⦁ You are observing the speeds of two CPUs, to find which one is expected to run faster. After a number of observations, you came up with the following results:   ⦁ Using this data, calculate the expected speed of each processor, and determine which of the two is faster. (Hint: when given a range of speeds, you can consider the average value within that range to be the speed at which the observations occurred). ⦁ You studied a third CPU and found that its speed is a continuous random variable that follows a normal distribution, with a mean value of 3.6 GHz and a standard deviation of 0.8 GHz. Find the probability that the third CPU would run faster than the expected speed of CPU1. ⦁ A company is developing a new CPU, and they sent you a unit so you can test it. This CPU is still in development; therefore, it is not stable and can cause some errors when running. If the probability that this CPU causes an error when doing one operation is 1%, find the probability that the CPU would run a full program, which contains 80 operations without producing any errors.

Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
Publisher:Erwin Kreyszig
Chapter2: Second-order Linear Odes
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⦁ You are observing the speeds of two CPUs, to find which one is expected to run faster. After a number of observations, you came up with the following results:

 

⦁ Using this data, calculate the expected speed of each processor, and determine which of the two is faster. (Hint: when given a range of speeds, you can consider the average value within that range to be the speed at which the observations occurred).
⦁ You studied a third CPU and found that its speed is a continuous random variable that follows a normal distribution, with a mean value of 3.6 GHz and a standard deviation of 0.8 GHz. Find the probability that the third CPU would run faster than the expected speed of CPU1.
⦁ A company is developing a new CPU, and they sent you a unit so you can test it. This CPU is still in development; therefore, it is not stable and can cause some errors when running. If the probability that this CPU causes an error when doing one operation is 1%, find the probability that the CPU would run a full program, which contains 80 operations without producing any errors.

CPU Speed Measurements
38
40
37
35
31
30
26
25
18
20
15
I CPU 1
15
10
10
I CPU 2
10
5
2.0 - 2.4
2.5 - 2.9
3.0 - 3.4
3.5 - 3.9
4.0 - 4.5
Speed (GHz)
Number of Observations
00
Transcribed Image Text:CPU Speed Measurements 38 40 37 35 31 30 26 25 18 20 15 I CPU 1 15 10 10 I CPU 2 10 5 2.0 - 2.4 2.5 - 2.9 3.0 - 3.4 3.5 - 3.9 4.0 - 4.5 Speed (GHz) Number of Observations 00
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