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liubo4ka [24]
2 years ago
14

[-85) x (-29) + 85 distributive property someone please solve it

Mathematics
2 answers:
g100num [7]2 years ago
8 0

Answer:

(-85) x (-29) + 85

-85 x -29 = 2465

2465 + 85 = 2550

answer 2550

Step-by-step explanation:

avanturin [10]2 years ago
5 0

(-85)  \times (-29) + 85 \\  \\ 2465 + 85 \\  \\ 2550.

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Answer:

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Step-by-step explanation:

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Answer:

\frac{50}{113}

Step-by-step explanation:

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4 0
3 years ago
In the Salk vaccine field trial, 400,000 children were part of a randomized controlled double-blind experiment. Just about half
EastWind [94]

Answer:

Step-by-step explanation:

From the given information:

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the proportion of polio cases is:

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No of polio cases X₂ = 142

In the placebo group

the proportion of polio cases is:

\hat p_2 = \dfrac{142}{200000}

Null and alternative hypothesis is computed as follows:

H₀: There is no difference in the proportions of polio cases between both groups.  

H₁: There is a difference in the proportions of polio cases between both groups.

Let assume that the level of significance ∝ = 0.05

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Z = \dfrac{\hat p_1-\hat p_2}{\sqrt{\dfrac{\hat p_1 \hat q_1}{n_1}+ \dfrac{\hat p_2 \hat q_2}{n_2}}}

Z = \dfrac{0.000285-0.000710}{\sqrt{\dfrac{0.000285(1-0.000285)}{200000}+ \dfrac{0.000710(1-0.000710)}{200000}}}

Z = \dfrac{-4.25\times 10^{-4}}{\sqrt{\dfrac{0.000285(0.999715)}{200000}+ \dfrac{0.000710(0.99929)}{200000}}}

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P-value =  2P(Z < -6.03)

From the Z - tables

P-value =  2 × 0.0000

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We reject the H₀ provided that P-value is very less.

Therefore, we may conclude that there is a difference in the proportions of polio cases between the vaccine group and placebo group not due to chance.

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2 years ago
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\\ \sf\longmapsto \dfrac{d}{dx}2xe^x

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\\ \sf\longmapsto 2e^x(x+1)

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