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WITCHER [35]
2 years ago
11

Help my sister please she needs help I don’t know because I forgot

Mathematics
2 answers:
aleksandr82 [10.1K]2 years ago
8 0

Answer:

15 shrimp

Step-by-step explanation:

5 shrimp * 3 = 15shrimp

lidiya [134]2 years ago
6 0

Answer:

15 shrimps

Step-by-step explanation:

<em>We already know that a small shrimp taco has </em><u><em>5 shrimps.</em></u>

⇒ \text{1st equation: small shrimp taco = 5 shrimps}

<em>We also know that a large taco has </em><em>3 times more</em><em> shrimps than a small taco.</em>

⇒ \text{2nd equation: shrimps in a large taco = 3(Shrimps in a small taco)}

<u>Finding the number of shrimps in a large taco:</u>

<em>Now, simply substitute the number of shrimps in a small shrimp taco in the second equation to find the </em><em>number of shrimps in a large taco.</em>

  • ⇒ \text{Shrimps in a large taco = 3(5) shrimps}
  • ⇒ \boxed{\bold{\text{Shrimps in a large taco = 15 shrimps}}}
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Represent the geometric series using the explicit formula.
user100 [1]

Answer:  f(n)=12(-3)^{(n-1)}

Step-by-step explanation:

The Explicit formula in function notation for a geometric series is:

f(n)=f(1)r^{(n-1)}

Where f(n) is the nth term of the sequence, f(1) is the first term in the sequence and r is the common ratio.

Given the following geometric serie:

12, -36, 108, -324...

The common ratio is:

r=\frac{-36}{12}=-3

And the first term is:

f(1)=12

Therefore, substituting values, we get that the Explicit formula that represents this geometric series is:

f(n)=12(-3)^{(n-1)}

3 0
4 years ago
The data below are the temperatures on randomly chosen days during the summer and the number of employee absences at a local com
s2008m [1.1K]

Answer:

The critical region is t ≥ t(0.025, 7) = 2.365

Since the calculated value of t= 18.50249 falls in the critical region we reject the null hypothesis and conclude that there is sufficient reason to support the claim of a linear relationship between the two variables.

Step-by-step explanation:

We set up our hypotheses as

H0: β= 0   the two variable X and Y are not related

Ha: β  ≠ 0. the two variables X and Y are related.

The significance level is set at α =0.05

The test statistic if, H0 is true, is  t= b/s_b

Where   Sb =S_yx/√(∑(X-X`)^2 )

Syx = √((∑(Y-Y`)^2 )/(n-2))

In the given question we have the estimated regression line as y= 0.449x - 30.27

X Y X2         Y2      XY

72 3 5184 9    216

85 7 7225 49    595

91 10 8281 100      910

90 10 8100 100      900

88 8 7744 64       704

98 15 9604 225      1470

75 4 5625 16       300

100 15 10000 225       1500

<u>80 5 6400 25        400         </u>

<u>∑779 77 68163 813 6995</u>

Now finding the variances

∑(Y-Y`)^2  = ∑〖Y^2- a〗 ∑Y- b∑XY

                      = 813 – (- 30.27)77 - 0.449(6995)

                       = 813+2330.79 – 3140.755

                       = 3.035

∑(X-X`)^2 =  ∑X^2  – (∑〖X)〗^2 /n

                   = 68163 – (779)2/9

                    = 736.22

Syx = √((∑(Y-Y`)^2 )/(n-2))  = √(3.035/7) = 0.65846 and

Sb =S_yx/√(∑(X-X`)^2 ) = (0.65846  )/27.13337 = 0.024267

t= b/s_b  = 0.449/ 0.024267 = 18.50249

The critical region is t ≥ t(0.025, 7) = 2.365

Since the calculated value of t= 18.50249 falls in the critical region we reject the null hypothesis and conclude that there is sufficient reason to support the claim of a linear relationship between the two variables.

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