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shepuryov [24]
3 years ago
15

Can you guys help me match the transformations with there deception.

Mathematics
1 answer:
pishuonlain [190]3 years ago
6 0

Answer:

1,3 2,2 3,4 4,1

Step-by-step explanation:

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A sample of 11001100 computer chips revealed that 62b% of the chips fail in the first 10001000 hours of their use. The company's
STALIN [3.7K]

Answer:

Rule

If;

P-value > significance level --- accept Null hypothesis

P-value < significance level --- reject Null hypothesis

Z score > Z(at 90% confidence interval) ---- reject Null hypothesis

Z score < Z(at 90% confidence interval) ------ accept Null hypothesis

Null hypothesis: H0 = 0.60

Alternative hypothesis: Ha <> 0.62

z score = 1.35

P value = P(Z<-1.35) + P(Z>1.35) = 0.0885 + 0.0885= 0.177

Since z at 0.10 significance level is between -1.645 and +1.645 and the z score for the test (z = 1.35) falls with the region bounded by Z at 0.1 significance level. And also the two-tailed hypothesis P-value is 0.177 which is greater than 0.1. Then we can conclude that we don't have enough evidence to FAIL or reject the null hypothesis, and we can say that at 0.10 significance level the null hypothesis is valid.

Question; A sample of 1100 computer chips revealed that 62% of the chips fail in the first 1000 hours of their use. The company's promotional literature states that 60% of the chips fail in the first 1000 hours of their use. The quality control manager wants to test the claim that the actual percentage that fail is different from the stated percentage. Determine the decision rule for rejecting the null hypothesis, H0, at the 0.10 level.

Step-by-step explanation:

Given;

n=1100 represent the random sample taken

Null hypothesis: H0 = 0.60

Alternative hypothesis: Ha <> 0.62

Test statistic z score can be calculated with the formula below;

z = (p^−po)/√{po(1−po)/n}

Where,

z= Test statistics

n = Sample size = 1100

po = Null hypothesized value = 0.60

p^ = Observed proportion = 0.62

Substituting the values we have

z = (0.62-0.60)/√{0.60(1-0.60)/1100}

z = 1.354

z = 1.35

To determine the p value (test statistic) at 0.01 significance level, using a two tailed hypothesis.

P value = P(Z<-1.35) + P(Z>1.35) = 0.0885 + 0.0885= 0.177

Since z at 0.10 significance level is between -1.645 and +1.645 and the z score for the test (z = 1.35) falls with the region bounded by Z at 0.1 significance level. And also the two-tailed hypothesis P-value is 0.177 which is greater than 0.1. Then we can conclude that we don't have enough evidence to FAIL or reject the null hypothesis, and we can say that at 0.10 significance level the null hypothesis is valid.

3 0
3 years ago
Convert to slope form: 3x-4y=8 then graph the line on the grid.​
alexandr402 [8]

Answer: 3/4

Step-by-step explanation:

Graph the line using the slope and y-intercept, or two points.

Slope: 3/4

HOPE THIS HELPS :)

6 0
3 years ago
Help fast please :) :) :) :) :)
zavuch27 [327]
Yeah I’m also not %100 but I agree with the first person, #3
7 0
2 years ago
If a set of data is in the direction of a downward line, which of the following would be the best model for this data?
Ahat [919]
I'm not too sure about this, but I feel that it's a linear regression. A quadratic one eventually reverses direction, and an exponential one levels off and stops decreasing.
5 0
3 years ago
Mr. Johnson needs to buy seed for his backyard lawn.
Romashka [77]

Answer:

a.  He will need 2,075.7\ ft^2 of seed to cover the entire area.

b.  He will need 5 bags of seed if he uses the highest setting and 7 bags of seed if he uses the lowest setting.

Step-by-step explanation:

a. You can calculate the area of his lawn by multiplying its dimensions.

The dimensions are:

40\frac{4}{5}\ ft by 50\frac{7}{8}\ ft

We can convert the mixed numbers to decimal numbers. To do this,we must divide the numerator by the denominator of the fraction and then we must add the quotient to the whole number part.

Then, these are:

(40+0.8)\ ft=40.8\ ft

(50+0.875)\ ft=50.875\ ft

Then:

Area=40.8\ ft*50.875\ ft\\\\Area=2,075.7\ ft^2

He will need 2,075.7\ ft^2 of seed to cover the entire area.

b. Let be "h" the number of bags of seed that he will need if he uses the highest setting.

You know that one bag of seed will cover 500 square feet if he uses the highest setting. Then:

h=\frac{2,075.7\ ft^2}{500\ ft^2}\\\\h=4.15\\\\h\approx5

Let be "l" the number of bags of seed that he will need if he uses the lowest setting.

You know that one bag of seed will cover 300 square feet if he uses the lowest setting. Then:

l=\frac{2,075.7\ ft^2}{300\ ft^2}\\\\l=6.9\\\\l\approx7

5 0
3 years ago
Read 2 more answers
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