secondary memory processes exist; wait to execute. In view of phase 1, the priority is high and the other priority is lowest. Just one process will simultaneously fit into the main memory. Explain how CPU is running on it? Can you describe the mechanism among all CPU components?
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Suppose two secondary memory processes exist; wait to execute. In view of phase 1, the priority is high and the other priority is lowest. Just one process will simultaneously fit into the main memory. Explain how CPU is running on it? Can you describe the
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- _____ is a CPU design technique in which instruction execution is divided into multiple stages and different instructions can execute in different stages simultaneously.Consider a computer with N processors in a multiprocessor configuration. a. How many processes can be in each of the Ready, Running, and Blocked states at one time? b. What is the minimum number of processes that can be in each of the Ready, Running, and Blocked states at one time?Assume there are two secondary memory processes running; wait for them to complete. In light of phase 1, the highest priority is given to one task and the lowest priority is given to the other. Only one process will be able to run at the same time in the main memory. Explain how the CPU operates on the system. Can you explain the mechanism that exists between all of the CPU components?
- Assuming two processes are currently running; delaying execution till one of them finishes. You may think step 1 is the most significant and phase 2 is secondary. One operation can be stored in main memory. How does the CPU compute on that? Both choices include the stages involved in a CPU's operation?assuming that there are two processes in secondary memory that are prepared to run. The first process is the most crucial, whilst the second is the least crucial, in terms of the processes. One process can only be active at once in the main memory. Describe how the CPU carries it out. You have the choice to describe the procedure utilizing any part of the CPU.Assume two secondary memory processes exist. In light of phase 1, one priority is higher than the other. Only one process can fit in main memory. How does the CPU work on it? Can you explain the whole CPU mechanism?
- Assuming that two processes are currently running; delaying execution before one of the processes completes. For the most part, you may consider the phase 1 is the most essential and the other is less important. The main memory can store just one action at a time. The CPU explains how it performs calculation on that? The choices of both include the stages involved in the functioning of a CPU?An entire program to be executed by the processor needs to be in physical memory; this is reasonable as well as necessary. An examination shows that in many cases this is not really necessary. Discuss those different cases separately. A partially loaded program in memory executed by processor leads to some benefits. Discuss each one separately.How can we make the most efficient use of the CPU's time while it is juggling a large number of competing tasks? What are the most critical steps in this procedure? Specify how their use will manifest in the target environment.
- a. The earlier machines were using the hardwired mechanism to control the function ofprocesses of the computer. Discuss the components of the Von Neumann Architecturethat moved the functions of the computers from Special purpose machine to universal(General) machine. b. Almost all computer users think during multitasking processes, the CPU is actuallyprocessing all tasks given concurrently. Explain to the ordinary user, with the helpof one memory management technique and interrupts, what really happens during multitasking.When it comes to process execution, what is the advantage of first allocating it to the I/O queue and then pushing it to the CPU when it is ready? What, in your opinion, will happen if the I/O is not completed correctly? Is the CPU burst going to be affected? What do you mean?Suppose that each of the 4 processors in a shared memory multi-processor system is rated at 400 MIPS. A program contains a purely sequential part that accounts for 22% of the program’s execution time on a single processor. The remaining code can be partitioned into three independent parts (A, B, and C). Running on a single processor, part A accounts for 30% of the program’s execution time, part B accounts for 18%, and part C accounts for 30%. What is the apparent MIPS rating for the program if it is run on the 4-processor system and the sequential part must be completed before any of the remaining independent parts (A, B or C) can run in parallel?