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vovikov84 [41]
4 years ago
10

How many times will 1/5 go into 37?

Mathematics
1 answer:
Anika [276]4 years ago
3 0
37 / 1/5  = 37 * 5 =  171 (answer)
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Convert 52.68 feet per hour to inches per minute using dimensional analysis
e-lub [12.9K]

\frac{52.68 ft}{hr} \cdot \frac{12 in}{1 ft} \cdot \frac{1 hr}{60 min} = 10.536 \frac{in}{min}

3 0
3 years ago
Is 2 greater than or less than 7
Troyanec [42]
2 is less than 7 by 5
5 0
3 years ago
Read 2 more answers
Plzz can u solved it with solution plzz <br>4.2×7-10.4÷2+2.9×3<br>​
Lerok [7]

Answer:

32.9

Step-by-step explanation:

  1. 4.2 × 7 = 29.4
  2. Plug 29.4 in: 29.4 - 10.4 ÷ 2 + 2.9 × 3
  3. 10.4 ÷ 2 = 5.2
  4. Plug 5.2 in: 29.4 - 5.2 + 2.9 × 3
  5. 2.9 × 3 = 8.7
  6. Plug 8.7 in: 29.4 - 5.2 + 8.7
  7. 29.4 - 5.2 + 8.7 = 32.9

I hope this helps!

3 0
3 years ago
Please help FAST! WILL MARK BRAINLIEST!
belka [17]

Answer: C. is the right answer.


Step-by-step explanation:

Given: The cost of a chessboard at Odyssey Gifts is $6.

The function F(x) = 6x gives the cost of x chessboards.

Since x is the number of chessboards, thus the domain of the function should be the set of whole numbers.

Therefore, Domain= {0,1,2,3,4,5,....................}

when we put the values for x from the domain in the function we get values multiples to 6.

therefore range of the function={0,6,12,18,24,30,......}

Hence, C is the right option.


3 0
3 years ago
Roll a pair of dice until it lands doubles.What is the probability you will get the first doubles within three rolls? (Correct t
mr Goodwill [35]

Answer:

Probability of rolling doubles in first three roles = 0.4124

Probability of it taking between 5 to 7 rolls = 0.1988

Step-by-step explanation:

Let's start by the total number of possible outcomes. This is 6 for one dice, and 6 for the other. So in total that's 6 x 6 = 36 different outcomes of the dice roll.

The number of ways we can roll a double is 6.

So the probability of rolling a double would be the number of ways to roll a double divided by the total possible outcomes.

This is : \frac{6}{36} = 0.1667

The probability of NOT rolling a double: 1 - 0.1667 = 0.8333

Since the probability of rolling a double is equal to 1 - probability of not rolling a double, we can answer the first question in the following way.

The probability of NOT rolling a double for the first THREE turns:               0.8333 x 0.8333 x 0.8333 = 0.5786

Probability of rolling a double in first THREE turns: 1 - 0.5786 = <u>0.4124</u>

The probability it will take between 5 to 7 rolls would be:

EQUATION 1: (probability of rolling no doubles in first 4 turns) x (probability of rolling a double in the next three turns)

Since we have already found the probability of rolling a double in three turns to be 0.4124, all we need to find is the probability of NOT rolling a double in the first four turns.

This is: 0.8333 * 0.8333 * 0.8333 * 0.8333 = 0.4822

Plugging this into EQUATION 1 we get: 0.4822 * 0.4124 = <u>0.1988</u>

5 0
3 years ago
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