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Lerok [7]
2 years ago
15

How can someone stay safe at home?

Health
2 answers:
Brrunno [24]2 years ago
7 0

Answer:

C

Explanation:

B would also be the answer, but C is smarter. B is also common sense of course.

Nitella [24]2 years ago
3 0

Answer:

B- locking the door behind you

Explanation:

When you make it a point to lock up your home, you reduce the risk of falling victim to a home invasion. Most people are conscious about locking their doors when leaving for an extended period; however, what many don’t realize is that it’s just as important to lock doors when you are home or when you step out for a short time.

There have been many instances when people walk into the wrong apartment door or enter the wrong building. I have even done it myself. In those situations, although usually corrected quickly, someone’s personal space is being invaded.  

If you’ve ever said you’re just “stepping out” for a minute and leaving the house, consider the amount of time you’re away. In some instances, when the door is unlocked, these short periods are more extended than you think. This could include getting the mail, walking the dog, or stopping by a neighbor’s house to talk. It’s crucial to practice safe habits because it only takes a few minutes for an experienced burglar to go through your things. Locking your doors should always be a priority if you want to ensure you and your belongings are safe.

Why should I lock my doors?

The harder you make it for a burglar to enter, the less likely a break-in will occur. When you decide to keep your home locked up at all times, you are making a strong effort to protect your family, self, valuables, and privacy. No one should have to experience the feeling of a stranger rummaging through their things, especially when a home is where you should feel the safest. There are many circumstances where you can fall victim to a home invasion that could have been prevented by simply locking up.

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4 years ago
In Exercise 33, you used a confidence interval to examine the effectiveness of a vaccine against ear infections in babies. Suppo
yulyashka [42]

Answer:

Part a: The two hypotheses are H_o: p_1=p_2 and H_1: p_1 < p_2.

Part b: The Null hypothesis is rejected and Vaccines appear effective

Part c: As in this case the null hypothesis is rejected in the part b, thus the only possibility of error is type I error.

Part d:Children will get a vaccine which is not effective.

Explanation:

Part a:

The two hypothesis will be tested as indicated as  null hypothesis and alternative hypothesis

The null Hypothesis is given as that the population proportion for both the groups is same such that

H_o: p_1=p_2

The alternative hypothesis is the percentage of people who have got vaccination is less than those who have not got the vaccination such that

H_1: p_1 < p_2

So the two hypotheses are H_o: p_1=p_2 and H_1: p_1 < p_2.

Part b:

The confidence interval in the exercise 33 is calculated as (-0.008,-0.0470) as it does not contain the value of zero thus the difference is present which indicates that the two proportions are not same

Thus the Null hypothesis is rejected and Vaccines appear effective.

Part c:

There are two types of errors as

Type I where the null hypothesis H_o is wrongly rejected and it is true.

Type II where the null hypothesis H_o is not rejected and it is false.

As in this case the null hypothesis is rejected in the part b, thus the only possibility of error is type I error.

Part d:

If the conclusion is wrong this indicates that the null hypothesis was true. i.e. There is no difference in population percentage of children with or without vaccination. This means that children will get a vaccine which is not effective.

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