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solong [7]
3 years ago
14

two groups of students were asked how far they lived from their school. The table below shows the distances in miles: Group A (d

istance in miles) 1 1.5 3 3.2 2.8 1.5 1.8 2.5 2.2 Group B (distance in miles) 2 2.5 3.2 3 1.8 2.4 3 1.5 1.8 Which statement best compares the mean distances for the two groups?
Mathematics
1 answer:
nadezda [96]3 years ago
4 0

Answer:

It is greater Group B than Group A

Step-by-step explanation:

Group A's mean is 2.17 while Group B's mean is 2.36

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Amy and Beth share some money in the ratio 3:5.
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what kind of weather would you associate with a low pressure system? How does the density, humidity and air motion compare to th
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Answer:

1. Low-pressure systems are associated with clouds and precipitation that minimize temperature changes throughout the day, whereas high-pressure systems normally associate with dry weather and mostly clear skies with larger diurnal temperature changes due to greater radiation at night and greater sunshine during the day.

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8 0
3 years ago
At a​ little-known vacation​ spot, taxi fares are a bargain. A ​63-mile taxi ride takes 72 minutes and costs ​$50.40. You want t
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5 0
3 years ago
The proportions of blood types O, A, B, and AB in the general population of a particular country are known to be in the ratio 49
Morgarella [4.7K]

Answer:

The proportions differ significantly from those in the general population.

Step-by-step explanation:

We state our null and alternative hypotheses as

H0: p1= 49/100, p2= 38/100, p3= 9/100 and p4= 4/100 for a multinomial distribution involving four categories and n= 170

against

Ha: pi≠ pi0 for at least one value of i= 1,2,3,4

The significance level is set at ∝= 0.05

The test statistic under H0 is

χ² = ∑ (Oi- ei)²/ei

which has approximate chi square distribution with 3d.f  (n-1)

Computations: Under H0 the expected frequencies are

np10= Blood type O = 170 * 49/100= 83.3

np20 = Blood type A = 170 * 38/100= 64.6

np30 = Blood type B = 170 * 20/100= 11.76

np40 = Blood type AB = 170 * 4/100= 2.35

The value of χ² is computed as follows

Cell       Observed         Estimated        (Oi-ei)            (Oi-ei)²   (Oi-ei)²/ei

             Frequency      Frequency  

               Oi                    ei

1             87                        83.3               3.7               13.69        0.157

2            59                      64.6              -5.6                 31.36       0.531

3             20                     34                  -14                   196           9.8

<u>4               4                      6.8                -2.8                  7.84         1.96       </u>

<u>∑             170                    188.7                                                  χ²= 12.43  </u>

<u />

The critical region is <u>χ</u>²≥ χ²(0.05,3) = 7.82 for alpha = 0.05 and

<u>χ</u>²≥ χ²(0.01,3) = 11.34  for alpha = 0.01

As the calculated value lies in the critical region for both value of alpha we reject our null hypothesis and accept our alternate hypothesis. The proportions differ significantly from those in the general population.

6 0
3 years ago
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