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Rzqust [24]
3 years ago
10

What the answer to 3 3/8 + 7 3/4

Mathematics
2 answers:
balu736 [363]3 years ago
8 0

Answer:

11 3/8

Step-by-step explanation:

3 3/8 + 7 3/4

convert the 3/4 to /8 so that they can be added together

3/4 = 6/8

add together

3 3/8 + 7 6/8 = 10 11/8 = 11 3/8

Stells [14]3 years ago
5 0

Answer:

11 1/8 or 89/8

Step-by-step explanation:

start of by changing them into unproper fractions

3 3/8 to 27/8 and 7 3/4 to 31/4

these are the rest of my steps

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I can’t see it good

Step-by-step explanation:

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3 years ago
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When there are few data, we often fall back on personal probability. There had been just 24 space shuttle launches, all successf
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Answer:

  1

Step-by-step explanation:

There are about 110,000 days in 300 years, so the expected number of failures is about 10/11 ≈ 1.

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3 years ago
sarah has already knit 17 centimeters of a scarf, and canknit 1 centimeter each night. How many nights will sarah have to spend
photoshop1234 [79]

Answer:

<u>17 nights.</u>

Step-by-step explanation:

The total length of the scarf that should be knitting = 34 cm

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So, the remaining = 34 - 17 = 17 cm

Sarah can knit 1 centimeter each night.

So, the number of nights will Sarah have to spend knitting = 17/1 = 17 nights.

4 0
3 years ago
Givem the geometric sequence where à1=2 and the common ratio is 4, what is domain for N
Dmitry_Shevchenko [17]

The domain for N is All integers where n ≥ 1

<u>Solution:</u>

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If r is greater than 1 than it includes integers greater than 1 or equal to 1. It does not include all the real numbers because real numbers include negative numbers also.

If starting value is 2, if we put n=0, then we get 2, but if we put a negative value than we would get a number which is not a part of our sequence.

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3 0
4 years ago
Determine the number of ways of placing the numbers $1, 2, 3, \dots, 9$ in a circle, so that the sum of any three numbers in con
solmaris [256]

Answer:

144 ways

Step-by-step explanation:

The arrangements to have the sum of three numbers being divisible by three can be approached by modular arithmetic such that the difference between the third integer and the sum of the first two integers is divisible by 3 making them congruent modulus 3

We have;

With the first number as 1

The second number can be 2, 5 or 8

The third number can then be 3, 6, 9

The fourth number can then be 4 or 7

The sixth number can be 3, 6, 9

The seventh number can be 4 or 7

The eight number can be 2, 5, 8

and the ninth number can be 3, 6, 9

Therefore, we have

the first number as 1

The second, fifth, and eight number can be 2, 5 or 8

The third, sixth and ninth number can then be 3, 6, 9

The fourth, and seventh number can then be 4 or 7 Which gives,

The number of possible arrangements for the numbers 2, 5, and 8 = 3! = 6

The number of possible arrangements for the numbers 3, 6, and 9 = 3! = 6

The number of possible arrangements for the numbers 4, and 7 = 2! = 2

he total number of possible arrangements = 2×6×6 =72

The arrangement can be reversed in the counter clockwise directions given  the total number of ways of placing the numbers 1, 2, 3,..., 9 in a circle, so that the sum of any three numbers in consecutive positions is divisible by 3 = 72 × 2 = 144 ways.

7 0
3 years ago
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