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Troyanec [42]
3 years ago
5

A shoe keeper has 6 sodas that come in 4 different cups sizes. How many different drinks can you order?

Mathematics
1 answer:
vladimir1956 [14]3 years ago
4 0

Answer: If he has 6 sodas and 4 different cup sizes, let us say Extra Large, Large, Medium and Small, he would have: COLA- 4 choices; ROOT BEER- 4 choices; ORANGE 4 choices; BLACK CHERRY- 4 choices; GIGERALE- 4 choices; CREAMSODA- 4 choices, or 6 x 4= 24 different choices

Step-by-step explanation:

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15 points!!!!!!!:
docker41 [41]
Gizmo can eat 10/3  * 2 =  6 2/3 bowls in 10 minutes
Leo can eat 10/6  * 1  = 1 2/3 bowls in 10 minutes

Together they can eat  8 1/3 bowls in 10 minutes.
3 0
3 years ago
Read 2 more answers
Write your answer as an integer or as a decimal rounded to the nearest hundredth.
irina [24]

Answer:

<h3><X = 63</h3>

Step-by-step explanation:

USing SOH CAH TOA

sin theta = opposite/hypotenuse

sin <X = WV/VX

sin <X = 8/9

<X = arcsin(8/9)

<X = arcsin(0.8889)

<X = 62.7 degrees

Hence the value of x is approximately 63degrees

7 0
2 years ago
If a person is 5 1/2 tall and cast a 3 1/2 shadow And there is a flag poll that is 28 feet tall what is the height of the shadow
Serjik [45]

Answer: 17 9/11

Step-by-step explanation:  5.5/3.5 = 28/x

3.5 * 28 = 98 / 5.5 = 17 9/11

8 0
3 years ago
Please show me step by step how to do this
Stels [109]

Answer:

The next three terms of the sequence are 17, 21 and 25.

The 300th term of the sequence is 1197.

Step-by-step explanation:

The statement describes an arithmetic progression, which is defined by following formula:

p(n) = p_{1}+r\cdot (n-1) (1)

Where:

p_{1} - First element of the sequence.

r - Progression rate.

n - Index of the n-th element of the sequence.

p(n) - n-th element of the series.

If we know that p_{1} = 1, n = 2 and p(n) = 5, then the progression rate is:

r = \frac{p(n)-p_{1}}{n-1}

r = 4

The set of elements of the series are described by p(n) = 1 + 4\cdot (n-1).

Lastly, if we know that n = 300, then the 300th term of the sequence is:

p(n) = 1 + 4\cdot (n-1)

p(n) = 1197

And the next three terms of the sequence are:

n = 5

p(n) = 1 + 4\cdot (n-1)

p(n) = 17

n = 6

p(n) = 1 + 4\cdot (n-1)

p(n) = 21

n = 7

p(n) = 1 + 4\cdot (n-1)

p(n) = 25

The next three terms of the sequence are 17, 21 and 25.

The 300th term of the sequence is 1197.

8 0
3 years ago
Help anyone know the answer?!
Vlada [557]

Answer:

first one

Step-by-step explanation:

3 0
3 years ago
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