
Linux: In Linux, a process's address space consists of all linear addresses allowed to be used by the process. Each process sees a different set of linear addresses; there is no relation between the address used by one process and the address used by another.
Windows: Windows support the virtual address space whereas Linux supports user address space. The user-mode process's computer address space is named device space. The total available computer address space in 32-bit Windows is 2 ^ 32 bytes (4 gigabytes). The lower 2 gigabytes are typically used for device bandwidth, and the higher 2 gigabytes are used for the room on the network.
Processor Support:
Linux: AMD 5x86, K5, K6, Athlon (all 32-bit versions), Duron, Sempron. x86-64: 64-bit processor architecture, now officially known as AMD64 (AMD) or Intel64 (Intel).
Windows:
seventh-gen Intel chip or an AMD Zen CPU only supported in Windows, Windows 10.
What is the difference between windows and Linux with regard to address space and processor support.
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1. the commands you used to create the directories and files in Linux and Windows; 2. the commands you used to determine default permissions in Linux and Windows; 3. the commands you used to change permissions on your files in Linux and Windows; 4. a paragraph about how directories and file permissions work and what was the same or different between Windows and Linux.
Problem #1 (25 points) Address Space, Memory Consider a hypothetical 18-bit processor called HYP18 with all registers, including PC and SP, being 18 bits long. The smallest addressable unit in memory is an 8-bit byte. A. (4 points) What is the size of HYP18's address space in bytes and KB? How many address lines does HYP18 require? Address space: Bytes Address space: KB (KiloBytes). Address bus lines: B. (6 points) Assume that first quarter of the address space is dedicated...
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COLLEGE STATISTICS What is the difference between sample space and event space?
The figure below shows an address decoder used to select between
four memory mapped components connected to a microprocessor with a
24-bit address bus.
What is the size of the processor address space? (Justify your
answer.)
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I need help answering this from a developer point of view
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