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A computer performance depends on many components. Let s say there are only these 4 components for this question: CPU, memory system, I / O
A computer performance depends on many components. Lets say there are only these components for this question: CPU, memory system, IO system and the rest of the system.
Lets use the variables C M IO and R for these components to represent the performance of these components. Note performance is the inverse of time
Lets assume the average time processes spend in each component is C for M for IO and for R
Construct an equation to represent the performance of the overall system using CM IO and R Note a higher number means higher performance
Assuming you can only improve the CPU performance, what is the maximum speedup you can achieve according to Amdahls Law?
An upgrade of each component to improve computer performance is possible. Lets say:
it costs $k $k $k to make C M and IO faster
it costs another kkk to make them another faster again.
How much does it cost to make C at least x as fast?
How much does it cost to make M at least X as fast?
How much does it cost to make IO at least X as fast?
If you want to increase the total computer performance by is it possible if you can only improve:
the CPU andor the memory
What is the least amount of money you can spend if you want to increase the computer performance by assuming that you can improve one or all the components in the computer?
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