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Shkiper50 [21]
3 years ago
6

Giving brainly to correct answer

Mathematics
2 answers:
HACTEHA [7]3 years ago
7 0
I think it’s the last one
katovenus [111]3 years ago
4 0

I think the last one is the right one

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find the internal representation of 531, if the computer uses a 32 bit memory location to store each number
Fudgin [204]

The internal representation of 531 using a 32 bit memory location to store each number is; 00000000000000000000001100100001

<h3>Representation of numbers in the computer</h3>

When representing numbers, they are divided by 2 as follows;

  • 531/2 = 265 remainder 1

  • 265/2 = 132 remainder 1

  • 132/2 = 66 remaining 0

  • 66/2 = 33 remainder 0

  • 33/2 = 16 remainder 1

  • 16/2 = 8 remainder 0

  • 8/2 = 4 remainder 0

  • 4/2 = 2 remainder 0

  • 2/2 = 1 remainder 0

  • 1/2 = 0 remainder 1

Hence, the representation of 531 in a computer using a 32 bit memory is;

  • 00000000000000000000001100100001.

Read more on number representation in a computer;

brainly.com/question/19667078

5 0
2 years ago
Loyaltytiana23<br> 5:17 PM<br> what number is in the hundredths place 123.456
Kipish [7]
The number 5, behing the decimal
6 0
3 years ago
7r + 2 - 3r = -2 plsss
KonstantinChe [14]

Answer:

Combine like terms

4r+2=-2

Subtract 2 from both sides

4r=-4

Divide 4 by from both sides

r=-1

8 0
3 years ago
Find a number such that 17 less than twice a number is 109.
Mashcka [7]

Answer:

-15

Step-by-step explanation:

2x-17=-47

2x=-47+17

2x=-30

x=-30/2

x=-15

3 0
3 years ago
I need help to solve this and also Hearn will the bacteria be over 100,000
lapo4ka [179]

Hello! Let's look at the two parts of this question.

Complete the table:

In this case, you just substitute the value of "hour" into the equation, for the value of t. For example:

P(0) = 120 (2)^{0}

P(0) = 120 (1)

P(0) = 120

Therefore, the number of bacteria for hour 0 is 120.

You can do this for the next ones. Hour 1 = 240, hour 2 = 480, and so on. (In this case, you can keep multiplying by 2)

Estimate when there will be more than 100,000 bacteria:

Set the final value of P(t) = 100,000, then solve.

100,000 = 120 (2)^{t}

833.33 = (2)^{t}

t = log_{2}833.33

t = 9.702744108

So your answer would be around 9.7 years, or, around 10 years.

Hope this helps!

3 0
3 years ago
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