Answer:
c ) A convicted sex offender
Explanation:
Answer:
Emulsification is a process where two liquids that do not mix are mixed, in digestion, it is the breaking down of fat globules in the duodenum into tiny droplets
Explanation:
The substance which performs emulsification is called bile
Bile is synthesized in the liver
Bile is stored and concentrated in the gallbladder
Once bile has been synthesized, it moves out of the liver through the hepatic ducts, the ducts (left and right) join to form the common hepatic duct which joins the duct from the gallbladder called the cystic duct. This bile duct enters the small intestine through a sphinter (Oddi) below the stomach.
Answer:
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Afferent division
Somatic nervous system
Sympathetic nervous system
Efferent division
Autonomic nervous system
Parasympathetic nervous system
Answer:
Autonomic nervous system
parasympatheic nervous system
When the heart rate decreases, the parasympathetic and autonomic nervous systems are activated.
When the heart rate decreases, the portions of the nervous system that are activated include the parasympathetic nervous system and the autonomic nervous system. The parasympathetic nervous system is responsible for rest and digest activities, and it slows down the heart rate. The autonomic nervous system controls involuntary body functions, including heart rate, and it consists of both the sympathetic and parasympathetic divisions.
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the animal kingdom?
A. Cognition
B. Survival tactics
C. The basic needs of life.
Answer:
A. Cognition
Explanation:
Humans are the most intelligent animals on the earth because of our abilities to use cognitive functions at a higher level than any other living creature.
The nurse needs to set the IV pump to provide 4 grams of magnesium sulfate over a 20-minute period to run the bolus.
Since the bolus comes diluted in 250 mL of normal saline, the nurse needs to calculate the rate at which the bolus will be delivered. To do this, the nurse needs to divide the amount of magnesium sulfate (4 grams) by the time it should take to deliver the bolus (20 minutes). This gives a rate of 0.2 grams per minute.
However, since IV pumps deliver in milliliters per hour, the nurse needs to convert this rate to mL/hr. To do this, the nurse multiplies 0.2 grams/minute by 60 minutes/hour, giving a rate of 12 mL/hour. Therefore, the nurse should set the IV pump to 12 mL/hour to provide the 4-gram magnesium sulfate bolus over 20 minutes.
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The IV pump rate for a 4 gram bolus of magnesium sulfate to run over 20 minutes with a total volume of 250 mL should be set at 750 mL/hr.
To calculate the IV pump rate for a magnesium sulfate bolus of 4 grams to be administered over 20 minutes, we need to know the total volume of the IV fluid which is 250 mL.
Since the entire 250 mL should be administered in 20 minutes, we first convert minutes to hours because infusion pumps are calibrated in mL per hour. Thus, 20 minutes is ⅓ of an hour.
To find the infusion rate in mL/hour, we use the formula:
Therefore, the nurse should set the IV pump to run at a rate of 750 mL/hr to administer a 4 gram bolus of magnesium sulfate diluted in 250 mL of normal saline over 20 minutes.
To achieve the goal of restoring the client's fluid volume, the nurse would expect to implement an intervention that addresses the underlying cause of the fluid deficit and promotes fluid intake.
Depending on the client's condition and the severity of the deficit, the nurse may recommend intravenous (IV) fluids or encourage increased oral intake of fluids. The nurse may also monitor the client's vital signs and urine output to assess the effectiveness of the intervention and adjust the plan of care as needed. Additionally, the nurse may educate the client on the importance of maintaining adequate fluid intake and provide tips for increasing fluid consumption, such as sipping water throughout the day or adding flavoring to water to make it more appealing. Ultimately, the goal of the intervention is to restore the client's fluid volume to a safe and healthy level.
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