How would you classify an injury sustained from driving an ATV and not wearing a helmet?A. Intentional-Preventable
B. Intentional-Unpreventable
C. Unintentional-Preventable
D. Unintentional-Unpreventable

Answers

Answer 1
Answer:

The correct answer is C. Unintentional-Preventable

Explanation:

An injury includes cuts, wounds or any other physical trauma or damage that is usually caused by accidents although in some cases it can be caused on purpose. In this way, injuries can be classified as unintentional or intentional depending on whether they were the result of accidents or not and as preventable or unpreventable if it could be prevented or avoided in some way.

According to this, an injuring sustained from driving an ATV (all-terrain vehicle) and not wearing a helmet is both unintentional and preventable, because it is quite likely it occurs due to an accident and not on purpose (unintentional), but also injuries can be prevented using the correct equipment including a helmet, and following parameters while driving (preventable).


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Ten (10) milliliters of 10% calcium gluconate injection and 10 mL of multivitamin infusion are mixed with 500 mL of a 5% dextrose injection. The infusion is to be administered over 5 hours. If the dropper in the vencolysis set calibrates 15 drops/mL, at what rate, in drops per minute, should the flow be adjusted to administer the infusion over the desired time interval?

Answers

Answer:

26 drops per minute

Explanation:

First, I added up the total volume: 10 ml plus 10 ml plus 500 ml. I get a total of 520 ml that should be administered  in five hours.

Since they ask for minutes, I change those fiver hours to minutes by multiplying them by 60, which gives me a total of 300 minutes.

Since there are 15 drops per ml, I now multiply that number by the total volume (520), giving me a total of 7800 drops.

Now, I just have to divide 7800 and 300. This gives me the number of drops I need per minute: 26

Final answer:

To administer the infusion over 5 hours, the flow should be adjusted to 25 drops per minute.

Explanation:

To determine the rate in drops per minute needed to administer the infusion over 5 hours, we first need to calculate the total number of drops in the infusion. We know that the vencolysis set calibrates 15 drops/mL, so we can find the number of drops in the entire infusion by multiplying the total volume (500 mL) by the number of drops per mL (15 drops/mL). This gives us 7,500 drops. Since the infusion is to be administered over 5 hours, we can convert this time to minutes by multiplying it by 60 (5 hours x 60 minutes/hour = 300 minutes).

To find the rate in drops per minute, we divide the total number of drops (7,500 drops) by the total time in minutes (300 minutes). The result is 25 drops per minute. Therefore, the flow should be adjusted to 25 drops per minute to administer the infusion over the desired time interval.

Learn more about Calculating infusion rate here:

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Saturated fats found in animal products, such as bacon and cheese, are also called

Answers

Saturated fats found in animal products, such as bacon and cheese, are also called Cholestetrol.

They are also called Cholesterol 

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Answers

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I hope this helps

after exercise is the answer

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Answers

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a. True
b. False

Answers

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Answers

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