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
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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
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- How does pipelining improve CPU efficiency? What’s the potential effect on pipelining’s efficiency when executing a conditional BRANCH instruction? What techniques can be used to make pipelining more efficient when executing conditional BRANCH instructions?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?Postponing execution until one of the two processes finishes. Phase 1 is perhaps more essential than phase 2. The main memory can only store one action. How does the CPU compute anything like that? Both solutions have CPU stages, but which is better?
- Read the description of the memory configuration and analyze the given diagram. Then, answer the following questions. If you are to add a new 10MB process in the memory, where could it possibly be added and why? What could be the size of the free block just before it was partitioned by X? Rationalize answer.When a CPU interrupt occurs, the processor comes to a halt and responds to the signal. Why should the process be halted so that this duty may be completed? Let's start with the pausing procedure and then go on to the carrying out process. explain?Because of this, the CPU suspends any currently executing processes until the interrupt has been resolved. Interrupt service is the term used to describe this. What is the rationale for halting the procedure that is presently in progress? Isn't it possible, as an alternative, to just finish the presently operating operation and deal with the interruption afterward?