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ludmilkaskok [199]
2 years ago
12

Consider the following code segment:

Computers and Technology
1 answer:
horrorfan [7]2 years ago
6 0

Answer:

13333333333333333333333fv mvfdmv mfv fmv f mf vmf f vfmvnfmvnmnvmfnvmnvmnv3Explanation:

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Suggest how the following requirements might be rewritten in a quantitative way. You may use any metrics you like to express the
kotegsom [21]

Answer:

Did you get the answer yet or not or should i sent it?

Explanation:

3 0
2 years ago
An admission charge for The Little Rep Theater varies according to the age of the person. Develop a solution to print the ticket
Lina20 [59]

Answer:

age = int(input("Enter your age: "))

charge = 0

if age > 55:

   charge = 10

if 21 <= age <= 54:

   charge = 15

if 13 <= age <= 20:

   charge = 10

if 3 <= age <= 12:

   charge = 5

if 0 <= age < 3:

   charge = 0

   

print(charge)

Explanation:

*It is in Python.

Ask the user for the age

Check the each given range and set the charge accordingly using if statements

Print the charge

6 0
2 years ago
int) You are the head of a division of a big Silicon Valley company and have assigned one of your engineers, Jim, the job of dev
sergeinik [125]

Answer:

Correct option is E

Explanation:

a) 2n^2+2^n operations are required for a text with n words

Thus, number of operations for a text with n=10 words is 2\cdot 10^2+2^{10}=1224 operation

Each operation takes one nanosecond, so we need 1224 nanoseconds for Jim's algorithm

b) If n=50, number of operations required is 2\cdot 50^2+2^{50}\approx 1.12589990681\times 10^{15}

To amount of times required is 1.12589990681\times 10^{15} nanoseconds which is

1125899.90685 seconds (we divided by 10^{9}

As 1$day$=24$hours$=24\times 60$minutes$=24\times 60\times 60$seconds$

The time in seconds, our algortihm runs is \frac{1125899.90685}{24\cdot 60\cdot 60}=13.0312 days

Number of days is {\color{Red} 13.0312}

c) In this case, computing order of number of years is more important than number of years itself

We note that n=100 so that 2(100)^2+2^{100}\approx 1.267650600210\times 10^{30} operation (=time in nanosecond)

Which is 1.267650600210\times 10^{21} seconds

So that the time required is 1.4671881947\times 10^{16} days

Each year comprises of 365 days so the number of years it takes is

\frac{1.4671881947\times 10^{16}}{365}=4.0197\times 10^{13} years

That is, 40.197\times 10^{12}=$Slightly more than $40$ trillion years$

4 0
3 years ago
A certain application runs in 30 minutes on a single processor PXY system. A close analysis reveals that 6 minutes of execution
77julia77 [94]

Answer:

minimum number of cores required = 6

Explanation:

Time take by parallelizable code = 24 mins

Reduced time of parallelizable code = 4 mins

Speed gained = 24/4 = 6 times

Therefore minimum number of cores required = 6

4 0
2 years ago
Can some one help me with this?
aliya0001 [1]
Yea sure just give me the question
5 0
2 years ago
Read 2 more answers
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